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Biocompatibility and degradation of tendon-derived scaffolds

机译:肌腱支架的生物相容性和降解

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Decellularized extracellular matrix has often been used as a biomaterial for tissue engineering applications. Its function, once implanted can be crucial to determining whether a tissue engineered construct will be successful, both in terms of how the material breaks down, and how the body reacts to the material's presence in the first place. Collagen is one of the primary components of extracellular matrix and has been used for a number of biomedical applications. Scaffolds comprised of highly aligned collagen fibrils can be fabricated directly from decellularized tendon using a slicing, stacking, and rolling technique, to create two- and three-dimensional constructs. Here, the degradation characteristics of the material are evaluated in vitro, showing that chemical crosslinking can reduce degradation while maintaining fiber structure. In vivo, non-crosslinked and crosslinked samples are implanted, and their biological response and degradation evaluated through histological sectioning, trichrome staining, and immunohistochemical staining for macrophages. Non-crosslinked samples are rapidly degraded and lose fiber morphology while crosslinked samples retain both macroscopic structure as well as fiber orientation. The cellular response of both materials is also investigated. The in vivo response demonstrates that the decellularized tendon material is biocompatible, biodegradable and can be crosslinked to maintain surface features for extended periods of time in vivo. This study provides material characteristics for the use of decellularized tendon as biomaterial for tissue engineering.
机译:脱细胞的细胞外基质经常被用作组织工程应用的生物材料。一旦被植入,其功能对于确定组织工程构造是否成功至关重要,无论是在材料如何分解方面,还是从一开始身体就如何对材料的存在做出反应。胶原蛋白是细胞外基质的主要成分之一,已被用于许多生物医学应用。可以使用切片,堆叠和滚动技术从脱细胞的肌腱直接制造由高度对齐的胶原纤维组成的支架,以创建二维和三维结构。在此,在体外评估了该材料的降解特性,表明化学交联可以减少降解,同时保持纤维结构。在体内,植入非交联和交联的样品,并通过组织切片,三色染色和巨噬细胞免疫组织化学染色评估其生物学反应和降解。非交联的样品会迅速降解并失去纤维形态,而交联的样品则保留了宏观结构和纤维取向。还研究了两种材料的细胞反应。体内反应表明,脱细胞的肌腱材料是生物相容的,可生物降解的,并且可以在体内长时间交联以维持表面特征。这项研究为使用脱细胞肌腱作为组织工程的生物材料提供了材料特性。

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