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372 peer-reviewed articles • 33,607 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Policy Actions Required to Improve Nutrition for Brain Health
Nutrition Reviews, 2025, 83, 586-592
4.47Citations (PDF)
2Gut microbiota regulates stress responsivity via the circadian system
Cell Metabolism, 2025, 37, 138-153.e5
20.9159Citations (PDF)
3I "Gut" Rhythm: the microbiota as a modulator of the stress response and circadian rhythms
FEBS Journal, 2025, 292, 1454-1479
3.39Citations (PDF)
4The mood stabilizers lithium and valproate disrupt hepatic and intestinal farnesoid X receptor signalling and increase bile synthesis in the rat
Experimental Physiology, 2025, 110, 1233-1253
1.82Citations (PDF)
5The gut microbiome connects nutrition and human health31.1125Citations (PDF)
6Gut microbiota regulates exercise-induced hormetic modulation of cognitive function
EBioMedicine, 2025, 119, 105876
6.623Citations (PDF)
7The South American MicroBiome Archive (saMBA): enriching the microbiome field by studying neglected populations11.05Citations (PDF)
8Beta 3‐adrenoceptor agonism ameliorates early‐life stress‐induced visceral hypersensitivity in male rats
Journal of Neurochemistry, 2024, 168, 3813-3826
2.75Citations (PDF)
9Social anxiety disorder-associated gut microbiota increases social fear5.372Citations (PDF)
10The gut virome is associated with stress-induced changes in behaviour and immune responses in mice
Nature Microbiology, 2024, 9, 359-376
10.181Citations (PDF)
11Gastrointestinal and brain barriers: unlocking gates of communication across the microbiota–gut–brain axis31.1328Citations (PDF)
12A gut (microbiome) feeling about addiction: Interactions with stress and social systems
Neurobiology of Stress, 2024, 30, 100629
2.429Citations (PDF)
13Exercise mitigates a gut microbiota-mediated reduction in adult hippocampal neurogenesis and associated behaviours in rats3.943Citations (PDF)
14Social fear extinction susceptibility is associated with Microbiota-Gut-Brain axis alterations
Brain, Behavior, and Immunity, 2024, 120, 315-326
3.57Citations (PDF)
15Adherence to a psychobiotic diet stabilizes the microbiome and reduces perceived stress: plenty of food for thought
Molecular Psychiatry, 2024, 30, 349-350
5.33Citations (PDF)
16Feeding gut microbes to nourish the brain: unravelling the diet–microbiota–gut–brain axis
Nature Metabolism, 2024, 6, 1454-1478
14.8252Citations (PDF)
17More than just a number: the gut microbiota and brain function across the extremes of life
Gut Microbes, 2024, 16,
8.420Citations (PDF)
18Inflammation, Lifestyle Factors, and the Microbiome‐Gut‐Brain Axis: Relevance to Depression and Antidepressant Action2.7128Citations (PDF)
19The microbiome-gut-brain axis in nutritional neuroscience
Nutritional Neuroscience, 2023, 26, 1159-1171
2.516Citations (PDF)
20Microbiota-immune-brain interactions: A lifespan perspective3.471Citations (PDF)
21In Conversation with John Cryan
FEBS Journal, 2023, 290, 3032-3039
3.31Citations (PDF)
22The Stressed Gut: Region-specific Immune and Neuroplasticity Changes in Response to Chronic Psychosocial Stress1.721Citations (PDF)
23Cyclodextrin-Based Nanoparticles for Delivery of Antisense Oligonucleotides Targeting Huntingtin
Pharmaceutics, 2023, 15, 520
4.218Citations (PDF)
24Age-associated deficits in social behaviour are microbiota-dependent
Brain, Behavior, and Immunity, 2023, 110, 119-124
3.517Citations (PDF)
25The gut microbiome in social anxiety disorder: evidence of altered composition and function3.9111Citations (PDF)
26Pesticide exposure and the microbiota-gut-brain axis
ISME Journal, 2023, 17, 1153-1166
5.9105Citations (PDF)
27Sa1621 STRESS AND RESILIENCE IN THE BRAIN-GUT-AXIS: ROLE OF THE MICROBIOME IN PREDICTING COMORBID BEHAVIOURAL PHENOTYPES
Gastroenterology, 2023, 164, S-410
0.90Citations (PDF)
28The impact of acute and chronic stress on gastrointestinal physiology and function: a microbiota–gut–brain axis perspective
Journal of Physiology, 2023, 601, 4491-4538
2.0153Citations (PDF)
29Disruption of the microbiota-gut-brain axis is a defining characteristic of the α-Gal A (-/0) mouse model of Fabry disease
Gut Microbes, 2023, 15,
8.418Citations (PDF)
30Microbiota from Alzheimer’s patients induce deficits in cognition and hippocampal neurogenesis
Brain, 2023, 146, 4916-4934
6.0229Citations (PDF)
31PHYSIOLOGY OF HORMETIC EFFECTS OF EXERCISE ON COGNITIVE ENHANCEMENT: MICROBIOTA INVOLVEMENT
IBRO Neuroscience Reports, 2023, 15, S826-S827
0.30Citations (PDF)
32Investigating the potential of fish oil as a nutraceutical in an animal model of early life stress
Nutritional Neuroscience, 2022, 25, 356-378
2.525Citations (PDF)
33Enduring effects of an unhealthy diet during adolescence on systemic but not neurobehavioural measures in adult rats
Nutritional Neuroscience, 2022, 25, 657-669
2.510Citations (PDF)
34Visceral sensitivity modulation by faecal microbiota transplantation: the active role of gut bacteria in pain persistence
Pain, 2022, 163, 861-877
2.949Citations (PDF)
35Associations between Mental Health, Alcohol Consumption and Drinking Motives during COVID-19 Second Lockdown in Ireland
Alcohol and Alcoholism, 2022, 57, 211-218
1.220Citations (PDF)
36Microbiota-targeted interventions for mental health2.952Citations (PDF)
37Dietary Milk Phospholipids Attenuate Chronic Stress‐Induced Changes in Behavior and Endocrine Responses across the Lifespan2.75Citations (PDF)
38Altered stress responses in adults born by Caesarean section
Neurobiology of Stress, 2022, 16, 100425
2.414Citations (PDF)
39Diet Prevents Social Stress-Induced Maladaptive Neurobehavioural and Gut Microbiota Changes in a Histamine-Dependent Manner3.215Citations (PDF)
40Microbiota and body weight control: Weight watchers within?
