Thermosensitive hydrogel harboring CD146/IGF-1 nanoparticles for skeletal-muscle regeneration

Cited 12 time in scopus
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Title
Thermosensitive hydrogel harboring CD146/IGF-1 nanoparticles for skeletal-muscle regeneration
Author(s)
Wonhwa Lee; J Y Lee; H S Lee; Youngbum Yoo; Hyosoo Shin; H Kim; D S Min; J S Bae; Young Kyo Seo
Bibliographic Citation
ACS Applied Bio Materials, vol. 4, no. 9, pp. 7070-7080
Publication Year
2021
Abstract
In skeletal-muscle regeneration, it is critical to promote efferocytosis of immune cells and differentiation of satellite cells/postnatal muscle stem cells at the damaged sites. With the optimized poloxamer 407 composition gelled at body temperature, the drugs can be delivered locally. The purpose of this study is to develop a topical injection therapeutic agent for muscle regeneration, sarcopenia, and cachexia. Herein, we construct an injectable, in situ hydrogel system consisting of CD146, IGF-1, collagen I/III, and poloxamer 407, termed CIC gel. The secreted CD146 then binds to VEGFR2 on the muscle surface and effectively induces efferocytosis of neutrophils and macrophages. IGF-1 promotes satellite cell differentiation, and biocompatible collagen evades immune responses of the CIC gel. Consequently, these combined molecules activate muscle regeneration via autophagy and suppress muscle inflammation and apoptosis. Conclusively, we provide an applicable concept of the myogenesis-activating protein formulation, broadening the thermoreversible hydrogel to protein therapeutics for damaged muscle recovery.
Keyword
Thermosensitive vehiclesCD146/IGF-1/collagen-packed hydrogelPoloxamer 407Muscular inflammationSkeletal-muscle regeneration
ISSN
2576-6422
Publisher
Amer Chem Soc
Full Text Link
http://dx.doi.org/10.1021/acsabm.1c00688
Type
Article
Appears in Collections:
Aging Convergence Research Center > 1. Journal Articles
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