Department of Plastic Surgery, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Biomaterials. 2013 Apr;34(11):2641-54. doi: 10.1016/j.biomaterials.2012.12.048. Epub 2013 Jan 21.
Ideal scaffolds that represent native extracellular matrix (ECM) properties of musculofascial tissues have great importance in musculofascial tissue engineering. However, detailed characterization of musculofascial tissues' ECM (particularly, of fascia) from large animals is still lacking. In this study, we developed a decellularization protocol for processing pig composite musculofascial tissues. Decellularized muscle (D-muscle) and decellularized fascia (D-fascia), which are two important components of decellularized musculofascial extracellular matrix (DMM), were comprehensively characterized. D-muscle and D-fascia retained intact three-dimensional architecture, strong mechanical properties, and bioactivity of compositions such as collagen, laminin, glycosaminoglycan, and vascular endothelial growth factor. D-muscle and D-fascia provided a compatible niche for human adipose-derived stem cell integration and proliferation. Heterotopic and orthotopic implantation of D-muscle and D-fascia in a rodent model further proved their biocompatibility and myogenic properties during the remodeling process. The differing characteristics of D-muscle from D-fascia (e.g. D-muscle's strong pro-angiogenic and pro-myogenic properties vs. D-fascia's strong mechanical properties) indicate different clinical application opportunities of D-muscle vs. D-fascia scaffolds. DMM comprising muscle and fascia ECM as a whole unit can thus provide not only a clinically translatable platform for musculofascial tissue repair and regeneration but also a useful standard for scaffold design in musculofascial tissue engineering.
理想的支架应能代表肌肉筋膜组织的天然细胞外基质(ECM)特性,这在肌肉筋膜组织工程中具有重要意义。然而,目前仍缺乏对大动物肌肉筋膜组织 ECM(尤其是筋膜)的详细特征描述。在本研究中,我们开发了一种用于处理猪复合肌肉筋膜组织的脱细胞方案。脱细胞肌肉(D-muscle)和脱细胞筋膜(D-fascia)是脱细胞肌肉筋膜细胞外基质(DMM)的两个重要组成部分,我们对其进行了全面的特征描述。D-muscle 和 D-fascia 保留了完整的三维结构、强大的机械性能以及胶原蛋白、层粘连蛋白、糖胺聚糖和血管内皮生长因子等成分的生物活性。D-muscle 和 D-fascia 为人类脂肪来源干细胞的整合和增殖提供了一个相容的微环境。D-muscle 和 D-fascia 在啮齿动物模型中的异位和原位植入进一步证明了它们在重塑过程中的生物相容性和成肌特性。D-muscle 和 D-fascia 的不同特性(例如,D-muscle 具有强烈的促血管生成和促肌生成特性,而 D-fascia 具有强大的机械性能)表明 D-muscle 支架和 D-fascia 支架具有不同的临床应用机会。因此,包含肌肉和筋膜 ECM 的整体 DMM 不仅可为肌肉筋膜组织的修复和再生提供一个可临床转化的平台,还可为肌肉筋膜组织工程中的支架设计提供一个有用的标准。