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Chenfang Dong
chenfangdong@zju.edu.cn
Chinese, English
Zhejiang
Zhejiang University
Medical
  • 2018: Zhejiang University Second Affiliated Hospital Research Breakthrough Award
  • 2013: US-China Anti-Cancer Association (USCACA-NFCR) Scholar Award
  • 2009: Chinese Preventive Medicine Association Science and Technology Progress Award Second Prize
  • 2008: Chinese Center for Disease Control and Prevention Fourth Academic Conference Science and Technology Paper Second Prize
  • 2007: Chinese Center for Disease Control and Prevention National Key Laboratory of Infectious Disease Prevention and Control First Youth Academic Conference Science and Technology Paper Second Prize
  • 2007: Chinese Center for Disease Control and Prevention Science and Technology Paper Award
Oncology
Breast Cancer
Tumor Metabolism
Tumor EMT and Tumor Stem Cells
Epigenetic Modifications, Protein Lactylation Modifications
  • Gluconeogenesis in Cancer: Function and Regulation of PEPCK, FBPase, and G6Pase, Wang Z and Dong C*, 2019
  • Inhibition of UGT8 Suppresses Basal-like Breast Cancer Progression by Attenuating Sulfatide-αVβ5 Axis, Cao Q, Chen X, Wu, X, Liao R, Huang P, Tan Y, Wang L, Ren G, Huang J and Dong C*, 2018
  • Combination of novel oncolytic herpesvirus with paclitaxel as an efficient strategy for breast cancer therapy, Deng X, Shen Y, Yi M, Zhang, C, Zhao B, Zhong G, Lou W, Xue D, Leng Q, Ding J, Zhao R, Jia W, Dong C* and Dai Z*, 2023
  • Elevated transcription and glycosylation of B3GNT5 promotes breast cancer aggressiveness, Miao Z, Cao Q, Liao R, Chen X, Li X, Bai L, Ma C, Deng X, Dai Z*, Li J* and Dong C*, 2022
  • Nuclear translocation of PLSCR1 activates STAT1 signaling in basal-like breast cancer, Huang P, Liao R, Chen X, Wu X, Li X, Wang Y, Cao Q, Dong C*, 2020
  • AKR1B1 promotes basal-like breast cancer progression by a positive feedback loop that activates the EMT program, Wu X, Li X, Fu Q, Cao Q, Chen X, Wang M, Yu J, Long J, Yao J, Liu H, Wang D, Liao R and Dong C*, 2017
  • Loss of ABAT-mediated GABAergic system promotes basal-like breast cancer progression by activating Ca2+-NFAT1 axis, Chen X, Cao Q, Liao R, Wu, X, Xun S, Huang J, and Dong C*, 2019
  • IMPA2 promotes basal-like breast cancer aggressiveness by a MYC-mediated positive feedback loop, Lei X, Liao R, Chen X, Wang Z, Cao Q, Bai L, Ma C, Deng X, Ma Y, Wu X, Li J*, Dai Z* and Dong C*, 2024
  • AMD1 promotes breast cancer aggressiveness via a spermidine-eIF5A hypusination-TCF4 axis, Liao R, Chen X, Cao Q, Bai L, Ma C, Dai Z* and Dong C*, 2024
  • Twist-mediated PAR1 induction is required for breast cancer progression and metastasis by inhibiting Hippo pathway, Wang Y, Liao R, Chen X, Chen G, Ying X, Chen G, Li M and Dong C*, 2020
  • Loss of FBP1 by Snail-mediated Repression Provides Metabolic Growth Advantages in Basal-like Breast Cancer, Dong C, Yuan T, Wu Y, Wang Y, Fan T, Miriyala S, Lin Y, Yao J, Shi J, Kang T, Lorkiewicz P, Clair DS, Hung MC, Evers BM, and Zhou BP, 2013
  • G9a interacts with Snail and is critical for Snail‐mediated E‐cadherin repression in human breast cancer, Dong C, Wu Y, Yao J, Wang Y, Yu Y, Rychahou PG, Evers BM, and Zhou BP, 2012
  • Interaction with Suv39H1 is Critical for Snail‐mediated E‐cadherin Repression in Breast Cancer, Dong C, Wu Y, Wang Y, Wang C, Kang TB, Rychahou PG, Chi Y‐I, Evers BM, and Zhou BP, 2013
Oncology Breast Cancer Tumor Metabolism Tumor Emt Tumor Stem Cells Epigenetic Modifications Protein Lactylation Cancer Research Metabolic Reprogramming Emt Induction

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