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由骨骼肌全器官尺度去细胞支架提供的促肌生成环境。

The pro-myogenic environment provided by whole organ scale acellular scaffolds from skeletal muscle.

机构信息

Sapienza University of Rome, Department of Anatomical, Histological, Forensic & Orthopaedic Sciences, Histology & Medical Embryology Section, 00161 Rome, Italy.

出版信息

Biomaterials. 2011 Nov;32(31):7870-82. doi: 10.1016/j.biomaterials.2011.07.016. Epub 2011 Jul 30.

Abstract

In the pursuit of a transplantable construct for the replacement of large skeletal muscle defects arising from traumatic or pathological conditions, several attempts have been made to obtain a highly oriented, vascularized and functional skeletal muscle. Acellular scaffolds derived from organ decellularization are promising, widely used biomaterials for tissue engineering. However, the acellular skeletal muscle extra cellular matrix (ECM) has been poorly characterized in terms of production, storage and host-donor interactions. We have produced acellular scaffolds at the whole organ scale from various skeletal muscles explanted from mice. The acellular scaffolds conserve chemical and architectural features of the tissue of origin, including the vascular bed. Scaffolds can be sterilely stored for weeks at +4°C or +37°C in tissue culture grade conditions. When transplanted in wt mice, the grafts are stable for several weeks, whilst being colonized by inflammatory and stem cells. We demonstrate that the acellular scaffold per se represents a pro-myogenic environment supporting de novo formation of muscle fibers, likely derived from host cells with myogenic potential. Myogenesis within the implant is enhanced by immunosuppressive treatment. Our work highlights the fundamental role of this niche in tissue engineering application and unveils the clinical potential of allografts based on decellularized tissue for regenerative medicine.

摘要

在寻求可移植的构建体以替代创伤或病理条件引起的大骨骼肌缺陷的过程中,人们已经尝试了几种方法来获得高度定向、血管化和功能正常的骨骼肌。脱细胞支架来源于器官脱细胞化,是组织工程中很有前途的广泛应用的生物材料。然而,在生产、储存和宿主-供体相互作用方面,脱细胞骨骼肌细胞外基质(ECM)的特征描述很差。我们已经从从小鼠中取出的各种骨骼肌中制备出了全器官规模的脱细胞支架。脱细胞支架保留了组织的化学和结构特征,包括血管床。在组织培养级条件下,支架可以在+4°C 或+37°C 下无菌储存数周。当移植到 wt 小鼠中时,移植物可以稳定数周,同时被炎症细胞和干细胞定植。我们证明,脱细胞支架本身就代表了一个促肌生成的环境,支持新的肌肉纤维形成,可能来源于具有成肌潜能的宿主细胞。免疫抑制治疗增强了植入物内的肌生成。我们的工作强调了这个小生境在组织工程应用中的基本作用,并揭示了基于脱细胞组织的同种异体移植物在再生医学中的临床潜力。

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