| 1 | 2D Janus carrier-enabled trojan horse: Gallium delivery for the sequential therapy of biofilm associated infection | 9.7 | 25 | Citations (PDF) |
| 2 | Piezoelectric‐Enhanced Nanocatalysts Trigger Neutrophil N1 Polarization against Bacterial Biofilm by Disrupting Redox Homeostasis | 17.7 | 47 | Citations (PDF) |
| 3 | High Fe-Loading Single-Atom Catalyst Boosts ROS Production by Density Effect for Efficient Antibacterial Therapy | 26.5 | 79 | Citations (PDF) |
| 4 | Photothermal H2S generation promotes the function restoration of spinal cord from acute injury | 7.5 | 5 | Citations (PDF) |
| 5 | Multifaceted Immunomodulatory Nanocomplexes Target Neutrophilic‐ROS Inflammation in Acute Lung Injury | 7.8 | 17 | Citations (PDF) |
| 6 | Engineered silicon-titania heterojunction elicits catalytic cancer cell death | 8.7 | 7 | Citations (PDF) |
| 7 | Nanomedicine-enabled concurrent regulations of ROS generation and copper metabolism for sonodynamic-amplified tumor therapy | 9.7 | 48 | Citations (PDF) |
| 8 | A cerium single-atom catalyst enables targeted catalytic therapy for acute kidney injury via neutrophil hitchhiking | 8.3 | 16 | Citations (PDF) |
| 9 | Piezoelectric‐Enhanced Nanocatalysts Trigger Neutrophil N1 Polarization against Bacterial Biofilm by Disrupting Redox Homeostasis (Adv. Mater. 6/2025) | 17.7 | 3 | Citations (PDF) |
| 10 | Multifaceted Immunomodulatory Nanocomplexes Target Neutrophilic‐ROS Inflammation in Acute Lung Injury (Adv. Sci. 8/2025) | 7.8 | 6 | Citations (PDF) |
| 11 | Bacterial cell wall-specific nanomedicine for the elimination of Staphylococcus aureus and Pseudomonas aeruginosa through electron-mechanical intervention | 11.0 | 69 | Citations (PDF) |
| 12 | Enzyme-Mimic Activities of RuCo Bimetallic Nanosheets for Inflammatory Bowel Disease Treatment | 12.1 | 29 | Citations (PDF) |
| 13 | Nanomedicine-enabled next-generation therapeutics for spinal cord injury | 12.8 | 11 | Citations (PDF) |
| 14 | Two-dimensional nanomaterials for inflammation-related disease treatments | 4.2 | 2 | Citations (PDF) |
| 15 | Selenide‐Driven Reactive Oxygen Species Activation and Fe(II) Regeneration for Enhanced Nanocatalytic Antibacterial Therapeutics | 6.6 | 5 | Citations (PDF) |
| 16 | Montmorillonite-Based Oral Vaccine for Colorectal Cancer Immunotherapy through Mucosal Immune Activation | 12.1 | 19 | Citations (PDF) |
| 17 | Antioxidant RuCo nanosheet attenuates capsule fibrosis in adhesive capsulitis of shoulder by p38 MAPK signaling pathway inhibition | 4.5 | 5 | Citations (PDF) |
| 18 | Cerium single-atom catalysts-armed Lactobacillus reuteri for multipronged anti-inflammatory/anti-fibrotic therapy of inflammatory bowel disease | 8.6 | 6 | Citations (PDF) |
| 19 | Inorganic Nanomaterials-Mediated Immune Regulation for Inflammation Resolution | 4.4 | 8 | Citations (PDF) |
| 20 | Modulation of electron transfer properties in two-dimensional nanomaterials for enhanced therapeutic efficacy | 7.5 | 5 | Citations (PDF) |
| 21 | In Situ Piezoelectric‐Catalytic Anti‐Inflammation Promotes the Rehabilitation of Acute Spinal Cord Injury in Synergy | 17.7 | 117 | Citations (PDF) |
| 22 | Nanocatalytic medicine enabled next-generation therapeutics for bacterial infections | 4.5 | 12 | Citations (PDF) |