Molecular Metabolism, 2022, 57, 101427
3.762Citations (PDF)
41Gut microbiota-drug interactions in cancer pharmacotherapies: implications for efficacy and adverse effects2.617Citations (PDF)
42The blood-brain barrier in aging and neurodegeneration
Molecular Psychiatry, 2022, 27, 2659-2673
5.3688Citations (PDF)
43Metabolomic Workflow for the Accurate and High-Throughput Exploration of the Pathways of Tryptophan, Tyrosine, Phenylalanine, and Branched-Chain Amino Acids in Human Biofluids
Journal of Proteome Research, 2022, 21, 1262-1275
2.323Citations (PDF)
44A prospective investigation into the association between the gut microbiome composition and cognitive performance among healthy young adults
Gut Pathogens, 2022, 14,
2.618Citations (PDF)
45Memantine treatment does not affect compulsive behavior or frontostriatal connectivity in an adolescent rat model for quinpirole-induced compulsive checking behavior
Psychopharmacology, 2022, 239, 2457-2470
1.84Citations (PDF)
46Microbial-derived metabolites as a risk factor of age-related cognitive decline and dementia9.7200Citations (PDF)
47The effect of exercise interventions on inflammatory markers in major depressive disorder: protocol for a systematic review and meta-analysis
HRB Open Research, 2022, 4, 42
0.33Citations (PDF)
48Sex, pain, and the microbiome: The relationship between baseline gut microbiota composition, gender and somatic pain in healthy individuals
Brain, Behavior, and Immunity, 2022, 104, 191-204
3.528Citations (PDF)
49Ghrelin rapidly elevates protein synthesis in vitro by employing the rpS6K-eEF2K-eEF2 signalling axis3.55Citations (PDF)
50The live biotherapeutic Blautia stercoris MRx0006 attenuates social deficits, repetitive behaviour, and anxiety-like behaviour in a mouse model relevant to autism
Brain, Behavior, and Immunity, 2022, 106, 115-126
3.548Citations (PDF)
51Inhibition of FKBP51 induces stress resilience and alters hippocampal neurogenesis
Molecular Psychiatry, 2022, 27, 4928-4938
5.338Citations (PDF)
52Cardiac vagal activity is associated with gut-microbiome patterns in women—An exploratory pilot study2.218Citations (PDF)
53Prebiotic supplementation modulates selective effects of stress on behavior and brain metabolome in aged mice
Neurobiology of Stress, 2022, 21, 100501
2.421Citations (PDF)
54Improvements in sleep indices during exam stress due to consumption of a Bifidobacterium longum1.559Citations (PDF)
55Investigating causality with fecal microbiota transplantation in rodents: applications, recommendations and pitfalls
Gut Microbes, 2021, 13,
8.4144Citations (PDF)
56Guidelines for reporting on animal fecal transplantation (GRAFT) studies: recommendations from a systematic review of murine transplantation protocols
Gut Microbes, 2021, 13,
8.481Citations (PDF)
57Identifying a biological signature of prenatal maternal stress
JCI Insight, 2021, 6,
3.732Citations (PDF)
58High and Mighty? Cannabinoids and the microbiome in pain1.66Citations (PDF)
59Priming for Life: Early Life Nutrition and the Microbiota-Gut-Brain Axis
Nutrients, 2021, 13, 423
3.2171Citations (PDF)
60Microbiota‐gut‐brain axis as a regulator of reward processes
Journal of Neurochemistry, 2021, 157, 1495-1524
2.7138Citations (PDF)
61Microbial memories: Sex‐dependent impact of the gut microbiome on hippocampal plasticity1.648Citations (PDF)
62Going with the grain: Fiber, cognition, and the microbiota-gut-brain-axis2.197Citations (PDF)
63Of bowels, brain and behavior: A role for the gut microbiota in psychiatric comorbidities in irritable bowel syndrome1.643Citations (PDF)
64Unraveling the Microbial Mechanisms Underlying the Psychobiotic Potential of a Bifidobacterium breve Strain2.739Citations (PDF)
65Diet and the Microbiota–Gut–Brain Axis: Sowing the Seeds of Good Mental Health
Advances in Nutrition, 2021, 12, 1239-1285
6.4427Citations (PDF)
66The Microbiota-Gut-Brain Axis in Mental Health and Medication Response: Parsing Directionality and Causality2.516Citations (PDF)
67Advances in the Design of (Nano)Formulations for Delivery of Antisense Oligonucleotides and Small Interfering RNA: Focus on the Central Nervous System
Molecular Pharmaceutics, 2021, 18, 1491-1506
3.370Citations (PDF)
68Prebiotic and probiotic supplementation and the tryptophan-kynurenine pathway: A systematic review and meta analysis4.374Citations (PDF)
69Early-life oxytocin attenuates the social deficits induced by caesarean-section delivery in the mouse
Neuropsychopharmacology, 2021, 46, 1958-1968
3.822Citations (PDF)
70The effect of exercise interventions on inflammatory markers in major depressive disorder: protocol for a systematic review and meta-analysis
HRB Open Research, 2021, 4, 42
0.31Citations (PDF)
71Depletion of the gut microbiota differentially affects the impact of whey protein on high‐fat diet‐induced obesity and intestinal permeability1.126Citations (PDF)
72The alternative serotonin transporter promoter P2 impacts gene function in females with irritable bowel syndrome2.48Citations (PDF)
73Inflammasome Signaling Regulates the Microbial–Neuroimmune Axis and Visceral Pain in Mice3.212Citations (PDF)
74Estrous cycle and ovariectomy-induced changes in visceral pain are microbiota-dependent
IScience, 2021, 24, 102850
2.542Citations (PDF)
75Microbiota from young mice counteracts selective age-associated behavioral deficits
Nature Aging, 2021, 1, 666-676
13.4286Citations (PDF)
76Wrapping Things Up: Recent Developments in Understanding the Role of the Microbiome in Regulating Myelination1.116Citations (PDF)
77Microbially-derived short-chain fatty acids impact astrocyte gene expression in a sex-specific manner1.556Citations (PDF)
78Influence of pro-obesogenic dietary habits on stress-induced cognitive alterations in healthy adult volunteers
Neurobiology of Stress, 2021, 15, 100353
2.43Citations (PDF)
79Long-term dietary intake from infancy to late adolescence is associated with gut microbiota composition in young adulthood3.422Citations (PDF)
80Specific sub-regions of the longitudinal axis of the hippocampus mediate behavioural responses to chronic psychosocial stress
Neuropharmacology, 2021, 201, 108843
