YAO FU

YAO FU

Wayne State University

H-index: 9

North America-United States

About YAO FU

YAO FU, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at Wayne State University,

His recent articles reflect a diverse array of research interests and contributions to the field:

Tumor suppressive activity of AHR in environmental arsenic-induced carcinogenesis

Disruption of the tumor suppressor-like activity of aryl hydrocarbon receptor by arsenic in epithelial cells and human lung cancer

Depletion of Mdig Changes Proteomic Profiling in Triple Negative Breast Cancer Cells

Arsenic activates the ER stress-associated unfolded protein response via the activating transcription factor 6 in human bronchial epithelial cells

Arsenic activates STAT3 signaling during the transformation of the human bronchial epithelial cells

Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells

Deletion of mdig enhances H3K36me3 and metastatic potential of the triple negative breast cancer cells

Epigenetics and environment in breast cancer: New paradigms for anti-cancer therapies

YAO FU Information

University

Position

___

Citations(all)

246

Citations(since 2020)

227

Cited By

58

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Top articles of YAO FU

Tumor suppressive activity of AHR in environmental arsenic-induced carcinogenesis

2023/11/5

Disruption of the tumor suppressor-like activity of aryl hydrocarbon receptor by arsenic in epithelial cells and human lung cancer

International Journal of Biological Sciences

2023

Depletion of Mdig Changes Proteomic Profiling in Triple Negative Breast Cancer Cells

Biomedicines

2022/8/19

Arsenic activates the ER stress-associated unfolded protein response via the activating transcription factor 6 in human bronchial epithelial cells

Biomedicines

2022/4/22

Arsenic activates STAT3 signaling during the transformation of the human bronchial epithelial cells

Toxicology and applied pharmacology

2022/2/1

Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells

International Journal of Biological Sciences

2022

Deletion of mdig enhances H3K36me3 and metastatic potential of the triple negative breast cancer cells

Iscience

2022/10/21

Epigenetics and environment in breast cancer: New paradigms for anti-cancer therapies

2022/9/15

Profiling of histone H3 trimethylation and distinct epigenetic pattern of chromosome Y in the transformed bronchial epithelial cells induced by consecutive arsenic treatment

Genes & Diseases

2022/9

New discoveries and ambiguities of nrf2 and atf3 signaling in environmental arsenic-induced carcinogenesis

2021/12/29

Cooperation between NRF2-mediated transcription and MDIG-dependent epigenetic modifications in arsenic-induced carcinogenesis and cancer stem cells

2021/11/1

Environmentally-induced mdig is a major contributor to the severity of COVID-19 through fostering expression of SARS-CoV-2 receptor NRPs and glycan metabolism

bioRxiv

2021/2/1

Environmentally-induced mdig contributes to the severity of COVID-19 through fostering expression of SARS-CoV-2 receptor NRPs and glycan metabolism

Theranostics

2021

Pathological and prognostic indications of the mdig gene in human lung cancer

Cellular physiology and biochemistry: international journal of experimental cellular physiology, biochemistry, and pharmacology

2021/1/1

Proteomic Analysis of CRISPR Cas 9 Mediated Mdig Deletion in Triple Negative Breast Cancer Cells

2020/10/6

CRISPR-Cas9 gene editing causes alternative splicing of the targeting mRNA

Biochemical and biophysical research communications

2020/7/12

Nrf2 and HIF1α converge to arsenic-induced metabolic reprogramming and the formation of the cancer stem-like cells

Theranostics

2020

Characterization of arsenic-induced cancer stem-like cells

Stem Cell Transcriptional Networks: Methods and Protocols

2020

Mdig promotes oncogenic gene expression through antagonizing repressive histone methylation markers

Theranostics

2020

See List of Professors in YAO FU University(Wayne State University)