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Scaffold-Free Spheroids Derived from Stem Cells for Tissue-Engineering Applications

机译:从干细胞源自组织工程应用的脚手架球状体

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Tissue engineering has gained attention in the past decade due to its efficient interaction with the host system and potential therapeutic capabilities. Although scaffold-based approaches provide much needed mechanical strength and support to the regenerating tissue, they also invite foreign body reaction initiated by macrophages, causing inflammation and toxicity, and may also sometime interfere with the regeneration of indigenous tissue due to very slow degradation. Therefore, spheroids provide a promising tool for improving cell survival and for preserving cell-to-cell interaction. They have promptly gained popularity because of their ability to provide superior cellular heterogeneity, nutrient and oxygen gradients (replicating the original tissue), matrix deposition, and gene expression profiles. Because of their ability to differentiate into multiple cell lineages, stem cell-based spheroids have opened new avenues for future regenerative medicine. In this review we focus on various methods for fabrication of spheroids from stem cells and their application in regenerative approaches for different tissues/organs.
机译:由于其与主机系统的有效相互作用和潜在的治疗能力,过去十年组织工程在过去十年中获得了关注。尽管基于支架的方法提供了许多需要的机械强度和对再生组织的支持,但它们还诱使通过巨噬细胞引发的异物反应,引起炎症和毒性,并且也可以在某些情况下干扰由于极慢的降解引起的土着组织的再生。因此,球状体提供了一种有助于改善细胞存活率和保留细胞对细胞相互作用的有前途的工具。它们迅速获得了流行性,因为它们能够提供优异的细胞异质性,营养和氧梯度(复制原始组织),基质沉积和基因表达谱。由于它们能够区分多个细胞谱系,基于干细胞的球体已经为未来的再生医学开辟了新的途径。在本次综述中,我们专注于各种方法制造来自干细胞的球状体及其在不同组织/器官的再生方法中的应用。

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