3.112Citations (PDF)
81Diet and depression: future needs to unlock the potential
Molecular Psychiatry, 2021, 27, 778-780
5.318Citations (PDF)
82Depression's Unholy Trinity: Dysregulated Stress, Immunity, and the Microbiome17.8296Citations (PDF)
83Common Pathways in Depression and Obesity: The Role of Gut Microbiome and Diets0.75Citations (PDF)
84Annual Research Review: Critical windows – the microbiota–gut–brain axis in neurocognitive development3.2171Citations (PDF)
85Informal caregiving for dementia patients: the contribution of patient characteristics and behaviours to caregiver burden
Age and Ageing, 2020, 49, 52-56
1.261Citations (PDF)
86Impaired cognitive function in Crohn’s disease: Relationship to disease activity1.519Citations (PDF)
87Bugs, breathing and blood pressure: microbiota–gut–brain axis signalling in cardiorespiratory control in health and disease
Journal of Physiology, 2020, 598, 4159-4179
2.025Citations (PDF)
88Enduring neurobehavioral effects induced by microbiota depletion during the adolescent period3.953Citations (PDF)
89Adult-born neurons from the dorsal, intermediate, and ventral regions of the longitudinal axis of the hippocampus exhibit differential sensitivity to glucocorticoids
Molecular Psychiatry, 2020, 26, 3240-3252
5.329Citations (PDF)
90Neurobiological effects of phospholipids in vitro: Relevance to stress-related disorders
Neurobiology of Stress, 2020, 13, 100252
2.418Citations (PDF)
91Prebiotics, probiotics, fermented foods and cognitive outcomes: A meta-analysis of randomized controlled trials4.379Citations (PDF)
92Mapping O2 concentration in ex-vivo tissue samples on a fast PLIM macro-imager
Scientific Reports, 2020, 10,
2.713Citations (PDF)
93Efficacy and safety of fecal microbiota transplantation for the treatment of diseases other than Clostridium difficile infection: a systematic review and meta-analysis
Gut Microbes, 2020, 12, 1854640
8.4150Citations (PDF)
94Distinct actions of the fermented beverage kefir on host behaviour, immunity and microbiome gut-brain modules in the mouse
Microbiome, 2020, 8,
8.2107Citations (PDF)
95Recipe for a Healthy Gut: Intake of Unpasteurised Milk Is Associated with Increased Lactobacillus Abundance in the Human Gut Microbiome
Nutrients, 2020, 12, 1468
3.241Citations (PDF)
96Gut‐brain axis serotonergic responses to acute stress exposure are microbiome‐dependent1.666Citations (PDF)
97Probiotics and the Microbiota-Gut-Brain Axis: Focus on Psychiatry
Current Nutrition Reports, 2020, 9, 171-182
4.7301Citations (PDF)
98Impact of host and environmental factors on β-glucuronidase enzymatic activity: implications for gastrointestinal serotonin1.850Citations (PDF)
99Structural and functional MRI of altered brain development in a novel adolescent rat model of quinpirole-induced compulsive checking behavior0.710Citations (PDF)
100Towards a psychobiotic therapy for depression: Bifidobacterium breve CCFM1025 reverses chronic stress-induced depressive symptoms and gut microbial abnormalities in mice
Neurobiology of Stress, 2020, 12, 100216
2.4268Citations (PDF)
101Polyphenols selectively reverse early-life stress-induced behavioural, neurochemical and microbiota changes in the rat
Psychoneuroendocrinology, 2020, 116, 104673
1.087Citations (PDF)
102Developing a quantitative method to assess the decomposition of embalmed human cadavers
Forensic Chemistry, 2020, 18, 100235
1.67Citations (PDF)
103Gut microbiome-mediated modulation of hepatic cytochrome P450 and P-glycoprotein: impact of butyrate and fructo-oligosaccharide-inulin2.525Citations (PDF)
104Diet and depression: exploring the biological mechanisms of action
Molecular Psychiatry, 2020, 26, 134-150
5.3621Citations (PDF)
105Dietary vitamin A supplementation prevents early obesogenic diet-induced microbiota, neuronal and cognitive alterations2.737Citations (PDF)
106A biological framework for emotional dysregulation in alcohol misuse: from gut to brain
Molecular Psychiatry, 2020, 26, 1098-1118
5.367Citations (PDF)
107A specific dietary fibre supplementation improves cognitive performance—an exploratory randomised, placebo-controlled, crossover study
Psychopharmacology, 2020, 238, 149-163
1.878Citations (PDF)
108Lactobacillus rhamnosus GG soluble mediators ameliorate early life stress-induced visceral hypersensitivity and changes in spinal cord gene expression5.921Citations (PDF)
109Exercising control over signs and symptoms of stress and depression
FASEB Journal, 2020, 34, 1-1
2.30Citations (PDF)
110Differential functional selectivity and downstream signaling bias of ghrelin receptor antagonists and inverse agonists
FASEB Journal, 2019, 33, 518-531
2.338Citations (PDF)
111Making Sense of … the Microbiome in Psychiatry2.5203Citations (PDF)
112Host Microbiota Regulates Central Nervous System Serotonin Receptor 2C Editing in Rodents
ACS Chemical Neuroscience, 2019, 10, 3953-3960
2.811Citations (PDF)
113Pain Bugs: Gut Microbiota and Pain Disorders1.110Citations (PDF)
114Microbiota and the social brain
Science, 2019, 366,
26.5434Citations (PDF)
115Gamma-aminobutyric acid-producing lactobacilli positively affect metabolism and depressive-like behaviour in a mouse model of metabolic syndrome2.7152Citations (PDF)
116The future of rodent models in depression research
Nature Reviews Neuroscience, 2019, 20, 686-701
14.6264Citations (PDF)
117Metabolome and microbiome profiling of a stress-sensitive rat model of gut-brain axis dysfunction2.737Citations (PDF)
118Enduring effects of muscarinic receptor activation on adult hippocampal neurogenesis, microRNA expression and behaviour
Behavioural Brain Research, 2019, 362, 188-198
1.86Citations (PDF)
119Preventing adolescent stress-induced cognitive and microbiome changes by diet5.3106Citations (PDF)
120Resilience to chronic stress is associated with specific neurobiological, neuroendocrine and immune responses3.560Citations (PDF)
121Attenuation of Oxytocin and Serotonin 2A Receptor Signaling through Novel Heteroreceptor Formation
ACS Chemical Neuroscience, 2019, 10, 3225-3240
2.832Citations (PDF)
122Is the fountain of youth in the gut microbiome?
