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可调谐收缩诱导的蜂窝微井阵列用于均匀的类胚体。

Tunable shrink-induced honeycomb microwell arrays for uniform embryoid bodies.

机构信息

Department of Biomedical Engineering, University of California, Irvine, CA, USA.

出版信息

Lab Chip. 2009 Dec 7;9(23):3338-44. doi: 10.1039/b914091c. Epub 2009 Oct 12.

Abstract

Embryoid body (EB) formation closely recapitulates early embryonic development with respect to lineage commitment. Because it is greatly affected by cell-cell and cell-substrate interactions, the ability to control the initial number of cells in the aggregates and to provide an appropriate substrate are crucial parameters for uniform EB formation. Here we report of an ultra-rapid fabrication and culture method utilizing a laser-jet printer to generate closely arrayed honeycomb microwells of tunable sizes for the induction of uniform EBs from single cell suspension. By printing various microwell patterns onto pre-stressed polystyrene sheets, and through heat induced shrinking, high aspect micromolds are generated. Notably, we achieve rounded bottom polydimethylsiloxane (PDMS) wells not easily achievable with standard microfabrication methods, but critical to achieve spherical EBs. Furthermore, by simply controlling the size of the microwells and the concentration of the cell suspension we can control the initial size of the cell aggregate, thus influencing lineage commitment. In addition, these microwells are easily adaptable and scalable to most standard well plates and easily integrated into commercial liquid handling systems to provide an inexpensive and easy high throughput compound screening platform.

摘要

胚状体 (EB) 的形成在谱系决定方面与早期胚胎发育密切相关。由于它受到细胞-细胞和细胞-基底相互作用的极大影响,因此控制聚集物中初始细胞数量的能力和提供合适基底的能力是形成均匀 EB 的关键参数。在这里,我们报告了一种超快速的制造和培养方法,利用激光喷射打印机生成可调节大小的紧密排列的蜂窝状微井,以从单细胞悬浮液中诱导均匀的 EB。通过将各种微井图案打印到预加应力的聚苯乙烯片上,并通过热诱导收缩,生成高纵横比的微模具。值得注意的是,我们实现了圆形底部的聚二甲基硅氧烷 (PDMS) 微井,这是标准微加工方法不容易实现的,但对于实现球形 EB 至关重要。此外,通过简单地控制微井的大小和细胞悬浮液的浓度,我们可以控制细胞聚集物的初始大小,从而影响谱系决定。此外,这些微井易于适应和扩展到大多数标准微孔板,并易于集成到商业液体处理系统中,以提供廉价且易于高通量化合物筛选平台。

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