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107 peer-reviewed articles • 11,032 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Another renaissance for bile acid gastrointestinal microbiology33.1171Citations (PDF)
2The Hylemon-Björkhem pathway of bile acid 7-dehydroxylation: history, biochemistry, and microbiology
Journal of Lipid Research, 2023, 64, 100392
2.755Citations (PDF)
3Bile Acids, Gut Microbes, and the Neighborhood Food Environment—a Potential Driver of Colorectal Cancer Health Disparities
MSystems, 2022, 7,
2.821Citations (PDF)
4Diversity and distribution of sulfur metabolic genes in the human gut microbiome and their association with colorectal cancer
Microbiome, 2022, 10,
8.1115Citations (PDF)
5Berberine alters gut microbial function through modulation of bile acids
BMC Microbiology, 2021, 21,
2.933Citations (PDF)
6Completion of the gut microbial epi-bile acid pathway
Gut Microbes, 2021, 13,
8.497Citations (PDF)
7Support policies that foster a healthy food environment and incentivize healthy food purchases to mitigate cancer inequities1.43Citations (PDF)
8Comparison between handheld ultrasound and regional and whole-body dual energy x-ray absorptiometry (DXA) for body fat assessment
Clinical Nutrition ESPEN, 2021, 46, 386-393
0.411Citations (PDF)
9Treatment With the CSF1R Antagonist GW2580, Sensitizes Microglia to Reactive Oxygen Species3.317Citations (PDF)
10A prospective cohort analysis of gut microbial co-metabolism in Alaska Native and rural African people at high and low risk of colorectal cancer3.279Citations (PDF)
11Effects of taurocholic acid metabolism by gut bacteria: A controlled feeding trial in adult African American subjects at elevated risk for colorectal cancer0.920Citations (PDF)
12Crosstalk between microglia and patient-derived glioblastoma cells inhibit invasion in a three-dimensional gelatin hydrogel model6.142Citations (PDF)
13Plasticity in the Human Gut Microbiome Defies Evolutionary Constraints
MSphere, 2019, 4,
2.150Citations (PDF)
14International Cancer Microbiome Consortium consensus statement on the role of the human microbiome in carcinogenesis
Gut, 2019, 68, 1624-1632
10.3266Citations (PDF)
15Hypoxia activates enhanced invasive potential and endogenous hyaluronic acid production by glioblastoma cells
Biomaterials Science, 2018, 6, 854-862
4.058Citations (PDF)
16Airyscan super‐resolution microscopy of mitochondrial morphology and dynamics in living tumor cells1.430Citations (PDF)
17CHCHD2 Knockout Alters Mitochondrial Metabolism, Increases Sensitivity to Sulfasalazine, and Decreases Proliferation and Invasive Potential of Glioblastoma Cells Expressing EGFRvIII
FASEB Journal, 2018, 32,
2.31Citations (PDF)
18Race-dependent association of sulfidogenic bacteria with colorectal cancer
Gut, 2017, 66, 1983-1994
10.3209Citations (PDF)
19Zinc enhances intestinal epithelial barrier function through the PI3K/AKT/mTOR signaling pathway in Caco-2 cells3.4168Citations (PDF)
20Distinct responses of compartmentalized glutathione redox potentials to pharmacologic quinones targeting NQO11.54Citations (PDF)
21Design considerations for open-well microfluidic platforms for hypoxic cell studies
Biomicrofluidics, 2017, 11,
1.613Citations (PDF)
22Exercise and gut immune function: evidence of alterations in colon immune cell homeostasis and microbiome characteristics with exercise training
Immunology and Cell Biology, 2016, 94, 158-163
2.0121Citations (PDF)
23Taurocholic acid metabolism by gut microbes and colon cancer
Gut Microbes, 2016, 7, 201-215
8.4316Citations (PDF)
24Gut Microbiome of Coexisting BaAka Pygmies and Bantu Reflects Gradients of Traditional Subsistence Patterns
Cell Reports, 2016, 14, 2142-2153
4.4270Citations (PDF)
25Table grape consumption reduces adiposity and markers of hepatic lipogenesis and alters gut microbiota in butter fat-fed mice3.490Citations (PDF)
