hiPSC-derived 3D Bioprinted Skeletal Muscle Tissue Implants Regenerate Skeletal Muscle Following Volumetric Muscle Loss
Yasamin A. Jodat(Brigham and Women's Hospital), Su Ryon Shin(Brigham and Women's Hospital), Shabir Hassan(Khalifa University of Science and Technology), Indranil Sinha(Brigham and Women's Hospital), Ziad Al Tanoury(Brigham and Women's Hospital), Kiavash Kiaee(Harvard University), Sofia Lara Ochoa(Tecnológico de Monterrey), Tom Kamperman(ORCID), Angel Flores Huidobro Martinez(Brigham and Women's Hospital), Jacob Quint(University of Nebraska–Lincoln), Xichi Wang(Brigham and Women's Hospital), Adnan Arnaout(City College of New York), Michelle A. Calabrese(University of Minnesota System), Adriana C. Panayi(Humboldt-Universität zu Berlin), Alessandro Carlucci(Brigham and Women's Hospital), Olivier Pourquié(Brigham and Women's Hospital), Ali Tamayol(Brigham and Women's Hospital), KangJu Lee(Pohang University of Science and Technology), Junmin Lee(Pohang University of Science and Technology), Yike Huang(Zhejiang Chinese Medical University), Kun Shi(Brigham and Women's Hospital), Ting Zhang(Tsinghua University), Yori Endo(University of Nebraska–Lincoln)
Cited by 4
Related Papers
Alzheimer’s Disease: Treatment Strategies and Their Limitations
|International Journal of Molecular Sciences|2022|525
Differentiation of pluripotent stem cells to muscle fiber to model Duchenne muscular dystrophy
|Nature Biotechnology|2015|435
Impact of frailty on outcomes in surgical patients: A systematic review and meta-analysis
|The American Journal of Surgery|2018|415
A Whole‐Course‐Repair System Based on Neurogenesis‐Angiogenesis Crosstalk and Macrophage Reprogramming Promotes Diabetic Wound Healing
|Advanced Materials|2023|355
Generation of human muscle fibers and satellite-like cells from human pluripotent stem cells in vitro
|Nature Protocols|2016|305