| 23 | A natural killer cell mimic against intracellular pathogen infections | 8.2 | 49 | Citations (PDF) |
| 24 | Innenrücktitelbild: Bandgap‐Engineered Germanene Nanosheets as an Efficient Photodynamic Agent for Cancer Therapy (Angew. Chem. 12/2023) | 0.9 | 0 | Citations (PDF) |
| 25 | Inorganic Nanosheet-Shielded Probiotics: A Self-Adaptable Oral Delivery System for Intestinal Disease Treatment | 6.3 | 56 | Citations (PDF) |
| 26 | Revisiting the impacts of silica nanoparticles on endothelial cell junctions and tumor metastasis | 12.5 | 14 | Citations (PDF) |
| 27 | Hydrogenated silicene nanosheet functionalized scaffold enables immuno‐bone remodeling | 16.5 | 56 | Citations (PDF) |
| 28 | Iodinene Nanosheet-to-Iodine Molecule Allotropic Transformation for Antibiosis | 12.1 | 43 | Citations (PDF) |
| 29 | Functional nanoparticle-enabled non-genetic neuromodulation | 8.5 | 18 | Citations (PDF) |
| 30 | A self-degradable “nanoarmor” coating of medical implant potentiates bone fracture healing | 7.5 | 24 | Citations (PDF) |
| 31 | Local delivery and controlled release of miR-34a loaded in hydroxyapatite/mesoporous organosilica nanoparticles composite-coated implant wire to accelerate bone fracture healing | 9.7 | 31 | Citations (PDF) |
| 32 | Microbiotic nanomedicine for tumor-specific chemotherapy-synergized innate/adaptive antitumor immunity | 7.5 | 96 | Citations (PDF) |
| 33 | Reversible potassium-ion alloying storage in crystalline silicene | 8.7 | 19 | Citations (PDF) |
| 34 | Combinational Chemoimmunotherapy for Breast Cancer by Codelivery of Doxorubicin and PD-L1 siRNA Using a PAMAM-Incorporated Liposomal Nanoplatform | 5.5 | 35 | Citations (PDF) |
| 35 | Bridging oxidase catalysis and oxygen reduction electrocatalysis by model single-atom catalysts | 7.0 | 66 | Citations (PDF) |
| 36 | Biomimetic Nanomedicine-Triggered
in Situ
Vaccination for Innate and Adaptive Immunity Activations for Bacterial Osteomyelitis Treatment | 11.6 | 108 | Citations (PDF) |
| 37 | Water-Enabled H2 Generation from Hydrogenated Silicon Nanosheets for Efficient Anti-Inflammation | 12.1 | 77 | Citations (PDF) |
| 38 | Inorganic nanosheets facilitate humoral immunity against medical implant infections by modulating immune co-stimulatory pathways | 11.0 | 106 | Citations (PDF) |
| 39 | Blocking glutathione regeneration: Inorganic NADPH oxidase nanozyme catalyst potentiates tumoral ferroptosis | 7.5 | 122 | Citations (PDF) |
| 40 | Two-dimensional silicene photodynamic tumor-targeting nanomedicine | 4.5 | 12 | Citations (PDF) |
| 41 | Hydrogenated Germanene Nanosheets as an Antioxidative Defense Agent for Acute Kidney Injury Treatment | 7.8 | 38 | Citations (PDF) |
| 42 | Black-Phosphorus-Nanosheet-Reinforced Coating of Implants for Sequential Biofilm Ablation and Bone Fracture Healing Acceleration | 5.5 | 37 | Citations (PDF) |
| 43 | Catalytic anti-oxidative stress for osteoarthritis treatment by few-layered phosphorene | 4.5 | 5 | Citations (PDF) |
| 44 | Engineering two-dimensional silicene composite nanosheets for dual-sensitized and photonic hyperthermia-augmented cancer radiotherapy | 9.7 | 50 | Citations (PDF) |
| 45 | Emerging two-dimensional material nanozymes for theranostic nanomedicine | 1.3 | 11 | Citations (PDF) |