26Relationship Between Microbiota of the Colonic Mucosa vs Feces and Symptoms, Colonic Transit, and Methane Production in Female Patients With Chronic Constipation
Gastroenterology, 2016, 150, 367-379.e1
0.9391Citations (PDF)
27Voluntary and forced exercise differentially alters the gut microbiome in C57BL/6J mice
Journal of Applied Physiology, 2015, 118, 1059-1066
1.7258Citations (PDF)
28Fat, fibre and cancer risk in African Americans and rural Africans10.8962Citations (PDF)
29Gut microbiome composition and metabolomic profiles of wild western lowland gorillas (Gorilla gorilla gorilla) reflect host ecology
Molecular Ecology, 2015, 24, 2551-2565
2.2191Citations (PDF)
30Galacto-oligosaccharides may directly enhance intestinal barrier function through the modulation of goblet cells2.7134Citations (PDF)
31Phylogenomic Analysis of the α Proteasome Gene Family from Early-Diverging Eukaryotes1.212Citations (PDF)
32Methods to study the tumor microenvironment under controlled oxygen conditions
Trends in Biotechnology, 2014, 32, 556-563
6.6107Citations (PDF)
33Featured Article: Inhibition of glutathione synthesis distinctly alters mitochondrial and cytosolic redox poise2.18Citations (PDF)
34An Improved Method for Collecting Breath From 3‐ to 7‐Year‐Old Children2.11Citations (PDF)
35Circadian clock gene expression regulates cancer cell growth through glutaminase1.79Citations (PDF)
36Microfluidic platform for the study of intercellular communication via soluble factor-cell and cell-cell paracrine signaling
Biomicrofluidics, 2014, 8,
1.621Citations (PDF)
37Intestinal and Systemic Inflammatory Responses Are Positively Associated with Sulfidogenic Bacteria Abundance in High-Fat–Fed Male C57BL/6J Mice
Journal of Nutrition, 2014, 144, 1181-1187
2.367Citations (PDF)
38Influence of dietary fat on intestinal microbes, inflammation, barrier function and metabolic outcomes3.4152Citations (PDF)
39Diet, microbiota, and microbial metabolites in colon cancer risk in rural Africans and African Americans3.2629Citations (PDF)
40Transient light-induced intracellular oxidation revealed by redox biosensor1.58Citations (PDF)
41Habitat degradation impacts black howler monkey ( Alouatta pigra ) gastrointestinal microbiomes
ISME Journal, 2013, 7, 1344-1353
5.91,267Citations (PDF)
42Mode of Delivery and Early Nutrition Modulate Microbial Colonization and Fermentation Products in Neonatal Piglets
Journal of Nutrition, 2013, 143, 795-803
2.380Citations (PDF)
43Escherichia coli challenge and one type of smectite alter intestinal barrier of pigs4.535Citations (PDF)
44Farnesoid X Receptor Expression Is Decreased in Colonic Mucosa of Patients with Primary Sclerosing Cholangitis and Colitis-associated Neoplasia
Inflammatory Bowel Diseases, 2013, 19, 275-282
2.348Citations (PDF)
45Direct modulation of goblet cell function by galacto‐oligosaccharides
FASEB Journal, 2013, 27,
2.31Citations (PDF)
46Microbial pathways in colonic sulfur metabolism and links with health and disease2.2528Citations (PDF)
47Förster resonance energy transfer-based sensor targeting endoplasmic reticulum reveals highly oxidative environment2.124Citations (PDF)
48Contributions of the microbial hydrogen economy to colonic homeostasis33.1273Citations (PDF)
49Hydrogenotrophic microbiota distinguish native Africans from African and European Americans1.733Citations (PDF)
50Pseudomonas aeruginosa pyocyanin causes airway goblet cell hyperplasia and metaplasia and mucus hypersecretion by inactivating the transcriptional factor FoxA2
Cellular Microbiology, 2012, 14, 401-415
0.754Citations (PDF)
51Imaging in real-time with FRET the redox response of tumorigenic cells to glutathione perturbations in a microscale flow1.412Citations (PDF)
52Microbial DNA extraction from intestinal biopsies is improved by avoiding mechanical cell disruption1.416Citations (PDF)
53On the Relationship between Sialomucin and Sulfomucin Expression and Hydrogenotrophic Microbes in the Human Colonic Mucosa
