Tissue Engineering Lab, Department of Development and Regeneration, KU Leuven, E. Sabbelaan 53, 8500, Kortrijk, Belgium.
Tissue Engineering Lab, Department of Development and Regeneration, KU Leuven, E. Sabbelaan 53, 8500, Kortrijk, Belgium.
Biomaterials. 2022 Apr;283:121436. doi: 10.1016/j.biomaterials.2022.121436. Epub 2022 Feb 23.
A wide range of synthetic and natural biomaterials is available for skeletal muscle tissue engineering. One class of natural biomaterials consists of the extracellular matrix (ECM) from donor skeletal muscle. To obtain this ECM, the cellular compartment must be completely removed while retaining the native composition and ultrastructure of the tissue as much as possible. In this review, the progress and challenges in the field of skeletal muscle decellularization are discussed by reviewing the different decellularization methods available and by highlighting the different applications of the scaffolds. Decellularized skeletal muscle has mainly been studied in the context of regeneration with a focus on its tissue-specific morphological features as well as biochemical cues to stimulate muscle regeneration. However, in this review, the potential applications of decellularized skeletal muscle are expanded beyond the regenerative setting to demonstrate its versatility as a biomaterial. Acellular matrices are discussed as a platform to study cell-matrix interactions and drug screening. Decellularized skeletal muscle ECM can also be further processed to re-engineer its structure. An overview is presented of materials processed from decellularized skeletal muscle, ranging from injectable hydrogels, bioinks for 3D bioprinting, electrospun nanofibers to coatings for cell culture.
有广泛的合成和天然生物材料可用于骨骼肌组织工程。一类天然生物材料由供体骨骼肌的细胞外基质(ECM)组成。为了获得这种 ECM,必须完全去除细胞成分,同时尽可能保留组织的天然组成和超微结构。在这篇综述中,通过回顾现有的不同脱细胞方法,并强调支架的不同应用,讨论了骨骼肌脱细胞领域的进展和挑战。脱细胞骨骼肌主要在再生背景下进行研究,重点是其组织特异性形态特征以及刺激肌肉再生的生化线索。然而,在这篇综述中,脱细胞骨骼肌的潜在应用被扩展到再生环境之外,以展示其作为生物材料的多功能性。无细胞基质被讨论为研究细胞-基质相互作用和药物筛选的平台。脱细胞骨骼肌 ECM 也可以进一步加工以重新构建其结构。本文概述了从脱细胞骨骼肌加工而来的材料,范围从可注射水凝胶、用于 3D 生物打印的生物墨水、静电纺纳米纤维到细胞培养涂层。