| 46 | The Adenosine A2A Receptor Activation in Nucleus Accumbens Suppress Cue-Induced Reinstatement of Propofol Self-administration in Rats | 2.7 | 12 | Citations (PDF) |
| 47 | Transitional Metal‐Based Noncatalytic Medicine for Tumor Therapy | 6.6 | 41 | Citations (PDF) |
| 48 | Engineering 2D Arsenic‐Phosphorus Theranostic Nanosheets | 12.0 | 21 | Citations (PDF) |
| 49 | Freestanding germanene nanosheets for rapid degradation and photothermal conversion | 3.3 | 42 | Citations (PDF) |
| 50 | Magnetostrictive-Piezoelectric-Triggered Nanocatalytic Tumor Therapy | 6.3 | 145 | Citations (PDF) |
| 51 | Design, optimization and evaluation of a microemulsion-based hydrogel with high malleability for enhanced transdermal delivery of levamisole | 3.9 | 26 | Citations (PDF) |
| 52 | A nonferrous ferroptosis-like strategy for antioxidant inhibition–synergized nanocatalytic tumor therapeutics | 8.2 | 238 | Citations (PDF) |
| 53 | Emerging two-dimensional silicene nanosheets for biomedical applications | 3.3 | 41 | Citations (PDF) |
| 54 | Single‐Atom Catalysts for Nanocatalytic Tumor Therapy | 7.3 | 101 | Citations (PDF) |
| 55 | Niobium Carbide MXene Augmented Medical Implant Elicits Bacterial Infection Elimination and Tissue Regeneration | 11.6 | 245 | Citations (PDF) |
| 56 | Functional nanomaterials in peripheral nerve regeneration: Scaffold design, chemical principles and microenvironmental remodeling | 12.8 | 184 | Citations (PDF) |
| 57 | Hydrogen-bonded silicene nanosheets of engineered bandgap and selective degradability for photodynamic therapy | 9.7 | 35 | Citations (PDF) |
| 58 | HSP90 pathway in intermediate mononuclear cells causes plaque erosion via induction of neutrophil hyper-responsiveness | 2.6 | 1 | Citations (PDF) |
| 59 | JTE‐013 supplementation improves erectile dysfunction in rats with streptozotocin‐induced type Ⅰ diabetes through the inhibition of the rho‐kinase pathway, fibrosis, and apoptosis | 2.4 | 32 | Citations (PDF) |
| 60 | Anti‐Infective Application of Graphene‐Like Silicon Nanosheets via Membrane Destruction | 6.6 | 20 | Citations (PDF) |
| 61 | Nanomedicine‐Enabled Photonic Thermogaseous Cancer Therapy | 7.8 | 102 | Citations (PDF) |
| 62 | Bioinspired Copper Single‐Atom Catalysts for Tumor Parallel Catalytic Therapy | 17.7 | 354 | Citations (PDF) |
| 63 | Potentiated cytosolic drug delivery and photonic hyperthermia by 2D free-standing silicene nanosheets for tumor nanomedicine | 3.7 | 29 | Citations (PDF) |
| 64 | Two-dimensional silicene composite nanosheets enable exogenous/endogenous-responsive and synergistic hyperthermia-augmented catalytic tumor theranostics | 9.7 | 72 | Citations (PDF) |
| 65 | MXene/Polymer Membranes: Synthesis, Properties, and Emerging Applications | 4.8 | 679 | Citations (PDF) |
| 66 | Borophene and Boron Fullerene Materials in Hydrogen Storage: Opportunities and Challenges | 4.3 | 97 | Citations (PDF) |
| 67 | A two-dimensional MXene potentiates a therapeutic microneedle patch for photonic implantable medicine in the second NIR biowindow | 3.7 | 79 | Citations (PDF) |
| 68 | In situ phase-changeable 2D MXene/zein bio-injection for shear wave elastography-guided tumor ablation in NIR-II bio-window | 4.3 | 22 | Citations (PDF) |
