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使用聚乙二醇微孔控制胚状体的大小、形状和均匀性。

Controlling size, shape and homogeneity of embryoid bodies using poly(ethylene glycol) microwells.

作者信息

Karp Jeffrey M, Yeh Judy, Eng George, Fukuda Junji, Blumling James, Suh Kahp-Yang, Cheng Jianjun, Mahdavi Alborz, Borenstein Jeffrey, Langer Robert, Khademhosseini Ali

机构信息

Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Lab Chip. 2007 Jun;7(6):786-94. doi: 10.1039/b705085m. Epub 2007 May 2.

Abstract

Directed differentiation of embryonic stem (ES) cells is useful for creating models of human disease and could potentially generate a wide array of functional cell types for therapeutic applications. Methods to differentiate ES cells often involve the formation of cell aggregates called embryoid bodies (EBs), which recapitulate early stages of embryonic development. EBs are typically made from suspension cultures, resulting in heterogeneous structures with a wide range of sizes and shapes, which may influence differentiation. Here, we use microfabricated cell-repellant poly(ethylene glycol) (PEG) wells as templates to initiate the formation of homogenous EBs. ES cell aggregates were formed with controlled sizes and shapes defined by the geometry of the microwells. EBs generated in this manner remained viable and maintained their size and shape within the microwells relative to their suspension counterparts. Intact EBs could be easily retrieved from the microwells with high viability (>95%). These results suggest that the microwell technique could be a useful approach for in vitro studies involving ES cells and, more specifically, for initiating the differentiation of EBs of greater uniformity based on controlled microenvironments.

摘要

胚胎干细胞(ES细胞)的定向分化对于创建人类疾病模型很有用,并且有可能产生用于治疗应用的多种功能细胞类型。分化ES细胞的方法通常涉及形成称为胚状体(EBs)的细胞聚集体,这些聚集体概括了胚胎发育的早期阶段。EBs通常由悬浮培养体制成,产生具有各种大小和形状的异质结构,这可能会影响分化。在这里,我们使用微加工的细胞排斥性聚乙二醇(PEG)孔作为模板来启动均匀EBs的形成。ES细胞聚集体以由微孔几何形状定义的受控大小和形状形成。以这种方式产生的EBs保持活力,并相对于其悬浮对应物在微孔内保持其大小和形状。完整的EBs可以很容易地以高活力(>95%)从微孔中取出。这些结果表明,微孔技术可能是一种用于涉及ES细胞的体外研究的有用方法,更具体地说,是用于基于受控微环境启动更均匀的EBs分化的有用方法。

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