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Decellularized extracellular matrix gelloids support mesenchymal stem cell growth and function in vitro

机译:脱细胞外细胞外基质牙胶胶质剂支持间充质干细胞生长和体外功能

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摘要

Volumetric muscle loss (VML) injuries are irrecoverable due to a significant loss of regenerative elements, persistent inflammation, extensive fibrosis, and functional impairment. When used in isolation, previous stem cell and biomaterial-based therapies have failed to regenerate skeletal muscle at clinically relevant levels. The extracellular matrix (ECM) microenvironment is crucial for the viability, stemness, and differentiation of stem cells. Decellularized-ECM (D-ECM) scaffolds are at the forefront of ongoing research to develop a viable therapy for VML. Due to the retention of key ECM components, D-ECM scaffolds provide an excellent substrate for the adhesion and migration of several cell types. Mesenchymal stem cells (MSCs) possess regenerative and immunomodulatory properties and are currently under investigation in clinical trials for a wide range of medical conditions. However, a major limitation to the use of MSCs in clinical applications is their poor viability at the site of transplantation. In this study, we have fabricated spherical scaffolds composed of gelatin and skeletal muscle D-ECM for the adhesion and delivery of MSCs to the site of VML injury. These spherical scaffolds termed "gelloids" supported MSC survival, expansion, trophic factor secretion, immunomodulation, and myogenic protein expression in vitro. Future studies would determine the therapeutic efficacy of this approach in a murine model of VML injury.
机译:由于再生元素,持续炎症,广泛的纤维化和功能损伤,体积肌肉损失(VML)损伤是无法恢复的。当用于分离使用时,先前的干细胞和基于生物材料的疗法未能在临床相关水平处再生骨骼肌。细胞外基质(ECM)微环境对于干细胞的活力,茎和分化至关重要。脱细胞 - ECM(D-ECM)支架处于正在进行的研究的最前沿,用于为VML制定可行的疗法。由于键ECM组分的保留,D-ECM支架提供了几种细胞类型的粘附性和迁移的优异底物。间充质干细胞(MSCs)具有再生和免疫调节性能,目前正在调查临床试验中的各种医疗病症。然而,在临床应用中使用MSCs的主要限制是它们在移植部位的可利用率。在这项研究中,我们已经制造了由明胶和骨骼肌D-ECM组成的球形支架,用于粘附和递送MSCs到VML损伤的部位。这些球形支架被称为“甘油脂”支持的MSC存活,膨胀,营养因子分泌,免疫调节和体外肌原蛋白表达。未来的研究将确定这种方法在VML损伤的小鼠模型中的治疗效果。

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