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Functions of Peroxisome Proliferator-Activated Receptor Gamma (PPARγ) in Gynecologic DisordersForkhead box A1 regulates prostate ductal morphogenesis and promotes epithelial cell maturationInhibition of autophagy aggravated 4-nitrophenol-induced oxidative stress and apoptosis in NHPrE1 human normal prostate epithelial progenitor cells.Disruption of PPARgamma signaling results in mouse prostatic intraepithelial neoplasia involving active autophagy.Selective silencing of viral gene expression in HPV-positive human cervical carcinoma cells treated with siRNA, a primer of RNA interference.Functional remodeling of benign human prostatic tissues in vivo by spontaneously immortalized progenitor and intermediate cellsPPARγ: a molecular link between systemic metabolic disease and benign prostate hyperplasia.TR4 nuclear receptor enhances prostate cancer initiation via altering the stem cell population and EMT signals in the PPARG-deleted prostate cells.Evaluation of public cancer datasets and signatures identifies TP53 mutant signatures with robust prognostic and predictive valueApproaches to understanding the importance and clinical implications of peroxisome proliferator-activated receptor gamma (PPARgamma) signaling in prostate cancer.PPARγ isoforms differentially regulate metabolic networks to mediate mouse prostatic epithelial differentiation.Temporally controlled ablation of PTEN in adult mouse prostate epithelium generates a model of invasive prostatic adenocarcinoma.Deficiency in metabolic regulators PPARγ and PTEN cooperates to drive keratinizing squamous metaplasia in novel models of human tissue regeneration.Peroxisome proliferator-activated receptor gamma signaling in human sperm physiologySPARCL1 suppresses metastasis in prostate cancer.Methodologies in assaying prostate cancer stem cells.Androgen receptor differentially regulates the proliferation of prostatic epithelial cells in vitro and in vivo.Cathepsin D acts as an essential mediator to promote malignancy of benign prostatic epithelium.Altered TGF-β signaling in a subpopulation of human stromal cells promotes prostatic carcinogenesis.Critical and distinct roles of p16 and telomerase in regulating the proliferative life span of normal human prostate epithelial progenitor cells.Tissue-specific consequences of cyclin D1 overexpression in prostate cancer progression.Cancer-specific functions of SIRT1 enable human epithelial cancer cell growth and survival.Differential regulation of LncRNA-SARCC suppresses VHL-mutant RCC cell proliferation yet promotes VHL-normal RCC cell proliferation via modulating androgen receptor/HIF-2α/C-MYC axis under hypoxia.Advances in prostate cancer research models: From transgenic mice to tumor xenografting models.Gel-Based Application of siRNA to Human Epithelial Cancer Cells Induces RNAi-Dependent Apoptosis
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description
researcher ORCID: 0000-0003-3361-9881
@en
name
Ming Jiang
@ast
Ming Jiang
@en
Ming Jiang
@es
Ming Jiang
@nl
Ming Jiang
@sl
type
label
Ming Jiang
@ast
Ming Jiang
@en
Ming Jiang
@es
Ming Jiang
@nl
Ming Jiang
@sl
prefLabel
Ming Jiang
@ast
Ming Jiang
@en
Ming Jiang
@es
Ming Jiang
@nl
Ming Jiang
@sl
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56942779700
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0000-0003-3361-9881