| 69 | Photonic/magnetic hyperthermia-synergistic nanocatalytic cancer therapy enabled by zero-valence iron nanocatalysts | 9.7 | 69 | Citations (PDF) |
| 70 | Silicene: Wet‐Chemical Exfoliation Synthesis and Biodegradable Tumor Nanomedicine | 17.7 | 154 | Citations (PDF) |
| 71 | Enhanced Tumor-Specific Disulfiram Chemotherapy by In Situ Cu2+ Chelation-Initiated Nontoxicity-to-Toxicity Transition | 12.1 | 359 | Citations (PDF) |
| 72 | Triggering Sequential Catalytic Fenton Reaction on 2D MXenes for Hyperthermia-Augmented Synergistic Nanocatalytic Cancer Therapy | 5.5 | 116 | Citations (PDF) |
| 73 | Photonic cancer nanomedicine using the near infrared-II biowindow enabled by biocompatible titanium nitride nanoplatforms | 4.2 | 72 | Citations (PDF) |
| 74 | Highly Catalytic Niobium Carbide (MXene) Promotes Hematopoietic Recovery after Radiation by Free Radical Scavenging | 11.6 | 258 | Citations (PDF) |
| 75 | Self-evolved hydrogen peroxide boosts photothermal-promoted tumor-specific nanocatalytic therapy | 4.3 | 77 | Citations (PDF) |
| 76 | Inorganic Nanoshell-Stabilized Liquid Metal for Targeted Photonanomedicine in NIR-II Biowindow | 6.3 | 166 | Citations (PDF) |
| 77 | Nanocatalytic Tumor Therapy by Biomimetic Dual Inorganic Nanozyme‐Catalyzed Cascade Reaction | 7.8 | 613 | Citations (PDF) |
| 78 | A polyoxometalate-functionalized two-dimensional titanium carbide composite MXene for effective cancer theranostics | 6.7 | 160 | Citations (PDF) |
| 79 | “Stepwise Extraction” strategy-based injectable bioresponsive composite implant for cancer theranostics | 9.7 | 29 | Citations (PDF) |
| 80 | 2D magnetic titanium carbide MXene for cancer theranostics | 4.3 | 142 | Citations (PDF) |
| 81 | Ultrasmall mesoporous organosilica nanoparticles: Morphology modulations and redox-responsive biodegradability for tumor-specific drug delivery | 9.7 | 153 | Citations (PDF) |
| 82 | 2D Ultrathin MXene‐Based Drug‐Delivery Nanoplatform for Synergistic Photothermal Ablation and Chemotherapy of Cancer | 6.6 | 498 | Citations (PDF) |
| 83 | Nanoparticle-triggered in situ catalytic chemical reactions for tumour-specific therapy | 32.6 | 789 | Citations (PDF) |
| 84 | Oxygen-Deficient Black Titania for Synergistic/Enhanced Sonodynamic and Photoinduced Cancer Therapy at Near Infrared-II Biowindow | 11.6 | 439 | Citations (PDF) |
| 85 | Theranostic 2D Tantalum Carbide (MXene) | 17.7 | 585 | Citations (PDF) |
| 86 | Theranostic 2D ultrathin MnO2 nanosheets with fast responsibility to endogenous tumor microenvironment and exogenous NIR irradiation | 9.7 | 198 | Citations (PDF) |
| 87 | Therapeutic mesopore construction on 2D Nb2C MXenes for targeted and enhanced chemo-photothermal cancer therapy in NIR-II biowindow | 8.1 | 240 | Citations (PDF) |
| 88 | Mitochondria‐Targeted Artificial “Nano‐RBCs” for Amplified Synergistic Cancer Phototherapy by a Single NIR Irradiation | 7.8 | 158 | Citations (PDF) |
| 89 | Multifunctional Mesoporous Silica Nanoprobes: Material Chemistry–Based Fabrication and Bio‐Imaging Functionality | 1.6 | 24 | Citations (PDF) |
| 90 | Surface Nanopore Engineering of 2D MXenes for Targeted and Synergistic Multitherapies of Hepatocellular Carcinoma | 17.7 | 233 | Citations (PDF) |