Journal of Physiology, 2019, 597, 2323-2324
2.013Citations (PDF)
123Differential gene expression in the mesocorticolimbic system of innately high- and low-impulsive rats
Behavioural Brain Research, 2019, 364, 193-204
1.811Citations (PDF)
124Psychotropics and the Microbiome: a Chamber of Secrets…
Psychopharmacology, 2019, 236, 1411-1432
1.8156Citations (PDF)
125Naturally Derived Polyphenols Protect Against Corticosterone-Induced Changes in Primary Cortical Neurons2.525Citations (PDF)
126A ghrelin receptor and oxytocin receptor heterocomplex impairs oxytocin mediated signalling
Neuropharmacology, 2019, 152, 90-101
3.145Citations (PDF)
127TLX knockdown in the dorsal dentate gyrus of juvenile rats differentially affects adolescent and adult behaviour
Behavioural Brain Research, 2019, 360, 36-50
1.89Citations (PDF)
128Neurobehavioural effects of Lactobacillus rhamnosus GG alone and in combination with prebiotics polydextrose and galactooligosaccharide in male rats exposed to early-life stress
Nutritional Neuroscience, 2019, 22, 425-434
2.597Citations (PDF)
129Nutraceuticals to promote neuronal plasticity in response to corticosterone-induced stress in human neuroblastoma cells
Nutritional Neuroscience, 2019, 22, 551-568
2.531Citations (PDF)
130Mid-life microbiota crises: middle age is associated with pervasive neuroimmune alterations that are reversed by targeting the gut microbiome
Molecular Psychiatry, 2019, 25, 2567-2583
5.3129Citations (PDF)
131Kynurenine pathway metabolism and the neurobiology of treatment-resistant depression: Comparison of multiple ketamine infusions and electroconvulsive therapy1.947Citations (PDF)
132Application of a physiologically‐based pharmacokinetic model for the prediction of bumetanide plasma and brain concentrations in the neonate1.612Citations (PDF)
133Elucidation of the neural circuits activated by a GABAB receptor positive modulator: Relevance to anxiety
Neuropharmacology, 2018, 136, 129-145
3.120Citations (PDF)
134Poor cognitive ageing: Vulnerabilities, mechanisms and the impact of nutritional interventions
Ageing Research Reviews, 2018, 42, 40-55
9.1164Citations (PDF)
135Finding the needle in the haystack: systematic identification of psychobiotics
British Journal of Pharmacology, 2018, 175, 4430-4438
4.8100Citations (PDF)
136Gutsy Moves: The Amygdala as a Critical Node in Microbiota to Brain Signaling
BioEssays, 2018, 40,
1.7100Citations (PDF)
137Recent developments in understanding the role of the gut microbiota in brain health and disease2.6308Citations (PDF)
138Without a bug’s life: Germ-free rodents to interrogate microbiota-gut-neuroimmune interactions1.722Citations (PDF)
139Targeting the gut microbiota to influence brain development and function in early life4.385Citations (PDF)
140Satiating effect of a sodium caseinate hydrolysate and its fate in the upper gastrointestinal tract
Journal of Functional Foods, 2018, 49, 306-313
2.66Citations (PDF)
141Neuropsychiatric Disorders: Influence of Gut Microbe to Brain Signalling2.154Citations (PDF)
142Gut microbiome correlates with altered striatal dopamine receptor expression in a model of compulsive alcohol seeking
Neuropharmacology, 2018, 141, 249-259
3.1104Citations (PDF)
14337. THE GUT MICROBIOME: A KEY REGULATOR OF NEURODEVELOPMENT AND BEHAVIOUR
Schizophrenia Bulletin, 2018, 44, S59-S60
2.94Citations (PDF)
144Short‐chain fatty acids: microbial metabolites that alleviate stress‐induced brain–gut axis alterations
Journal of Physiology, 2018, 596, 4923-4944
2.0757Citations (PDF)
145Differential effects of psychotropic drugs on microbiome composition and gastrointestinal function
Psychopharmacology, 2018, 236, 1671-1685
1.8243Citations (PDF)
146Blunted 5-HT1A receptor-mediated responses and antidepressant-like behavior in mice lacking the GABAB1a but not GABAB1b subunit isoforms
Psychopharmacology, 2017, 234, 1511-1523
1.810Citations (PDF)
147Bifidobacterium breve with α-linolenic acid alters the composition, distribution and transcription factor activity associated with metabolism and absorption of fat2.733Citations (PDF)
148A psychology of the human brain–gut–microbiome axis1.6149Citations (PDF)
149Stress & the gut-brain axis: Regulation by the microbiome
Neurobiology of Stress, 2017, 7, 124-136
2.41,144Citations (PDF)
150Whey protein effects on energy balance link the intestinal mechanisms of energy absorption with adiposity and hypothalamic neuropeptide gene expression2.528Citations (PDF)
151Microbiota-Gut-Brain Axis: Modulator of Host Metabolism and Appetite
Journal of Nutrition, 2017, 147, 727-745
2.3395Citations (PDF)
152Microbiota-related Changes in Bile Acid & Tryptophan Metabolism are Associated with Gastrointestinal Dysfunction in a Mouse Model of Autism
EBioMedicine, 2017, 24, 166-178
6.6361Citations (PDF)
153Assessing radiological images of human cadavers: Is there an effect of different embalming solutions?1.29Citations (PDF)
154Recombinant Incretin-Secreting Microbe Improves Metabolic Dysfunction in High-Fat Diet Fed Rodents2.723Citations (PDF)
155Epistatic and Independent Effects on Schizophrenia-Related Phenotypes Following Co-disruption of the Risk Factors Neuregulin-1 × DISC1
Schizophrenia Bulletin, 2017, 43, 214-225
2.921Citations (PDF)
156True grit: the role of neuronal microRNAs as mediators of stress resilience1.74Citations (PDF)
157Gut instincts: microbiota as a key regulator of brain development, ageing and neurodegeneration
Journal of Physiology, 2017, 595, 489-503
2.0722Citations (PDF)
158Cross Talk: The Microbiota and Neurodevelopmental Disorders2.0237Citations (PDF)
159Microbial regulation of microRNA expression in the amygdala and prefrontal cortex
Microbiome, 2017, 5,
8.2180Citations (PDF)
160The microbiome regulates amygdala-dependent fear recall
Molecular Psychiatry, 2017, 23, 1134-1144
5.3191Citations (PDF)
161Anxiety, Depression, and the Microbiome: A Role for Gut Peptides
Neurotherapeutics, 2017, 15, 36-59
3.9506Citations (PDF)
162Adult microbiota‐deficient mice have distinct dendritic morphological changes: differential effects in the amygdala and hippocampus1.6322Citations (PDF)
163A gut (microbiome) feeling about the brain1.6179Citations (PDF)
164Probiotic modulation of the microbiota-gut-brain axis and behaviour in zebrafish2.7219Citations (PDF)
165Getting the Hologenome Concept Right: an Eco-Evolutionary Framework for Hosts and Their Microbiomes
MSystems, 2016, 1,
2.8508Citations (PDF)
166Microbiome in brain function and mental health11.761Citations (PDF)
167Stress and the Microbiota–Gut–Brain Axis in Visceral Pain: Relevance to Irritable Bowel Syndrome3.5381Citations (PDF)
168May the Force Be With You: The Light and Dark Sides of the Microbiota–Gut–Brain Axis in Neuropsychiatry
CNS Drugs, 2016, 30, 1019-1041
3.8282Citations (PDF)
169Estrous cycle influences excitatory amino acid transport and visceral pain sensitivity in the rat: effects of early-life stress2.745Citations (PDF)
170What’s bugging your teen?—The microbiota and adolescent mental health4.353Citations (PDF)
171Food for thought: The role of nutrition in the microbiota-gut–brain axis2.0211Citations (PDF)
172Microbes, Immunity, and Behavior: Psychoneuroimmunology Meets the Microbiome
Neuropsychopharmacology, 2016, 42, 178-192
3.8225Citations (PDF)
173Quantitative analysis of mucosal oxygenation using ex vivo imaging of healthy and inflamed mammalian colon tissue3.523Citations (PDF)
174Obesity Takes Its Toll on Visceral Pain: High-Fat Diet Induces Toll-Like Receptor 4-Dependent Visceral Hypersensitivity
PLoS ONE, 2016, 11, e0155367
1.554Citations (PDF)
175The impact of gut microbiota on brain and behaviour1.7258Citations (PDF)
176Role of adult hippocampal neurogenesis in stress resilience
Neurobiology of Stress, 2015, 1, 147-155
2.4202Citations (PDF)
177Thinking small: towards microRNA-based therapeutics for anxiety disorders2.450Citations (PDF)
178Enhancing glutamatergic transmission during adolescence reverses early-life stress-induced deficits in the rewarding effects of cocaine in rats
Neuropharmacology, 2015, 99, 168-176
3.133Citations (PDF)
179RNAi therapeutics for brain cancer: current advancements in RNAi delivery strategies