PLoS ONE, 2011, 6, e24447
1.595Citations (PDF)
54Analysis of the hydrogenotrophic microbiota of wild and captive black howler monkeys (Alouatta pigra) in palenque national park, Mexico0.956Citations (PDF)
55Development of a high-dynamic range, GFP-based FRET probe sensitive to oxidative microenvironments2.137Citations (PDF)
56Inflammatory cues modulate the expression of secretory product genes, Golgi sulfotransferases and sulfomucin production in LS174T cells
Experimental Biology and Medicine, 2011, 236, 1402-1412
2.120Citations (PDF)
57Abundance and diversity of mucosa-associated hydrogenotrophic microbes in the healthy human colon
ISME Journal, 2011, 6, 57-70
5.9167Citations (PDF)
58Pyrosequencing-Based Analysis of the Mucosal Microbiota in Healthy Individuals Reveals Ubiquitous Bacterial Groups and Micro-Heterogeneity
PLoS ONE, 2011, 6, e25042
1.597Citations (PDF)
59DNA damage and toxicogenomic analyses of hydrogen sulfide in human intestinal epithelial FHs 74 Int cells1.5197Citations (PDF)
60Arsenic (+ 3 Oxidation State) Methyltransferase and the Methylation of Arsenicals in the Invertebrate Chordate Ciona intestinalis
Toxicological Sciences, 2010, 113, 70-76
3.135Citations (PDF)
61Mechanisms of Microbial Hydrogen Disposal in the Human Colon and Implications for Health and Disease9.1178Citations (PDF)
62Heterogeneity of Vaginal Microbial Communities within Individuals2.5165Citations (PDF)
63Molecular analysis of microbial community structure in the chicken ileum following organic acid supplementation
Veterinary Microbiology, 2009, 137, 345-353
1.658Citations (PDF)
64Change in zooxanthellae and mucocyte tissue density as an adaptive response to environmental stress by the coral, Montastraea annularis
Marine Biology, 2009, 156, 2379-2389
1.352Citations (PDF)
65Molecular Ecological Analysis of Fecal Bacterial Populations from Term Infants Fed Formula Supplemented with Selected Blends of Prebiotics2.489Citations (PDF)
66Intestinal microbiota of sow‐reared piglets is unaffected by route of delivery
FASEB Journal, 2009, 23,
2.31Citations (PDF)
67An Evaluation of Information Content as a Metric for the Inference of Putative Conserved Noncoding Regions in DNA Sequences Using a Genetic Algorithms Approach2.630Citations (PDF)
68Impact of the Intestinal Microbiota on the Development of Mucosal Defense
Clinical Infectious Diseases, 2008, 46, S80-S86
3.742Citations (PDF)
69It's not junk!
ACM SIGEVOlution, 2008, 3, 5-16
0.10Citations (PDF)
70Protective role for nitric oxide during the endoplasmic reticulum stress response in pancreatic β-cells2.540Citations (PDF)
71Hydrogen Sulfide Induces Direct Radical-Associated DNA Damage
Molecular Cancer Research, 2007, 5, 455-459
2.0265Citations (PDF)
72Cross-Talk between Probiotic Bacteria and the Host Immune System1,
Journal of Nutrition, 2007, 137, 781S-790S
2.3301Citations (PDF)
73Transcriptome profiling of the small intestinal epithelium in germfree versus conventional piglets
BMC Genomics, 2007, 8,
2.1114Citations (PDF)
74Cell Migration and Polarity on Microfabricated Gradients of Extracellular Matrix Proteins
Langmuir, 2006, 22, 4250-4258
3.0121Citations (PDF)
75Evidence That Hydrogen Sulfide Is a Genotoxic Agent2.0344Citations (PDF)
76Twists and turns in the development and maintenance of the mammalian small intestine epithelium2.923Citations (PDF)
77Temporal changes of multiple redox couples from proliferation to growth arrest in IEC-6 intestinal epithelial cells2.926Citations (PDF)
78Proteasome Inhibition Alters Glucose-stimulated (Pro)insulin Secretion and Turnover in Pancreatic β-Cells
Journal of Biological Chemistry, 2005, 280, 15727-15734
1.366Citations (PDF)
79Regiospecific Control of Protein Expression in Cells Cultured on Two-Component Counter Gradients of Extracellular Matrix Proteins
Langmuir, 2005, 21, 3061-3068
3.045Citations (PDF)
80Molecular Ecological Analysis of the Gastrointestinal Microbiota: A Review