| 91 | 2D Superparamagnetic Tantalum Carbide Composite MXenes for Efficient Breast-Cancer Theranostics | 8.1 | 283 | Citations (PDF) |
| 92 | Magnesium‐Engineered Silica Framework for pH‐Accelerated Biodegradation and DNAzyme‐Triggered Chemotherapy | 7.3 | 55 | Citations (PDF) |
| 93 | Synergistic Sonodynamic/Chemotherapeutic Suppression of Hepatocellular Carcinoma by Targeted Biodegradable Mesoporous Nanosonosensitizers | 12.0 | 157 | Citations (PDF) |
| 94 | Two-dimensional titanium carbide MXenes as efficient non-noble metal electrocatalysts for oxygen reduction reaction | 5.1 | 101 | Citations (PDF) |
| 95 | Molecularly organic/inorganic hybrid hollow mesoporous organosilica nanocapsules with tumor-specific biodegradability and enhanced chemotherapeutic functionality | 9.7 | 209 | Citations (PDF) |
| 96 | Metalloporphyrin-Encapsulated Biodegradable Nanosystems for Highly Efficient Magnetic Resonance Imaging-Guided Sonodynamic Cancer Therapy | 12.1 | 654 | Citations (PDF) |
| 97 | Two-Dimensional Ultrathin MXene Ceramic Nanosheets for Photothermal Conversion | 6.3 | 1,302 | Citations (PDF) |
| 98 | A Two-Dimensional Biodegradable Niobium Carbide (MXene) for Photothermal Tumor Eradication in NIR-I and NIR-II Biowindows | 12.1 | 1,394 | Citations (PDF) |
| 99 | Biocompatible 2D Titanium Carbide (MXenes) Composite Nanosheets for pH-Responsive MRI-Guided Tumor Hyperthermia | 4.8 | 399 | Citations (PDF) |
| 100 | Two-Dimensional Tantalum Carbide (MXenes) Composite Nanosheets for Multiple Imaging-Guided Photothermal Tumor Ablation | 11.6 | 518 | Citations (PDF) |
| 101 | Human Papillomavirus Prevalence and Distribution according to Age among Korean and Chinese Women | 0.1 | 2 | Citations (PDF) |
| 102 | Effect of Photofrin-mediated photocytotoxicity on a panel of human pancreatic cancer cells | 1.4 | 13 | Citations (PDF) |
| 103 | Effect of Glytan on Liver Fibrosis in Portal Hypertensive Rats | 0.2 | 0 | Citations (PDF) |
| 104 | Effect of Glytan on the Expression of the Nicotinic Acetylcholine Receptor a7 in Portal Hypertensive Rats | 0.2 | 0 | Citations (PDF) |
| 105 | Treatment and prognosis of pituitary adenomas in children | 0.9 | 1 | Citations (PDF) |
| 106 | Permucosal implantation pilot study with HA-coated dental implant in dogs | 9.7 | 10 | Citations (PDF) |
| 107 | Responses of the working rat heart to carbon monoxide | 1.7 | 9 | Citations (PDF) |
| 108 | HEPATIC TOLERANCE TO HYPOTENSION AS ASSESSED BY THE CHANGES IN ARTERIAL KETONE BODY RATIO IN THE STATE OF BRAIN DEATH | 1.7 | 31 | Citations (PDF) |
| 109 | Determination of trace elements in bone crusts of rabbit during healing after fracture by INAA | 1.1 | 4 | Citations (PDF) |
| 110 | Hypoxia-Irrelevant Photonic Thermodynamic Cancer Nanomedicine | 11.6 | 125 | Citations (PDF) |
| 111 | Bandgap‐Engineered Germanene Nanosheets as an Efficient Photodynamic Agent for Cancer Therapy | 0.9 | 0 | Citations (PDF) |
| 112 | Sonoelectric Nanonet‐Activated Extracellular Electron Transfer for Wireless Non‐Genetic Stimulation of Pancreatic β Cells | 0.9 | 1 | Citations (PDF) |
| 113 | Cysteine Metabolism Reprogramming-Motivated Catalytic Immunotherapy for Orthopedic Biofilm Infections | 11.6 | 5 | Citations (PDF) |
