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一种用于在三维结构中体外生成组织的基于芯片的平台。

A chip-based platform for the in vitro generation of tissues in three-dimensional organization.

作者信息

Gottwald Eric, Giselbrecht Stefan, Augspurger Caroline, Lahni Brigitte, Dambrowsky Nina, Truckenmüller Roman, Piotter Volker, Gietzelt Thomas, Wendt Oliver, Pfleging Wilhelm, Welle Alex, Rolletschek Alexandra, Wobus Anna M, Weibezahn Karl-Friedrich

机构信息

Institute for Biological Interfaces, Forschungszentrum Karlsruhe, Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Lab Chip. 2007 Jun;7(6):777-85. doi: 10.1039/b618488j. Epub 2007 Apr 16.

Abstract

We describe a multi-purpose platform for the three-dimensional cultivation of tissues. The device is composed of polymer chips featuring a microstructured area of 1-2 cm(2). The chip is constructed either as a grid of micro-containers measuring 120-300 x 300 x 300 microm (h x l x w), or as an array of round recesses (300 microm diameter, 300 microm deep). The micro-containers may be separately equipped with addressable 3D-micro-electrodes, which allow for electrical stimulation of excitable cells and on-site measurements of electrochemically accessible parameters. The system is applicable for the cultivation of high cell densities of up to 8 x 10(6) cells and, because of the rectangular grid layout, allows the automated microscopical analysis of cultivated cells. More than 1000 micro-containers enable the parallel analysis of different parameters under superfusion/perfusion conditions. Using different polymer chips in combination with various types of bioreactors we demonstrated the principal suitability of the chip-based bioreactor for tissue culture applications. Primary and established cell lines have been successfully cultivated and analysed for functional properties. When cells were cultured in non-perfused chips, over time a considerable degree of apoptosis could be observed indicating the need for an active perfusion. The system presented here has also been applied for the differentiation analysis of pluripotent embryonic stem cells and may be suitable for the analysis of the stem cell niche.

摘要

我们描述了一种用于组织三维培养的多功能平台。该装置由具有1-2平方厘米微结构区域的聚合物芯片组成。芯片可以构建为尺寸为120-300×300×300微米(高×长×宽)的微容器网格,或者构建为圆形凹槽阵列(直径300微米,深300微米)。微容器可以分别配备可寻址的3D微电极,这允许对可兴奋细胞进行电刺激并现场测量电化学可及参数。该系统适用于培养高达8×10⁶个细胞的高细胞密度,并且由于矩形网格布局,允许对培养的细胞进行自动显微镜分析。超过1000个微容器能够在超灌注/灌注条件下对不同参数进行并行分析。通过将不同的聚合物芯片与各种类型的生物反应器结合使用,我们证明了基于芯片的生物反应器在组织培养应用中的主要适用性。原代细胞系和已建立的细胞系已成功培养并分析其功能特性。当细胞在非灌注芯片中培养时,随着时间的推移,可以观察到相当程度的细胞凋亡,这表明需要进行主动灌注。这里介绍的系统也已应用于多能胚胎干细胞的分化分析,并且可能适用于干细胞生态位的分析。

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