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多参数分析不同类型细胞构建的组织球体。

Multiparametric Analysis of Tissue Spheroids Fabricated from Different Types of Cells.

机构信息

Laboratory for Biotechnological Research 3D Bioprinting Solutions, Kashirskoe Highway, 68-2, Moscow, 115409, Russia.

Institute for Regenerative Medicine, I. M. Sechenov First Moscow State Medical University, Moscow, 119991, Russia.

出版信息

Biotechnol J. 2020 May;15(5):e1900217. doi: 10.1002/biot.201900217. Epub 2020 Feb 9.

Abstract

Reproducible, scalable, and cost effective fabrication and versatile characterization of tissue spheroids (TS) is highly demanded by 3D bioprinting and drug discovery. Consistent geometry, defined mechanical properties, optimal viability, appropriate extracellular matrix/cell organization are required for cell aggregates aimed for application in these fields. A straightforward procedure for fabrication and systematic multiparametric characterization of TS with defined properties and uniform predictable geometry employing non-adhesive technology is suggested. Applying immortalized and primary cells, the reproducibility of spheroid generation, the strong correlation of ultimate spheroid diameter, and growth pattern with cell type and initial seeding concentration are demonstrated. Spheroids viability and mechanical properties are governed by cell derivation. In this study, a new decision procedure to apply for any cell type one starts to work with to prepare and typify TS meeting high quality standards in biofabrication and drug discovery is suggested.

摘要

可重复、可扩展且经济高效的组织球体制备以及多功能组织球状体(TS)的特性分析是 3D 生物打印和药物发现领域的迫切需求。对于应用于这些领域的细胞聚集体,需要具有一致的几何形状、明确的机械性能、最佳的存活率、适当的细胞外基质/细胞组织。本文提出了一种简单的方法,利用非粘附技术制造具有明确定义性质和均匀可预测几何形状的 TS,并对其进行系统的多参数特性分析。应用永生化细胞和原代细胞,展示了球状体生成的可重复性,最终球状体直径和生长模式与细胞类型和初始接种浓度之间的强相关性。球状体的活力和机械性能取决于细胞来源。在这项研究中,我们提出了一种新的决策程序,用于为任何开始工作的细胞类型制备和定型 TS,以满足生物制造和药物发现领域的高质量标准。

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