| 114 | Author correction to “Cerium single-atom catalysts-armed Lactobacillus reuteri for multipronged anti-inflammatory/anti-fibrotic therapy of inflammatory bowel disease” [Acta Pharmaceutica Sinica B 15 (2025) 5400-5415] | 8.6 | 0 | Citations (PDF) |
| 115 | An updated overview of lipid-regulated immunobiology in macrophages | 1.7 | 3 | Citations (PDF) |
| 116 | An Enzyme‐Like Catalyzed Nanosheets for Redox Stress Oscillation Therapy Against Bacterial Infections | 7.8 | 5 | Citations (PDF) |
| 117 | MnOx-armored magnesium implants for anti-osteosarcoma and biofilm eradication by charge-transfer interference | 4.5 | 1 | Citations (PDF) |
| 118 | In situ coagulation environment regulation–assisted thrombus clearance via hydrogenated silicon-based nanothrombolytics | 8.2 | 2 | Citations (PDF) |
| 119 | Advances in metal-hybridized nanoenzymes for catalytic cancer diagnosis and therapy 0, 41, 1-15 | | 0 | Citations (PDF) |
| 120 | Disarming bacterial iron homeostasis and sulfur antioxidant defenses via coordination-driven photosensitizer de-aggregation for enhanced photodynamic infection eradication | 9.7 | 0 | Citations (PDF) |
| 121 | Development and Preclinical Evaluation of a Novel
68
Ga-Labeled Peptide Probe Targeting CD105 for Tumor Imaging | 3.0 | 0 | Citations (PDF) |
| 122 | Preparation of Artemisia argyi-Derived Extracellular Nanovesicles and Their Protective Effects Against Oxidative Stress-Induced Senescence in Endometrial Stromal Cells | 2.3 | 0 | Citations (PDF) |
| 123 | An Iron-Scavenging and Hydrogen-Releasing Microneedle Patch Suppresses Ferroptosis and Promotes Spinal Cord Repair | 11.6 | 5 | Citations (PDF) |
| 124 | Stimuli-responsive nanoplatforms for central nervous system disorders: integrating delivery, modulation, and imaging | 32.6 | 4 | Citations (PDF) |
| 125 | Microfluidic-based magnetic microspheres for targeted delivery of curcumin nanoparticles in gastroesophageal reflux disease therapy | 8.7 | 0 | Citations (PDF) |
| 126 | A synergistic piezo-photocatalytic strategy via BaTiO3 heterophase homojunctions for MRSA-infected diabetic wound therapy | 8.7 | 1 | Citations (PDF) |
| 127 | Tri-modal nanocatalytic microenvironment regulations for macrophage reprogramming and osteoporotic fracture healing promotion | 4.5 | 0 | Citations (PDF) |
| 128 | A Pancreatitis‐Inspired Trypsinogen Nanoplatform Reprograms Tumor‐Associated Macrophages via NF‐κB for Pancreatic Cancer Immunotherapy | 7.8 | 0 | Citations (PDF) |
| 129 | Effect of immersion time and D-glucose on the oxidation behavior of Pt–Ir alloys in artificial cerebrospinal fluid | 2.1 | 0 | Citations (PDF) |
| 130 | A Universal Bio-Hybrid Nanoparticle Backpack Platform Endows Stem Cells with Microenvironmental Resilience and Sustained Paracrine Signaling | 26.5 | 0 | Citations (PDF) |
| 131 | In situ macrophage reprogramming via micropatch engineering for safe and effective antitumor adoptive cell therapy | 6.6 | 0 | Citations (PDF) |
| 132 | A pH-responsive nanozyme-integrated fibrous biointerface for chemodynamic antibacterial therapy and infected wound healing | 4.4 | 0 | Citations (PDF) |
| 133 | An Oral Biomimetic
Hydrogel for Colon-Localized and
Tumor-Targeted Sonodynamic Therapy of Colorectal Cancer | 6.3 | 0 | Citations (PDF) |