[HTML][HTML] Skeletal muscle differentiation of human iPSCs meets bioengineering strategies: perspectives and challenges

F Iberite, E Gruppioni, L Ricotti - NPJ Regenerative Medicine, 2022 - nature.com
Although skeletal muscle repairs itself following small injuries, genetic diseases or severe
damages may hamper its ability to do so. Induced pluripotent stem cells (iPSCs) can …

[HTML][HTML] Nano-biomaterials and advanced fabrication techniques for engineering skeletal muscle tissue constructs in regenerative medicine

S Han, SH Cruz, S Park, SR Shin - Nano Convergence, 2023 - Springer
Abstract Engineered three-dimensional (3D) tissue constructs have emerged as a promising
solution for regenerating damaged muscle tissue resulting from traumatic or surgical events …

Enhancing cell proliferation in three-dimensional hydrogel scaffolds using digital light processing bioprinting technology

Y Choi, JW Seo, G Jang, WK Jung… - International Journal of …, 2024 - accscience.com
Abstract Three-dimensional (3D) bioprinting is gradually emerging as a popular technique
driving as a new paradigm in tissue engineering. Enhancing cell proliferation and …

Keeping your strength up: induced pluripotent stem cell-based approaches for the treatment and investigation of skeletal muscle disorders

HJ Kim, DW Jung, DR Williams - All Life, 2023 - Taylor & Francis
Skeletal muscle comprises the major organ system in our bodies and is the effector tissue for
fundamental processes, such as movement, breathing and glucose homeostasis. However …

[PDF][PDF] Commentary: benefits and challenges of cellularized scaffolds for treatment of volumetric muscle loss

I Sinha, A Tamayol - 2024 - elsp-homepage.oss-cn-hongkong …
Bulk local tissue loss may be amenable to scaffold based therapies. Discrete areas can
usually be filled in with composite scaffolds, which can then conform and integrate to host …