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Superiority of three-dimensional stem cell clusters over monolayer culture: An archetype to biological application

机译:三维干细胞簇相对于单层培养的优越性:生物学应用的原型

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Mesenchymal stem cells (MSCs) are attractive and potential alternatives to cell-based therapeutics in the field of regenerative medicine. Various clinical trials are being conducted to investigate the therapeutic efficacy of MSCs in a variety of diseases. Many studies show three-dimensional (3D) aggregates as more physiologically relevant than conventional two-dimensional (2D) cultures. Cell morphology, viability, functionality, as well as various gene expressions at the molecular level are drastically changed after 3D culture. MSCs as 3D aggregates provide enhanced differentiation potential and upregulation of pluripotency markers that subsequently result in stemness of MSCs. Furthermore, other biological properties like angiogenic effect, anti-inflammatory effect, regenerative effect, and survival after transplantation are also significantly enhanced in spheroids. Thus, 3D culture is a novel approach in cell-based therapeutics applicable in the field of regenerative medicine and tissue engineering, immunomodulatory diseases and organ transplantation for improved therapeutic outcomes. Various mechanism and techniques have been described for the formation of spheroids in different studies, some of which are discussed here. However, the molecular mechanism underlying the improved functionality and other changes is still unclear and requires further research. Similarly, clinically relevant studies are required to establish the clinical applicability.
机译:间充质干细胞(MSCs)是再生医学领域中基于细胞的疗法的诱人和潜在替代品。正在进行各种临床试验,以研究MSC在多种疾病中的治疗效果。许多研究表明,与常规的二维(2D)文化相比,三维(3D)聚合在生理上的相关性更高。 3D培养后,细胞形态,活力,功能性以及分子水平的各种基因表达都发生了巨大变化。作为3D聚集体的MSC提供增强的分化潜能和多能性标志物的上调,随后导致MSC的茎干。此外,球状体的其他生物学特性,如血管生成作用,抗炎作用,再生作用和移植后的存活率也显着提高。因此,3D培养是一种基于细胞的治疗方法,可用于再生医学和组织工程,免疫调节疾病和器官移植领域,以改善治疗效果。在不同的研究中,已经描述了各种形成球状体的机制和技术,这里讨论其中一些。但是,改善功能和其他变化的分子机制仍不清楚,需要进一步研究。同样,需要进行临床相关研究以确立临床适用性。

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