Molecular BioSystems, 2015, 11, 2635-2657
3.17Citations (PDF)
180Bifidobacteria modulate cognitive processes in an anxious mouse strain
Behavioural Brain Research, 2015, 287, 59-72
1.8355Citations (PDF)
181Ghrelin’s Orexigenic Effect Is Modulated via a Serotonin 2C Receptor Interaction
ACS Chemical Neuroscience, 2015, 6, 1186-1197
2.8107Citations (PDF)
182Research Review: Birth by caesarean section and development of autism spectrum disorder and attention‐deficit/hyperactivity disorder: a systematic review and meta‐analysis3.2225Citations (PDF)
183Adding fuel to the fire: the impact of stress on the ageing brain
Trends in Neurosciences, 2015, 38, 13-25
9.1132Citations (PDF)
184Streptozotocin-induced type-1-diabetes disease onset in Sprague–Dawley rats is associated with an altered intestinal microbiota composition and decreased diversity
Microbiology (United Kingdom), 2015, 161, 182-193
2.482Citations (PDF)
185The brain’s Geppetto—microbes as puppeteers of neural function and behaviour?
Journal of NeuroVirology, 2015, 22, 14-21
1.136Citations (PDF)
186The effect of organic anion transporter 3 inhibitor probenecid on bumetanide levels in the brain: an integrated in vivo microdialysis study in the rat2.528Citations (PDF)
187Medical student knowledge regarding radiology before and after a radiological anatomy module: implications for vertical integration and self-directed learning
Insights Into Imaging, 2014, 5, 629-634
2.826Citations (PDF)
188GABA B(1) receptor subunit isoforms differentially regulate stress resilience5.384Citations (PDF)
189The mouse cyclophosphamide model of bladder pain syndrome: tissue characterization, immune profiling, and relationship to metabotropic glutamate receptors
Physiological Reports, 2014, 2, e00260
1.159Citations (PDF)
190Differential visceral pain sensitivity and colonic morphology in four common laboratory rat strains
Experimental Physiology, 2014, 99, 359-367
1.815Citations (PDF)
191791 Probiotics Influence Colonic Secretomotor Function and Gastrointestinal Physiology in the Mouse: In Vitro and In Vivo Studies With Bifidobacterium Infantis 35624 and Lactobacillus Salivarius UCC118
Gastroenterology, 2014, 146, S-135-S-136
0.90Citations (PDF)
192Su2084 Acute Tryptophan Depletion Reduces Kynurenine Levels: Implications for Treatment of Impaired Visuospatial Memory Performance in Irritable Bowel Syndrome
Gastroenterology, 2014, 146, S-541-S-542
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193The P-glycoprotein inhibitor cyclosporin A differentially influences behavioural and neurochemical responses to the antidepressant escitalopram
Behavioural Brain Research, 2014, 261, 17-25
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194Differential nanotoxicological and neuroinflammatory liabilities of non-viral vectors for RNA interference in the central nervous system
Biomaterials, 2014, 35, 489-499
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195Priming for health: gut microbiota acquired in early life regulates physiology, brain and behaviour1.1165Citations (PDF)
196Gut microbiota modulation and implications for host health: Dietary strategies to influence the gut–brain axis4.858Citations (PDF)
197Gut Microbes and the Brain: Paradigm Shift in Neuroscience
Journal of Neuroscience, 2014, 34, 15490-15496
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198Effect of acute swim stress on plasma corticosterone and brain monoamine levels in bidirectionally selected DxH recombinant inbred mouse strains differing in fear recall and extinction
Stress, 2014, 17, 471-483
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199The Ups and Downs of Modelling Mood Disorders in Rodents
ILAR Journal, 2014, 55, 297-309
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200Milk protein-derived peptides induce 5-HT2C-mediated satiety in vivo2.415Citations (PDF)
201Acute tryptophan depletion reduces kynurenine levels: implications for treatment of impaired visuospatial memory performance in irritable bowel syndrome
Psychopharmacology, 2014, 232, 1357-1371
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202Nanoparticles and the Blood-Brain Barrier: Advancing from In-Vitro Models Towards Therapeutic Significance
Pharmaceutical Research, 2014, 32, 1161-1185
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203Psychobiotics: A Novel Class of Psychotropic
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204Towards translational rodent models of depression
Cell and Tissue Research, 2013, 354, 141-153
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205Su2111 A Prospective Assessment of Cognitive Performance in Irritable Bowel Syndrome Reveals Persistent Visuospatial Memory Deficits
Gastroenterology, 2013, 144, S-561
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206Semagacestat, a γ-secretase inhibitor, activates the growth hormone secretagogue (GHS-R1a) receptor2.513Citations (PDF)
207Crosstalk between interleukin-6 and corticotropin-releasing factor modulate submucosal plexus activity and colonic secretion3.534Citations (PDF)
208P-glycoprotein Inhibition Increases the Brain Distribution and Antidepressant-Like Activity of Escitalopram in Rodents
Neuropsychopharmacology, 2013, 38, 2209-2219
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209Milk protein hydrolysates activate 5-HT2C serotonin receptors: influence of the starting substrate and isolation of bioactive fractions
Food and Function, 2013, 4, 728
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210Self-assembling Modified β-Cyclodextrin Nanoparticles as Neuronal siRNA Delivery Vectors: Focus on Huntington’s Disease
Molecular Pharmaceutics, 2013, 10, 640-649
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211Differential visceral nociceptive, behavioural and neurochemical responses to an immune challenge in the stress-sensitive Wistar Kyoto rat strain
Behavioural Brain Research, 2013, 253, 310-317
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212GABAB receptor ligands do not modify conditioned fear responses in BALB/c mice
Behavioural Brain Research, 2013, 256, 151-156
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213Adult siRNA-induced knockdown of mGlu7 receptors reduces anxiety in the mouse
Neuropharmacology, 2013, 72, 66-73
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214Hippocampal group III mGlu receptor mRNA levels are not altered in specific mouse models of stress, depression and antidepressant action1.48Citations (PDF)
215Impact of early-life stress, on group III mGlu receptor levels in the rat hippocampus: Effects of ketamine, electroconvulsive shock therapy and fluoxetine treatment
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216Promiscuous Dimerization of the Growth Hormone Secretagogue Receptor (GHS-R1a) Attenuates Ghrelin-mediated Signaling1.3135Citations (PDF)
217Regulation of the brain–gut axis by group III metabotropic glutamate receptors3.337Citations (PDF)
218microRNAs as novel antidepressant targets: converging effects of ketamine and electroconvulsive shock therapy in the rat hippocampus2.5108Citations (PDF)
219Human P-glycoprotein differentially affects antidepressant drug transport: relevance to blood–brain barrier permeability2.548Citations (PDF)
220Cationic and PEGylated Amphiphilic Cyclodextrins: Co-Formulation Opportunities for Neuronal Sirna Delivery
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221Reply to McLean et al. and Burnet: The microbiome-gut-brain axis as a pathway toward next generation psychotropics5.30Citations (PDF)
222Genetic vs. pharmacological inactivation of COMT influences cannabinoid-induced expression of schizophrenia-related phenotypes2.558Citations (PDF)
223Communication between gastrointestinal bacteria and the nervous system2.9248Citations (PDF)
224Sa1440 γ-Amino-Butyric Acid Regulates Submucosal Cholinergic Signalling and Secretomotor Function in Mouse Colon
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225Su1966 An Assessment of Cognitive Function in Irritable Bowel Syndrome (IBS): Are Deficits in Visuo-Spatial Memory Stress-Related and Mediated by Tryptophan Metabolism Along the Kynurenine Pathway?
