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Polymeric aqueous biphasic systems for non-contact cell printing on cells: engineering heterocellular embryonic stem cell niches.用于在细胞上进行非接触式细胞打印的聚合物双水相体系:构建异细胞胚胎干细胞龛
Adv Mater. 2010 Jun 25;22(24):2628-31. doi: 10.1002/adma.200904271.
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High throughput assembly of spatially controlled 3D cell clusters on a micro/nanoplatform.高通量组装微纳平台上具有空间控制的 3D 细胞簇。
Lab Chip. 2010 Mar 21;10(6):775-82. doi: 10.1039/b919475d. Epub 2010 Jan 6.
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Modular Tissue Engineering: Engineering Biological Tissues from the Bottom Up.模块化组织工程:自下而上构建生物组织
Soft Matter. 2009;5(7):1312-1319. doi: 10.1039/b814285h.
4
Microfluidic hydrodynamic cellular patterning for systematic formation of co-culture spheroids.微流控流体动力学细胞图案化用于共培养球体的系统形成。
Integr Biol (Camb). 2009 Dec;1(11-12):649-54. doi: 10.1039/b915965g. Epub 2009 Oct 22.
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Integration column: microwell arrays for mammalian cell culture.整合专栏:用于哺乳动物细胞培养的微井阵列。
Integr Biol (Camb). 2009 Dec;1(11-12):625-34. doi: 10.1039/b918172p. Epub 2009 Oct 14.
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A multi-layer microfluidic device for efficient culture and analysis of renal tubular cells.一种用于高效培养和分析肾小管细胞的多层微流控装置。
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Parylene peel-off arrays to probe the role of cell-cell interactions in tumour angiogenesis.聚对二甲苯剥离式阵列探测细胞间相互作用在肿瘤血管生成中的作用。
Integr Biol (Camb). 2009 Oct;1(10):587-94. doi: 10.1039/b908036h. Epub 2009 Aug 27.
8
Directing hepatic differentiation of embryonic stem cells with protein microarray-based co-cultures.基于蛋白质微阵列的共培养体系定向诱导胚胎干细胞向肝系分化。
Integr Biol (Camb). 2009 Jul;1(7):460-8. doi: 10.1039/b905757a. Epub 2009 Jun 12.
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Soluble glypican 3 inhibits the growth of hepatocellular carcinoma in vitro and in vivo.可溶性聚糖 3 可抑制肝癌的体外和体内生长。
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Microwell-mediated control of embryoid body size regulates embryonic stem cell fate via differential expression of WNT5a and WNT11.微腔介导的胚状体大小控制通过 WNT5a 和 WNT11 的差异表达调节胚胎干细胞命运。
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带有微冲压膜的Transwell小室可产生微图案化的二维和三维共培养物。

Transwells with microstamped membranes produce micropatterned two-dimensional and three-dimensional co-cultures.

作者信息

Torisawa Yu-Suke, Mosadegh Bobak, Cavnar Stephen P, Ho Mitchell, Takayama Shuichi

机构信息

1 Department of Biomedical Engineering, University of Michigan , Ann Arbor, Michigan.

出版信息

Tissue Eng Part C Methods. 2011 Jan;17(1):61-7. doi: 10.1089/ten.TEC.2010.0305. Epub 2010 Aug 26.

DOI:10.1089/ten.TEC.2010.0305
PMID:20673133
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3011919/
Abstract

This article describes a simple and rapid cell patterning method to form co-culture microarrays in commercially available Transwells. A thin poly(dimethylsiloxane) (PDMS) layer is printed on the underside of a Transwell using a PDMS stamp. Arbitrary cellular patterns are generated according to the geometric features of the thin PDMS layer through hydrodynamic forces that guide cells onto the membrane only over the PDMS-uncoated regions. Micropatterns of surface-adhered cells (we refer to this as two-dimensional) or non-surface-adhered clusters of cells (we refer to this as three-dimensional) can be generated depending on the surface treatment of the filter membrane. Additionally, co-cultures can be established by introducing different types of cells on the membrane or in the bottom chamber of the Transwell. We show that this co-culture method can evaluate mouse embryonic stem (mES) cell differentiation based on heterogeneous cell-cell interactions. Co-culture of mES cells and HepG2 cells decreased SOX17 expression of mES cells, and direct cell-cell contact further decreased SOX17 expression, indicating that co-culture with HepG2 cells inhibits endoderm differentiation through soluble factors and cell-cell contact. This method is simple and user-friendly and should be broadly useful to study cell shapes and cell-cell interactions.

摘要

本文介绍了一种简单快速的细胞图案化方法,用于在市售的Transwell中形成共培养微阵列。使用聚二甲基硅氧烷(PDMS)印章在Transwell的底面打印一层薄的PDMS层。通过流体动力在仅PDMS未涂层区域将细胞引导到膜上,根据薄PDMS层的几何特征生成任意细胞图案。根据滤膜的表面处理,可以生成表面粘附细胞的微图案(我们将其称为二维)或非表面粘附细胞簇(我们将其称为三维)。此外,通过在膜上或Transwell的底部腔室中引入不同类型的细胞可以建立共培养。我们表明,这种共培养方法可以基于异质细胞间相互作用评估小鼠胚胎干细胞(mES)的分化。mES细胞与HepG2细胞的共培养降低了mES细胞的SOX17表达,并且直接的细胞间接触进一步降低了SOX17表达,表明与HepG2细胞共培养通过可溶性因子和细胞间接触抑制内胚层分化。该方法简单且用户友好,对于研究细胞形状和细胞间相互作用应该具有广泛的用途。