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用于高通量细胞功能和毒性分析的单肿瘤球体的快速生成。

Rapid generation of single-tumor spheroids for high-throughput cell function and toxicity analysis.

作者信息

Ivascu Andrea, Kubbies Manfred

机构信息

Roche Pharmaceutical Research Oncology, Penzberg, Germany.

出版信息

J Biomol Screen. 2006 Dec;11(8):922-32. doi: 10.1177/1087057106292763. Epub 2006 Sep 14.

Abstract

Spheroids are widely used in biology because they provide an in vitro 3-dimensional (3D) model to study proliferation, cell death, differentiation, and metabolism of cells in tumors and the response of tumors to radiotherapy and chemotherapy. The methods of generating spheroids are limited by size heterogeneity, long cultivation time, or mechanical accessibility for higher throughput fashion. The authors present a rapid method to generate single spheroids in suspension culture in individual wells. A defined number of cells ranging from 1000 to 20,000 were seeded into wells of poly-HEMA-coated, 96-well, round-or conical-bottom plates in standard medium and centrifuged for 10 min at 1000 g. This procedure generates single spheroids in each well within a 24-h culture time with homogeneous sizes, morphologies, and stratification of proliferating cells in the rim and dying cells in the core region. Because a large number of tumor cell lines form only loose aggregates when cultured in 3D, the authors also performed a screen for medium additives to achieve a switch from aggregate to spheroid morphology. Small quantities of the basement membrane extract Matrigel, added to the culture medium prior to centrifugation, most effectively induced compact spheroid formation. The compact spheroid morphology is evident as early as 24 h after centrifugation in a true suspension culture. Twenty tumor cell lines of different lineages have been used to successfully generate compact, single spheroids with homogenous size in 96-well plates and are easily accessible for subsequent functional analysis.

摘要

球体在生物学中被广泛应用,因为它们提供了一种体外三维(3D)模型,用于研究肿瘤细胞的增殖、细胞死亡、分化和代谢,以及肿瘤对放疗和化疗的反应。生成球体的方法受到尺寸异质性、培养时间长或难以实现高通量操作的机械可及性的限制。作者提出了一种在单个孔中悬浮培养生成单个球体的快速方法。将1000至20000个特定数量的细胞接种到涂有聚甲基丙烯酸羟乙酯的96孔圆底或锥底培养板的孔中,加入标准培养基,以1000 g离心10分钟。此过程在24小时培养时间内,在每个孔中生成单个球体,其大小、形态均匀,边缘增殖细胞和核心区域死亡细胞分层。由于大量肿瘤细胞系在三维培养时仅形成松散聚集体,作者还对培养基添加剂进行了筛选,以实现从聚集体形态向球体形态的转变。在离心前向培养基中添加少量基底膜提取物基质胶,最有效地诱导了紧密球体的形成。在真正的悬浮培养中,离心后24小时内即可明显观察到紧密球体形态。已使用20种不同谱系的肿瘤细胞系在96孔板中成功生成大小均匀的紧密单个球体,便于后续功能分析。

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