Gastroenterology, 2012, 142, S-548
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226Regulation of the stress response by the gut microbiota: Implications for psychoneuroendocrinology
Psychoneuroendocrinology, 2012, 37, 1369-1378
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227Lithium-induced effects on adult hippocampal neurogenesis are topographically segregated along the dorso-ventral axis of stressed mice
Neuropharmacology, 2012, 62, 247-255
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228An effective dietary method for chronic tryptophan depletion in two mouse strains illuminates a role for 5-HT in nesting behaviour
Neuropharmacology, 2012, 62, 1903-1915
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229Inhibition of P‐glycoprotein enhances transport of imipramine across the blood–brain barrier: microdialysis studies in conscious freely moving rats
British Journal of Pharmacology, 2012, 166, 1333-1343
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230Early-life stress induces visceral hypersensitivity in mice
Neuroscience Letters, 2012, 512, 99-102
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231Phenotypic effects of repeated psychosocial stress during adolescence in mice mutant for the schizophrenia risk gene neuregulin-1: A putative model of gene × environment interaction3.578Citations (PDF)
232Blockade of the GABAB receptor increases neurogenesis in the ventral but not dorsal adult hippocampus: Relevance to antidepressant action
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233Rodent Models of Colorectal Distension3.536Citations (PDF)
234Tu1430 The Role of IL-9/Il9r in Irritable Bowel Syndrome
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235Su2011 Ablation of the Gut Microbiota Ameliorates Antipsychotic-Induced Weight Gain and Associated Metabolic Dysfunction in the Rat
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236Su1992 Regulation of Serotonergic Neurotransmission and Behaviour by the Brain-Gut-Microbiome Axis
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237Bifidobacterium breve with α-Linolenic Acid and Linoleic Acid Alters Fatty Acid Metabolism in the Maternal Separation Model of Irritable Bowel Syndrome
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238A Distinct Profile of Tryptophan Metabolism along the Kynurenine Pathway Downstream of Toll-Like Receptor Activation in Irritable Bowel Syndrome2.6114Citations (PDF)
239Interleukin-6 Modulates Colonic Transepithelial Ion Transport in the Stress-Sensitive Wistar Kyoto Rat2.625Citations (PDF)
240A click chemistry route to 2-functionalised PEGylated and cationic β-cyclodextrins: co-formulation opportunities for siRNA delivery1.873Citations (PDF)
241Genetic Strain Differences in Learned Fear Inhibition Associated with Variation in Neuroendocrine, Autonomic, and Amygdala Dendritic Phenotypes
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242Gender-dependent consequences of chronic olanzapine in the rat: effects on body weight, inflammatory, metabolic and microbiota parameters
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243Interactions between antidepressants and P‐glycoprotein at the blood–brain barrier: clinical significance ofin vitroandin vivofindings4.8212Citations (PDF)
244The temporal impact of chronic intermittent psychosocial stress on high-fat diet-induced alterations in body weight
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245Gut memories: Towards a cognitive neurobiology of irritable bowel syndrome4.3181Citations (PDF)
246In Vitro Investigations of the Efficacy of Cyclodextrin-siRNA Complexes Modified with Lipid-PEG-Octaarginine: Towards a Formulation Strategy for Non-viral Neuronal siRNA Delivery
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247Dynamic 5-HT2C Receptor Editing in a Mouse Model of Obesity
PLoS ONE, 2012, 7, e32266
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248Plasma From Patients With Irritable Bowel Syndrome Excites Rat Submucosal Neurons via IL-6 and CRF1 Receptor Dependent Mechanisms
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249Increased Kynurenine Production Following Toll-Like Receptor (TLR) Activation: A Novel Role for Tlr8 in Irritable Bowel Syndrome (IBS)
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250Stimulation of T-Cells in Irritable Bowel Syndrome (IBS) Mucosal Biopsy Tissue Releases Cytokines Which Selectively Activate Submucosal Neurons
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251BDNF Expression in the Hippocampus of Maternally Separated Rats: Does Bifidobacterium Breve 6330 Alter BDNF Levels?
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252Do interactions between stress and immune responses lead to symptom exacerbations in irritable bowel syndrome?
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253The effects of repeated social interaction stress on behavioural and physiological parameters in a stress-sensitive mouse strain
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254Brain?Gut?Microbe Communication in Health and Disease2.2837Citations (PDF)
255Differential stress-induced alterations in tryptophan hydroxylase activity and serotonin turnover in two inbred mouse strains
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256Alterations in the central CRF system of two different rat models of comorbid depression and functional gastrointestinal disorders2.598Citations (PDF)
257Resistance to Early-Life Stress in Mice: Effects of Genetic Background and Stress Duration1.695Citations (PDF)
258Behavioral satiety sequence in a genetic mouse model of obesity
Behavioural Pharmacology, 2011, 22, 624-632
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259Altered expression and secretion of colonic Interleukin-6 in a stress-sensitive animal model of brain-gut axis dysfunction
Journal of Neuroimmunology, 2011, 235, 48-55
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260Strain differences in the neurochemical response to chronic restraint stress in the rat: Relevance to depression1.481Citations (PDF)
261The effects of gabapentin in two animal models of co-morbid anxiety and visceral hypersensitivity3.321Citations (PDF)
262Is there altered sensitivity to ghrelin-receptor ligands in leptin-deficient mice?: importance of satiety state and time of day
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263BDNF expression in the hippocampus of maternally separated rats: does Bifidobacterium breve 6330 alter BDNF levels?
