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在显微镜下使用热响应性底物原位收获黏附的靶细胞:原理与仪器

In situ harvesting of adhered target cells using thermoresponsive substrate under a microscope: principle and instrumentation.

作者信息

Takamatsu Hiroshi, Uchida Satoru, Matsuda Takehisa

机构信息

Department of Mechanical Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.

出版信息

J Biotechnol. 2008 Apr 30;134(3-4):297-304. doi: 10.1016/j.jbiotec.2008.01.015. Epub 2008 Feb 5.

Abstract

A novel technique and instrumented device were developed to harvest target cells from multicellular mixture of different cell types under a microscope. The principle of the technique is that cells cultured on a thermoresponsive-substance-coated dish were detached by a region-specific cooling device and simultaneously harvested using a micropipette, both of which were assembled in an inverted microscope. Thermoresponsive coating consists of the mixture of poly(N-isopropylacrylamide) (PNIPAAm) and PNIPAAm-grafted gelatin. The former non-cell-adhesive polymer dissolves below at 32.1 degrees C in water and precipitates over that temperature (called lower critical solution temperature, LCST), and the latter cell-adhesive polymer has LCST of 34.1 degrees C. The appropriate mixing ratio of these thermoresponsive polymers exhibited high cell adhesion at physiological temperature and complete cell detachment at room temperature. A device developed as to cool at only a tiny area of the bottom of the dish, beneath which a cell that was targeted under a microscope, was assembled in a microscope. It was demonstrated that single cell or two cells that adhered to each other was detached from the surface and harvested by a micropipette within approximately 30s.

摘要

开发了一种新技术和仪器设备,用于在显微镜下从不同细胞类型的多细胞混合物中收获目标细胞。该技术的原理是,在涂有热响应物质的培养皿上培养的细胞通过区域特异性冷却装置分离,同时使用微量移液器收获,这两者都组装在倒置显微镜中。热响应涂层由聚(N-异丙基丙烯酰胺)(PNIPAAm)和PNIPAAm接枝明胶的混合物组成。前者是非细胞粘附性聚合物,在水中低于32.1摄氏度时溶解,高于该温度时沉淀(称为最低临界溶液温度,LCST),后者是细胞粘附性聚合物,LCST为34.1摄氏度。这些热响应聚合物的适当混合比例在生理温度下表现出高细胞粘附性,在室温下表现出完全细胞分离。开发了一种仅在培养皿底部微小区域进行冷却的装置,在显微镜下目标细胞位于该区域下方,该装置组装在显微镜中。结果表明,单个细胞或相互粘附的两个细胞在大约30秒内从表面分离并通过微量移液器收获。

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