Area of research
Immunology · Molecular Biology
Research interest
Research interests include Peroxisome Proliferator-Activated Receptors, Cancer, Lipids, and Metabolism, Immune cells in cancer, and Immune Response and Inflammation.
Targeting Circulating FABP4 Ameliorates Obesity-Associated Hepatic Steatosis
Integrated Metabolomics and Transcriptomics Reveals Metabolic Pathway Changes in Common Carp Muscle Under Oxidative Stress
Microbial Diversity Affects the Cold Tolerance of Red Swamp Crayfish (Procambarus clarkii) by Regulating Histamine Metabolism
An Olive Oil-Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer.
Murine Models of Obesity-Related Cancer Risk.
Supplementary Figure S7 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S1 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Table S2 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S4 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S3 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S2 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Data from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S6 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Table S1 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
Supplementary Figure S5 from An Olive Oil–Based High-Fat Diet Promotes Obesity-Driven Metastasis of Triple-Negative Breast Cancer
FABP4-mediated lipid accumulation and lipolysis in tumor-associated macrophages promote breast cancer metastasis
FABP4-mediated lipid accumulation and lipolysis in tumor-associated macrophages promote breast cancer metastasis.
Role of FABP5 in T Cell Lipid Metabolism and Function in the Tumor Microenvironment.
Multi-Omics Analysis to Understand the Effects of Dietary Proanthocyanidins on Antioxidant Capacity, Muscle Nutrients, Lipid Metabolism, and Intestinal Microbiota in Cyprinus carpio
Consumption of fish oil high-fat diet induces murine hair loss via epidermal fatty acid binding protein in skin macrophages
Consumption of fish oil high-fat diet induces murine hair loss via epidermal fatty acid binding protein in skin macrophages.
Epidermal Fatty Acid‒Binding Protein Mediates Depilatory-Induced Acute Skin Inflammation.
NLRP7 deubiquitination by USP10 promotes tumor progression and tumor-associated macrophage polarization in colorectal cancer
Nuclear Lamin A/C Expression Is a Key Determinant of Paclitaxel Sensitivity
Consumption of the Fish Oil High-Fat Diet Uncouples Obesity and Mammary Tumor Growth through Induction of Reactive Oxygen Species in Protumor Macrophages
SnapShot: FABP Functions.
Consumption of the Fish Oil High-Fat Diet Uncouples Obesity and Mammary Tumor Growth through Induction of Reactive Oxygen Species in Protumor Macrophages.
FABP4: A New Player in Obesity-Associated Breast Cancer.
A-FABP and oestrogens are independently involved in the development of breast cancer.
Effects of stocking density on the growth performance, digestive enzyme activities, antioxidant resistance, and intestinal microflora of blunt snout bream ( <i>Megalobrama amblycephala</i> ) juveniles
Dimension Reduction and Data Visualization for Regression Analysis of Metric-Space-Valued Data
Functional Copula Model for Nonlinear and Non-Gaussian Functional Data Analysis: Graphical Models, Dimension Reduction, and Variable Selection
Non-gaussian graphical models via additive conditional independence and nonlinear dimension reduction
Collaborative Research: Semiparametric conditional graphical models with applications to gene network analysis
Collaborative Research: A Paradigm for Dimension Reduction with Respect to a General Functional
Collaborative Research: Model-Based and Model-Free Dimension Reduction with Applications to Bioinformatics
Collaborative Research: Sufficient Dimension Reduction for High Dimensional Data with Applications in Bioinformatics
New Directions in Dimension Reduction
Estimating Equations and Second-Order Theories
Mathematical Sciences: Likelihood Functions for Estimating Equations