Beneficial Microbes, 2011, 2, 199-207
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264Transient inactivation of the infralimbic cortex induces antidepressant-like effects in the rat
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265Exciting Times beyond the Brain: Metabotropic Glutamate Receptors in Peripheral and Non-Neural Tissues
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266Colonic soluble mediators from the maternal separation model of irritable bowel syndrome activate submucosal neurons via an interleukin-6-dependent mechanism1.867Citations (PDF)
267Diet-induced obesity blunts the behavioural effects of ghrelin: studies in a mouse-progressive ratio task
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268A Gut Feeling about GABA: Focus on GABAB Receptors2.6193Citations (PDF)
269Therapeutic targeting in the silent era: advances in non-viral siRNA delivery
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270Leptin-deficient mice retain normal appetitive spatial learning yet exhibit marked increases in anxiety-related behaviours
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271Metabotropic glutamate receptor 7: At the interface of cognition and emotion3.383Citations (PDF)
272A novel role for the metabotropic glutamate receptor‐7: modulation of faecal water content and colonic electrolyte transport in the mouse4.845Citations (PDF)
273IBS: an epigenetic perspective31.185Citations (PDF)
274Distinct alterations in colonic morphology and physiology in two rat models of enhanced stress-induced anxiety and depression-like behaviour
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275Marked elevations in pro-inflammatory polyunsaturated fatty acid metabolites in females with irritable bowel syndrome
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276T2083 Enhanced Release of Specific TLR-Agonist Mediated Pro-Inflammatory Cytokines in Irritable Bowel Syndrome (IBS)
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277T1753 CRF1 Receptor-Dependent Activation of Submucosal Neurones by Colonic Supernatants From Maternally Separated Rats
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27825 Early-Life Dysbiosis Leads to Visceral Hypersensitivity in Adulthood
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279965 The Brain-Gut-Microbiome Axis: Gender and Region-Specific Effects of the Microbiome on Central Neurotransmitter and Neurotrophin Levels
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280Riluzole Normalizes Early-Life Stress-Induced Visceral Hypersensitivity in Rats: Role of Spinal Glutamate Reuptake Mechanisms
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281Comparison of hippocampal metabotropic glutamate receptor 7 (mGlu7) mRNA levels in two animal models of depression
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282Restraint stress-induced brain activation patterns in two strains of mice differing in their anxiety behaviour
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283Alterations in colonic corticotropin-releasing factor receptors in the maternally separated rat model of irritable bowel syndrome: Differential effects of acute psychological and physical stressors
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284Lean mean fat reducing “ghrelin” machine: Hypothalamic ghrelin and ghrelin receptors as therapeutic targets in obesity
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285Progressive ratio responding in an obese mouse model: Effects of fenfluramine
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286S.10.03 Animal models of co-morbid depression and irritable bowel syndrome0.70Citations (PDF)
287Neonatal maternal separation in the rat impacts on the stress responsivity of central corticotropin-releasing factor receptors in adulthood
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288Maternal separation as a model of brain–gut axis dysfunction
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289Elucidating GABAB and GABAB Receptor Functions in Anxiety Using the Stress-Induced Hyperthermia Paradigm: A Review0.111Citations (PDF)
290Verapamil in treatment resistant depression: a role for the P‐glycoprotein transporter?
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291Update on smoking cessation therapies
Advances in Therapy, 2009, 26, 369-382
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292Tryptophan degradation in irritable bowel syndrome: evidence of indoleamine 2,3-dioxygenase activation in a male cohort1.6122Citations (PDF)
293Chain reactions: Early-life stress alters the metabolic profile of plasma polyunsaturated fatty acids in adulthood
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294“Killing the Blues”: A role for cellular suicide (apoptosis) in depression and the antidepressant response?
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295Irritable bowel syndrome: towards biomarker identification
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29622 Differential Expression of CRFR1 and CRFR2 mRNA in the Amygdala of Two Animal Models of Irritable Bowel Syndrome (IBS): Relevance to Visceral Pain Processing
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297T1775 The Combined Effects of Neonatal Psychological Stress and An Anxious Phenotype On Visceral Hypersensitivity and Colonic Function in Rats
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298T1664 Group-III Metabotropic Glutamate Receptors Are Expressed in Rodent Colon: A Role in Cholinergically Induced Electrolyte Secretion
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299W1699 Toll-Like Receptor mRNA Expression Is Selectively Increased in the Colonic Mucosa of Two Animal Models of Chronic Stress: Relevance to Irritable Bowel Syndrome
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300W2037 Assessment of Cortico-Limbic Activation Following Colorectal Distension in the Rat; Influence of Genetics and Early Life Stress
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301W2034 Polyunsaturated Fatty Acids Contribute to the Inflammatory Phenotype in Irritable Bowel Syndrome
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302A Sensitive Period of Mice Inhibitory System to Neonatal GABA Enhancement by Vigabatrin is Brain Region Dependent
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303Toll-Like Receptor mRNA Expression Is Selectively Increased in the Colonic Mucosa of Two Animal Models Relevant to Irritable Bowel Syndrome
PLoS ONE, 2009, 4, e8226
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304Tryptophan catabolism in females with irritable bowel syndrome: relationship to interferon‐gamma, severity of symptoms and psychiatric co‐morbidity1.6119Citations (PDF)
3051058 Tryptophan Catabolism in Irritable Bowel Syndrome: Relationship to Cytokines, Severity and Psychiatric Co-Morbidity
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306Evaluation of the anxiolytic-like profile of the GABAB receptor positive modulator CGP7930 in rodents
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307Enhanced Cholinergic-Mediated Increase in the Pro-Inflammatory Cytokine IL-6 in Irritable Bowel Syndrome: Role of Muscarinic Receptors0.6127Citations (PDF)
308The Rostral Anterior Cingulate Cortex Modulates the Efficiency of Amygdala-Dependent Fear Learning
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309S1804 Altered Kynurenine Pathway Metabolism in Irritable Bowel Syndrome (IBS)-Evidence of Indoleamine 2,3-Dioxygenase (IDO) Activation in a Male Cohort
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310S1823 Do Mast Cells Contribute to Visceral Hypersensitivity in Adult Rats Following Neonatal Psychological Stress?
