<i>In Situ</i> Printing of Adhesive Hydrogel Scaffolds for the Treatment of Skeletal Muscle Injuries
Carina S. Russell(University of Nebraska–Lincoln), Ali Tamayol(Brigham and Women's Hospital), Jocelyn G. Daubendiek(University of Nebraska–Lincoln), Indranil Sinha(Brigham and Women's Hospital), Sahar Salehi(University of Bayreuth), Jacob Quint(University of Nebraska–Lincoln), Zack Bonick(University of Nebraska–Lincoln), Adriana C. Panayi(Humboldt-Universität zu Berlin), Olivier Pourquié(Brigham and Women's Hospital), Mairon Trujillo‐Miranda(Bavarian Polymer Institute), Tyrell J. Williams(University of Nebraska–Lincoln), Víctor Hugo Sánchez-Rodríguez(University of Nebraska–Lincoln), Kodi Baldino(Brigham and Women's Hospital), Azadeh Mostafavi(University of Nebraska–Lincoln), Su Ryon Shin(Brigham and Women's Hospital)
Cited by 129
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
Generation of human muscle fibers and satellite-like cells from human pluripotent stem cells in vitro
|Nature Protocols|2016|305
Neutrophil Depletion Inhibits Experimental Abdominal Aortic Aneurysm Formation
|Circulation|2005|274