Area of research
Molecular Biology · Physiology
Research interest
Research interests include Protein Hydrolysis and Bioactive Peptides, Biochemical effects in animals, Ginseng Biological Effects and Applications, and Adipose Tissue and Metabolism.
A functional cascading of lignin modification via repression of caffeic acid O-methyltransferase for bioproduction and anti-oxidation in rice
Exogenous Nucleotides Supplementation Attenuates Age-Related Sarcopenia.
Association Between the Dietary Inflammatory Index and Life's Essential 8 in Older Adults Based on Gut Microbiota Profiles.
Ginseng Oligopeptides Promote Longevity and Enhance Stress Resistance in <i>Caenorhabditis elegans</i> via the DAF-16/FOXO Pathway.
Exogenous Nucleotides Ameliorate Insulin Resistance Induced by Palmitic Acid in HepG2 Cells through the IRS-1/AKT/FOXO1 Pathways.
5'-Cytimidine Monophosphate Ameliorates H<sub>2</sub>O<sub>2</sub>-Induced Muscular Atrophy in C2C12 Myotubes by Activating IRS-1/Akt/S6K Pathway.
The Validity and Feasibility of Utilizing the Photo-Assisted Dietary Intake Assessment among College Students and Elderly Individuals in China.
Association of Methyl Donor Nutrients' Dietary Intake and Cognitive Impairment in the Elderly Based on the Intestinal Microbiome.
Development and validation of a computed tomography-based radiomics signature to predict “highest-risk” from patients with high-risk gastrointestinal stromal tumor
Targeting Aging and Longevity with Exogenous Nucleotides (TALENTs): Rationale, Design, and Baseline Characteristics from a Randomized Controlled Trial in Older Adults.
Exogenous Nucleotides Improve the Skin Aging of SAMP8 Mice by Modulating Autophagy through MAPKs and AMPK Pathways.
Beneficial Effects of Small-Molecule Oligopeptides Isolated from Panax Ginseng C. A. Meyer on Cellular Fates in Oxidative Stress-Induced Damaged Human Umbilical Vein Endothelial Cells and PC-12.
Exogenous Nucleotides Mitigate Cardiac Aging in SAMP8 Mice by Modulating Energy Metabolism Through AMPK Pathway.
The Potential of Bioactive Fish Collagen Oligopeptides against Hydrogen Peroxide-Induced NIH/3T3 and HUVEC Damage: The Involvement of the Mitochondria.
Low Strength Wastewater Treatment Using a Combined Biological Aerated Filter/Anammox Process
Fructose Stimulated Colonic Arginine and Proline Metabolism Dysbiosis, Altered Microbiota and Aggravated Intestinal Barrier Dysfunction in DSS-Induced Colitis Rats.
Exogenous Nucleotides Ameliorate Age-Related Decline in Testosterone in Male Senescence-Accelerated Mouse Prone-8 (SAMP8) Mice by Modulating the Local Renin-Angiotensin System Antioxidant Pathway.
Neuroprotective Actions of Different Exogenous Nucleotides in H<sub>2</sub>O<sub>2</sub>-Induced Cell Death in PC-12 Cells.
Walnut (<i>Juglans regia</i> L.) Oligopeptides Alleviate Alcohol-Induced Acute Liver Injury through the Inhibition of Inflammation and Oxidative Stress in Rats.
The Effects of Peanut Oligopeptides on Exercise-Induced Fatigue in Mice and Its Underlying Mechanism.
The Protective Effect of Walnut Oligopeptides against Indomethacin-Induced Gastric Ulcer in Rats.
Exogenous Nucleotides Ameliorate Ageing-Related Intestinal Inflammation in Senescence-Accelerated Mouse Prone-8 (SAMP8) Mice.
Adipose Tissue Aging and Metabolic Disorder, and the Impact of Nutritional Interventions.
Bioactive Oligopeptides from Ginseng (<i>Panax ginseng</i> Meyer) Suppress Oxidative Stress-Induced Senescence in Fibroblasts via NAD<sup>+</sup>/SIRT1/PGC-1α Signaling Pathway.
Exogenous Nucleotides Improved the Oxidative Stress and Sirt-1 Protein Level of Brown Adipose Tissue on Senescence-Accelerated Mouse Prone-8 (SAMP8) Mice.
Beneficial Effects of Walnut Oligopeptides on Muscle Loss in Senescence-Accelerated Mouse Prone-8 (SAMP8) Mice: Focusing on Mitochondrial Function.
Walnut Oligopeptide Delayed Improved Aging-Related Learning and Memory Impairment in SAMP8 Mice.
Correction: Fan et al. Native Collagen II Relieves Bone Impairment through Improving Inflammation and Oxidative Stress in Ageing db/db Mice. <i>Molecules</i><b>2021</b>, <i>26</i>, 4942.
Sarcopenia prevalence and associated factors among older Chinese population: Findings from the China Health and Retirement Longitudinal Study
Sarcopenia prevalence and associated factors among older Chinese population: Findings from the China Health and Retirement Longitudinal Study.