Area of research
Cancer Research · Molecular Biology
Research interest
Research interests include MicroRNA in disease regulation, Cancer-related molecular mechanisms research, Cannabis and Cannabinoid Research, and Genomics and Chromatin Dynamics.
Intestinal organoids as advanced modeling platform for food research: a review
Intervention Effects And Mechanisms of Two Saponins from Liquorice On Cytotoxicity Induced by Lysozyme Secondary Structure Modified
Additional file 5 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Additional file 1 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Additional file 6 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Additional file 2 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Additional file 3 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Additional file 4 of Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits
Antrodia cinnamomea exerts an anti-hepatoma effect by targeting PI3K/AKT-mediated cell cycle progression in vitro and in vivo
SM22<i>α</i> Loss Contributes to Apoptosis of Vascular Smooth Muscle Cells via Macrophage‐Derived circRasGEF1B
ETS like-1 protein ELK1-induced lncRNA LINC01638 accelerates the progression of papillary thyroid cancer by regulating Axin2 through Wnt/β-catenin signaling pathway
Antrodia cinnamomea ameliorates neointimal formation by inhibiting inflammatory cell infiltration through downregulation of adhesion molecule expression in vitro and in vivo
Lysozyme Improves the Inhibitory Effects of Panax notoginseng Saponins on Phenotype Transformation of Vascular Smooth Muscle Cells by Binding to Ginsenoside Re
Author Correction: The roles of p38 MAPK → COX2 and NF-κB → COX2 signal pathways in age-related testosterone reduction
The Nuclear Matrix Protein SAFB Cooperates with Major Satellite RNAs to Stabilize Heterochromatin Architecture Partially through Phase Separation
Disruption of nuclear speckles reduces chromatin interactions in active compartments
The roles of p38 MAPK → COX2 and NF-κB → COX2 signal pathways in age-related testosterone reduction
Reversal of ciprofloxacin-induced testosterone reduction by probiotic microbes in mouse testes
Chronic stress reduces spermatogenic cell proliferation in rat testis.
PubMed 2019cited by 11position: middle
The Long Noncoding RNA Lncenc1 Maintains Naive States of Mouse ESCs by Promoting the Glycolysis Pathway
CKII-SIRT1-SM22α loop evokes a self-limited inflammatory response in vascular smooth muscle cells
Accumulation of Smooth Muscle 22α Protein Accelerates Senescence of Vascular Smooth Muscle Cells via Stabilization of p53 In Vitro and In Vivo
SM22α inhibits lamellipodium formation and migration via Ras-Arp2/3 signaling in synthetic VSMCs
Insulin-independent GLUT4 translocation in proliferative vascular smooth muscle cells involves SM22α
MacroH2A1 associates with nuclear lamina and maintains chromatin architecture in mouse liver cells
SM22α inhibits vascular inflammation via stabilization of IκBα in vascular smooth muscle cells
Determination of Nitidine Chloride in Toothpaste by Dual Gradient Two-Dimensional High-Performance Liquid Chromatography
Phosphorylation of Smooth Muscle 22α Facilitates Angiotensin II–Induced ROS Production Via Activation of the PKCδ-P47<sup>phox</sup>Axis Through Release of PKCδ and Actin Dynamics and Is Associated With Hypertrophy and Hyperplasia of Vascular Smooth Muscle Cells In Vitro and In Vivo
Roles of SM22α in Cellular Plasticity and Vascular Diseases
SM22α Phosphorylation: A Novel Mechanism of Activation of PKCδ‐P47 <sup>phox</sup> Axis and ROS Production in VSMCs