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Oxidative Medicine and Cellular Longevity|April 24, 2020
<i>β</i>-Phenethyl Isothiocyanate Induces Cell Death in Human Osteosarcoma through Altering Iron Metabolism, Disturbing the Redox Balance, and Activating the MAPK Signaling PathwayHuanhuan Lv, Chenxiao Zhen, Junyu Liu, et al.Journal of Advanced Research|May 1, 2025
Electromagnetic fields regulate iron metabolism: From mechanisms to applicationsShenghang Wang, Jiancheng Yang, Chenxiao Zhen, et al.International Journal of Molecular Sciences|December 17, 2024
A 0.2 T-0.4 T Static Magnetic Field Improves the Bone Quality of Mice Subjected to Hindlimb Unloading and Reloading Through the Dual Regulation of BMSCs via Iron MetabolismJianping Wang, Chenxiao Zhen, Gejing Zhang, et al.Oxidative Medicine and Cellular Longevity|July 9, 2019
Unraveling the Potential Role of Glutathione in Multiple Forms of Cell Death in Cancer TherapyHuanhuan Lv, Chenxiao Zhen, Junyu Liu, et al.Metallomics : Integrated Biometal Science|April 20, 2022
Iron plays a role in sulfasalazine-induced ferroptosis with autophagic flux blockage in K7M2 osteosarcoma cellsJunyu Liu, Chenge Lou, Chenxiao Zhen, et al.Progress in Biophysics and Molecular Biology|March 6, 2024
Electromagnetic fields regulate iron metabolism in living organisms: A review of effects and mechanismChenxiao Zhen, Gejing Zhang, Shenghang Wang, et al.Biochimica Et Biophysica Acta. Molecular Basis of Disease|May 4, 2023
Phenethyl isothiocyanate induces oxidative cell death in osteosarcoma cells with regulation on mitochondrial network, function and metabolismChenxiao Zhen, Jindou Li, Junyu Liu, et al.Cell Proliferation|February 8, 2021
Magnetic fields as a potential therapy for diabetic wounds based on animal experiments and clinical trialsHuanhuan Lv, Junyu Liu, Chenxiao Zhen, et al.Journal of Orthopaedic Translation|November 16, 2022
1-2 T static magnetic field combined with Ferumoxytol prevent unloading-induced bone loss by regulating iron metabolism in osteoclastogenesisGejing Zhang, Chenxiao Zhen, Jiancheng Yang, et al.BMC Musculoskeletal Disorders|March 19, 2025
Hepcidin knockout exacerbates hindlimb unloading-induced bone loss in mice through inhibiting osteoblastic differentiationXin Chen, Jianping Wang, Chenxiao Zhen, et al.Pageof 2