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311T1836 Gabapentin Reverses Colorectal Distension-Induced Visceral Pain Behaviours in Rat Models of Acute and Chronic Visceral Hypersensitivity
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312T1423 Assessment of Colonic Secretory Function and Faecal Output in Viscerally Hypersensitive Wistar Kyoto Rats
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313T1838 Analgesic Effects of 5-HT2B Antagonists in Pre-Clinical Models of Colorectal Pain
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314Selective activation of metabotropic G-protein-coupled glutamate 7 receptor elicits anxiolytic-like effects in mice by modulating GABAergic neurotransmission
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315GABAB Receptor-Positive Modulation-Induced Blockade of the Rewarding Properties of Nicotine Is Associated with a Reduction in Nucleus Accumbens ΔFosB Accumulation2.355Citations (PDF)
316Specific roles of GABAB(1) receptor isoforms in cognition
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317Amyloid precursor protein knockdown by siRNA impairs spontaneous alternation in adult mice
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318Antidepressant-like effects of the novel, selective, 5-HT2C receptor agonist WAY-163909 in rodents
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319Global Down-Regulation of Gene Expression in the Brain Using RNA Interference, with Emphasis on Monoamine Transporters and GPCRs: Implications for Target Characterization in Psychiatric and Neurological Disorders1.221Citations (PDF)
320The rostral anterior cingulate cortex modulates depression but not anxiety-related behaviour in the rat
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321Differential Compartmentalization and Distinct Functions of GABAB Receptor Variants
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322Interfering with the brain: Use of RNA interference for understanding the pathophysiology of psychiatric and neurological disorders
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323Concomitant Deficits in Working Memory and Fear Extinction Are Functionally Dissociated from Reduced Anxiety in Metabotropic Glutamate Receptor 7-Deficient Mice
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324GABAB(1) Receptor Subunit Isoforms Exert a Differential Influence on Baseline but Not GABAB Receptor Agonist-Induced Changes in Mice2.325Citations (PDF)
325GABAB Receptor-Positive Modulation Decreases Selective Molecular and Behavioral Effects of Cocaine
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326Behavioral evaluation of mice deficient in GABAB(1) receptor isoforms in tests of unconditioned anxiety
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327Altered anxiety and depression-related behaviour in mice lacking GABAB(2) receptor subunits
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328Assessing substrates underlying the behavioral effects of antidepressants using the modified rat forced swimming test4.31,034Citations (PDF)
329The tail suspension test as a model for assessing antidepressant activity: Review of pharmacological and genetic studies in mice4.31,552Citations (PDF)
330The ascent of mouse: advances in modelling human depression and anxiety42.51,067Citations (PDF)
331Differential sensitivity to the motor and hypothermic effects of the GABAB receptor agonist baclofen in various mouse strains
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332Differential behavioral effects of the antidepressants reboxetine, fluoxetine, and moclobemide in a modified forced swim test following chronic treatment
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333Blockade of the mGlu5 receptor decreases basal and stress-induced cortical norepinephrine in rodents
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334The GABAB Receptor-Positive Modulator GS39783 and the GABAB Receptor Agonist Baclofen Attenuate the Reward-Facilitating Effects of Cocaine: Intracranial Self-Stimulation Studies in the Rat
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335From The Cover: A selective metabotropic glutamate receptor 7 agonist: Activation of receptor signaling via an allosteric site modulates stress parameters in vivo5.3254Citations (PDF)
336GABAB Receptor Antagonist-Mediated Antidepressant-Like Behavior Is Serotonin-Dependent2.3120Citations (PDF)
337Don't worry ‘B’ happy!: a role for GABAB receptors in anxiety and depression11.1416Citations (PDF)
338Metabotropic Glutamate Receptor Subtype 7 Ablation Causes Dysregulation of the HPA Axis and Increases Hippocampal BDNF Protein Levels: Implications for Stress-Related Psychiatric Disorders
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339Genetic and Pharmacological Evidence of a Role for GABAB Receptors in the Modulation of Anxiety- and Antidepressant-Like Behavior
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340Redistribution of GABA B(1) Protein and Atypical GABA B Responses in GABA B(2)-Deficient Mice
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341Behavioral Characterization of the Novel GABAB Receptor-Positive Modulator GS39783 (N,N′-Dicyclopentyl-2-methylsulfanyl-5-nitro-pyrimidine-4,6-diamine): Anxiolytic-Like Activity without Side Effects Associated with Baclofen or Benzodiazepines2.3209Citations (PDF)
342Norepinephrine-deficient mice lack responses to antidepressant drugs, including selective serotonin reuptake inhibitors5.3246Citations (PDF)
343Altered response to benzodiazepine anxiolytics in mice lacking GABAB(1) receptors3.345Citations (PDF)
344Neurochemical and behavioral consequences of widespread gene knockdown in the adult mouse brain by using nonviral RNA interference5.3202Citations (PDF)
345Bupropion enhances brain reward function and reverses the affective and somatic aspects of nicotine withdrawal in the rat
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346Non-nicotinic neuropharmacological strategies for nicotine dependence: beyond bupropion
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347Antidepressant and anxiolytic-like effects in mice lacking the group III metabotropic glutamate receptor mGluR71.6249Citations (PDF)
348Specific gamma-hydroxybutyrate-binding sites but loss of pharmacological effects of gamma-hydroxybutyrate in GABAB(1)-deficient mice1.6185Citations (PDF)
349Withdrawal from chronic amphetamine induces Depressive-Like behavioral effects in rodents
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350Behavioral and Neurochemical Effects of 5-{4-[4-(5-Cyano-3-indolyl)-butyl)-butyl]-1-piperazinyl}-benzofuran-2-carboxamide (EMD 68843): A Combined Selective Inhibitor of Serotonin Reuptake and 5-Hydroxytryptamine1A Receptor Partial Agonist2.388Citations (PDF)
351Assessing antidepressant activity in rodents: recent developments and future needs11.11,445Citations (PDF)
352cAMP Response Element-Binding Protein Is Essential for the Upregulation of Brain-Derived Neurotrophic Factor Transcription, But Not the Behavioral or Endocrine Responses to Antidepressant Drugs
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353Noradrenergic lesions differentially alter the antidepressant-like effects of reboxetine in a modified forced swim test3.3170Citations (PDF)
354Use of Dopamine-β-hydroxylase-Deficient Mice to Determine the Role of Norepinephrine in the Mechanism of Action of Antidepressant Drugs2.348Citations (PDF)
3555-HT1A and beyond: the role of serotonin and its receptors in depression and the antidepressant response
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356Pindolol Augmentation of Antidepressants: A Review and Rationale2.027Citations (PDF)
357Characterization of d-fenfluramine-induced hypothermia: evidence for multiple sites of action3.336Citations (PDF)
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360Comparative effects of serotonergic agonists withvarying efficacy at the 5-HT1Areceptor on core body temperature: modification by the selective 5-HT1Areceptor antagonist WAY 1006352.969Citations (PDF)
361Metyrapone displays antidepressant-like properties in preclinical paradigms
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