Choi Soojeong, Lee Mi Jeong, Kim Moohyun, Bae Yunsu, Park Jang-Ung, Cho Seung-Woo
Department of Biotechnology, Yonsei University, Seoul, 03722, Republic of Korea.
CellArtgen Inc., Seoul, 03722, Republic of Korea.
Adv Healthc Mater. 2024 Dec;13(32):e2401826. doi: 10.1002/adhm.202401826. Epub 2024 Oct 17.
Muscle atrophy detrimentally impacts health and exacerbates physical disability, leading to increased mortality. In particular, sarcopenia, aging-related degenerative muscle loss, necessitates urgent remedies. Current approaches for treating muscle atrophy include exercise and nutrition, while drug exploration remains in its early stages. Cell therapy, focusing on satellite cells, faces significant challenge due to poor engraftment, safety issue, and high cost. Cell-free approach using extracellular matrix (ECM) shows a regenerative potential, but a lack of mechanical and adhesive properties hinders prolonged efficacy of ECM therapy. Here, durable muscle ECM (MEM) hydrogels for muscle atrophy by fortifying MEM with adhesive phenolic moieties including catechol and pyrogallol are demonstrated. The resultant phenolic MEM hydrogels exhibit enhanced mechanical and adhesive properties and provide sustained muscle-like microenvironments to address muscle atrophy. No local and systemic toxicities are observed after phenolic MEM injection into tibialis anterior muscle. Notably, these engineered MEM hydrogels, devoid of cells or drugs, induce tissue rejuvenation by promoting muscle protein synthesis and facilitating functional muscle recovery in mouse models of disuse- and age-induced atrophy. This study introduces cell-free, ECM-based therapeutics with translational potential for muscle atrophy by reversing muscle loss and restoring function.
肌肉萎缩对健康产生不利影响,并加剧身体残疾,导致死亡率增加。特别是,肌肉减少症,即与衰老相关的退行性肌肉损失,急需补救措施。目前治疗肌肉萎缩的方法包括运动和营养,而药物研发仍处于早期阶段。专注于卫星细胞的细胞疗法由于植入性差、安全问题和成本高昂而面临重大挑战。使用细胞外基质(ECM)的无细胞方法显示出再生潜力,但缺乏机械和粘附特性阻碍了ECM疗法的长期疗效。在此,通过用包括儿茶酚和连苯三酚在内的粘性酚类部分强化MEM,展示了用于治疗肌肉萎缩的耐用肌肉ECM(MEM)水凝胶。所得的酚类MEM水凝胶表现出增强的机械和粘附特性,并提供持续的肌肉样微环境以解决肌肉萎缩问题。将酚类MEM注射到胫前肌后未观察到局部和全身毒性。值得注意的是,这些不含细胞或药物的工程化MEM水凝胶通过促进肌肉蛋白质合成和促进废用性和年龄诱导性萎缩小鼠模型中的功能性肌肉恢复来诱导组织年轻化。本研究通过逆转肌肉损失和恢复功能,引入了具有肌肉萎缩转化潜力的无细胞、基于ECM的疗法。