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干细胞球体与体外生态位建模:合理化与放大

Stem Cell Spheroids and Ex Vivo Niche Modeling: Rationalization and Scaling-Up.

作者信息

Chimenti Isotta, Massai Diana, Morbiducci Umberto, Beltrami Antonio Paolo, Pesce Maurizio, Messina Elisa

机构信息

Department of Medical Surgical Sciences and Biotechnology, "La Sapienza" University of Rome, Rome, Italy.

Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Department of Cardiac, Thoracic-, Transplantation and Vascular Surgery, Hannover Medical School, Hannover, Germany.

出版信息

J Cardiovasc Transl Res. 2017 Apr;10(2):150-166. doi: 10.1007/s12265-017-9741-5. Epub 2017 Mar 13.

Abstract

Improved protocols/devices for in vitro culture of 3D cell spheroids may provide essential cues for proper growth and differentiation of stem/progenitor cells (S/PCs) in their niche, allowing preservation of specific features, such as multi-lineage potential and paracrine activity. Several platforms have been employed to replicate these conditions and to generate S/PC spheroids for therapeutic applications. However, they incompletely reproduce the niche environment, with partial loss of its highly regulated network, with additional hurdles in the field of cardiac biology, due to debated resident S/PCs therapeutic potential and clinical translation. In this contribution, the essential niche conditions (metabolic, geometric, mechanical) that allow S/PCs maintenance/commitment will be discussed. In particular, we will focus on both existing bioreactor-based platforms for the culture of S/PC as spheroids, and on possible criteria for the scaling-up of niche-like spheroids, which could be envisaged as promising tools for personalized cardiac regenerative medicine, as well as for high-throughput drug screening.

摘要

用于三维细胞球体体外培养的改进方案/装置可为干细胞/祖细胞(S/PCs)在其生态位中的正常生长和分化提供关键线索,从而保留特定特征,如多谱系潜能和旁分泌活性。已经采用了几种平台来复制这些条件并生成用于治疗应用的S/PC球体。然而,它们不能完全重现生态位环境,其高度调节的网络会部分丧失,由于常驻S/PCs的治疗潜力和临床转化存在争议,心脏生物学领域还存在其他障碍。在本论文中,将讨论允许S/PCs维持/定向分化的关键生态位条件(代谢、几何形状、机械条件)。特别是,我们将关注现有的基于生物反应器的平台,用于将S/PC培养成球体,以及关注扩大类生态位球体规模的可能标准,这些球体可被视为个性化心脏再生医学以及高通量药物筛选的有前景的工具。

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