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首页> 外文期刊>ACS Omega >Fabrication of Decellularized Engineered Extracellular Matrix through Bioreactor-Based Environment for Bone Tissue Engineering
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Fabrication of Decellularized Engineered Extracellular Matrix through Bioreactor-Based Environment for Bone Tissue Engineering

机译:通过基于生物组织工程的生物反应器环境制备脱细胞化工程学细胞外基质

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Extracellular matrix (ECM)-contained grafts can be achieved by decellularization of native bones or synthetic scaffolds. Limitations associated with harvesting the native bone has raised interest in preparing in vitro ECM bioscaffold for bone tissue engineering. Here, we intend to develop an ECM-contained construct via decellularizing an engineered gelatin-coated β-tricalcium phosphate (gTCP) scaffold. In order to find an optimal protocol for decellularization of cell-loaded gTCP scaffolds, they were seeded with buccal fat pad-derived stem cells. Then, four decellularization protocols including sodium dodecyl sulfate, trypsin, Triton X-100, and combined solution methods were compared for the amounts of residual cells and remnant collagen and alteration of scaffold structure. Then, the efficacy of the selected protocol in removing cells from gTCP scaffolds incubated in a rotating and perfusion bioreactor for 24 days was evaluated and compared with static condition using histological analysis. Finally, decellularized scaffolds, reloaded with cells, and their cytotoxicity and osteoinductive capability were evaluated. Complete removal of cells from gTCP scaffolds was achieved from all protocols. However, treatment with Triton X-100 showed significantly higher amount of remnant ECM. Bioreactor-incubated scaffolds possessed greater magnitude of ECM proteins including collagen and glycosaminoglycans. Reseeding the decellularized scaffolds also represented higher osteoinductivity of bioreactor-based scaffolds. Application of Triton X-100 as decellularization protocol and usage of bioreactors are suggested as a suitable technique for designing ECM-contained grafts for bone tissue engineering.
机译:通过天然骨骼或合成支架的脱细胞化,可以实现细胞外基质(ECM)覆盖物。与收获本地骨相关的限制已经提高了对骨组织工程中的体外ECM Bioscadomd制备的兴趣。在这里,我们打算通过脱细胞化工制明明胶涂覆的β-三丙烷(GTCP)支架来开发ECM含有的构建体。为了找到用于电池加载的GTCP支架的脱细胞化的最佳方案,它们用颊脂垫衍生的干细胞接种。然后,比较四种脱细胞化方案,包括十二烷基硫酸钠,胰蛋白酶,Triton X-100和组合溶液方法,用于残留细胞和残余胶原的量和支架结构的改变。然后,评估所选方案在从GTCP支架中除去在旋转和灌注生物反应器中的GTCP支架中的细胞的功效,并使用组织学分析与静态条件进行比较。最后,评价脱细胞的支架,重新加载细胞,以及它们的细胞毒性和骨诱导能力。通过所有方案实现从GTCP支架中完全去除来自GTCP支架的细胞。然而,用Triton X-100的处理显示出明显较高的残余ECM。生物反应器 - 孵育的支架具有更大的ECM蛋白质,包括胶原蛋白和糖胺聚糖。重新预测脱细胞的支架也代表了基于生物反应器的支架的更高的骨诱导性。 Triton X-100作为脱细胞化方案和生物反应器的用途的应用被认为是设计ECM含有骨组织工程移植物的合适技术。

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