Journal of Nutrition, 2004, 134, 465-472
2.3366Citations (PDF)
81Commensal Bacteria, Redox Stress, and Colorectal Cancer: Mechanisms and Models2.1232Citations (PDF)
82Hydrogen sulfide induces serum‐independent cell cycle entry in nontransformed rat intestinal epithelial cells
FASEB Journal, 2003, 17, 1310-1312
2.3197Citations (PDF)
83Gastrointestinal and Microbial Responses to Sulfate-Supplemented Drinking Water in Mice2.192Citations (PDF)
84Fermentable Fiber Reduces Recovery Time and Improves Intestinal Function in Piglets Following Salmonella typhimurium Infection
Journal of Nutrition, 2003, 133, 1845-1852
2.380Citations (PDF)
85Roles of Vibrio fischeri and Nonsymbiotic Bacteria in the Dynamics of Mucus Secretion during Symbiont Colonization of the Euprymna scolopes Light Organ2.4125Citations (PDF)
86TNF-α Sensitizes HT-29 Colonic Epithelial Cells to Intestinal Lactobacilli 12.142Citations (PDF)
87Redox control of the transsulfuration and glutathione biosynthesis pathways1.759Citations (PDF)
88Selective growth of mucolytic bacteria including Clostridium perfringens in a neonatal piglet model of total parenteral nutrition,,3.2136Citations (PDF)
89Molecular Ecological Analysis of Dietary and Antibiotic-Induced Alterations of the Mouse Intestinal Microbiota
Journal of Nutrition, 2001, 131, 1862-1870
2.3109Citations (PDF)
90Microbial modulation of innate defense: goblet cells and the intestinal mucus layer3.2859Citations (PDF)
91Desulfotomaculum genus- and subgenus-specific 16S rRNA hybridization probes for environmental studies
Environmental Microbiology, 2000, 2, 143-159
2.645Citations (PDF)
92Denaturing Gradient Gel Electrophoresis Analysis of 16S Ribosomal DNA Amplicons To Monitor Changes in Fecal Bacterial Populations of Weaning Pigs after Introduction of Lactobacillus reuteri Strain MM532.4172Citations (PDF)
93Total Parenteral Nutrition Alters Molecular and Cellular Indices of Intestinal Inflammation in Neonatal Piglets2.144Citations (PDF)
94Developmental microbial ecology of the neonatal gastrointestinal tract3.21,118Citations (PDF)
95Histidine Availability Alters Glucagon Gene Expression in Murine αTC6 Cells
Journal of Nutrition, 1998, 128, 973-976
2.312Citations (PDF)
96Interferon-α and interferon-γ differentially affect pancreatic β-cell phenotype and function2.912Citations (PDF)
97Biotype and Ribotype Diversity among Lactobacillus Isolates from the Mouse Ileum1.610Citations (PDF)
98Genetic mapping of the LMP2 proteasome subunit gene to the BoLA class llb region
Immunogenetics, 1995, 41, 44-46
1.17Citations (PDF)
99Glucose Modulates γ-Aminobutyric Acid Release from the Pancreatic βTC6 Cell Line
Journal of Biological Chemistry, 1995, 270, 30286-30289
1.353Citations (PDF)
100Defects in the structure and expression of the genes for the T cell marker Rt6 in NZW and (NZB × NZW)F1 mice
International Immunology, 1995, 7, 883-890
2.049Citations (PDF)
101Effect of genetic background on the developmental expression of c-fos and c-myc in chicken
Molecular Biology Reports, 1992, 16, 85-90
1.93Citations (PDF)
102Effect of dietary manipulation on c-myc RNA expression in adipose tissue, muscle and liver of broiler chickens1.512Citations (PDF)
103Chromosomal localization, DNA polymorphism, and expression of Rt-6, the mouse homologue of rat T-lymphocyte differentiation marker RT6
Immunogenetics, 1991, 33,
1.144Citations (PDF)
104Decreases in local hormone biosynthesis and c-fos gene expression accompany differentiation of porcine preadipocytes0.88Citations (PDF)
105Localization of a mouse heat shock Hsp70 gene within the H-2 complex
Immunogenetics, 1990, 32,
1.138Citations (PDF)
106Evidence for Abnormal Prostaglandin Synthesis in Obese Zucker Rat Adipose Cell Cultures
Journal of Nutrition, 1989, 119, 458-462
2.323Citations (PDF)
107Characterization of an NADPH-dependent 17β-hydroxysteroid dehydrogenase from a urinary tract bacterial isolate1.80Citations (PDF)