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基于介电电泳的“芯片实验室”装置,用于微球与靶细胞的可编程结合。

Dielectrophoresis-based 'Lab-on-a-chip' devices for programmable binding of microspheres to target cells.

作者信息

Borgatti Monica, Altomare Luigi, Abonnec Melanie, Fabbri Enrica, Manaresi Nicolò, Medoro Gianni, Romani Aldo, Tartagni Marco, Nastruzzi Claudio, Di Croce Silvia, Tosi Azzurra, Mancini Irene, Guerrieri Roberto, Gambari Roberto

机构信息

Biotechnology Center, University of Ferrara, Ferrara, Italy.

出版信息

Int J Oncol. 2005 Dec;27(6):1559-66.

Abstract

There is a general agreement on the fact that the Laboratory on chip (Lab-on-a-chip) technology will enable laboratory testing to move from laboratories employing complex equipments into non-laboratory settings. In this respect, dielectrophoresis (DEP) is a very valuable approach to design and produce Lab-on-a-chip devices able to manipulate microparticles and cells. In this study, we report the application of DEP-based devices for facilitating programmable interactions between microspheres and target tumor cells. We used two Lab-on-a-chip devices, one (the SmartSlide) carrying 193 parallel electrodes and generating up to 50 cylinder-shaped DEP cages, the other (the DEP array) carrying 102,400 arrayed electrodes and generating more than 10,000 spherical DEP cages. We determined whether these devices can be used to levitate and move microspheres and cells in order to obtain a forced interaction between microspheres and target cells. The first major point of this manuscript is that the DEP-based SmartSlide can be used for transfection experiments in which microspheres and target cells are forced to share the same DEP cage, leading to efficient binding of the microspheres to target cells. The data obtained using the DEP array show that this system allows the sequential, software-controlled binding of individually and independently moved single microspheres to a single target tumor cell. To our knowledge, this is the first report on the possible use of a DEP-based Lab-on-a-chip device for guided multiple binding of singularly moved microspheres to a single tumor cell. This approach can be of interest in the field of drug discovery, delivery and diagnosis.

摘要

芯片实验室(Lab-on-a-chip)技术将使实验室检测从使用复杂设备的实验室转移到非实验室环境,这一点已达成普遍共识。在这方面,介电电泳(DEP)是一种非常有价值的方法,可用于设计和生产能够操纵微粒和细胞的芯片实验室设备。在本研究中,我们报告了基于DEP的设备在促进微球与靶肿瘤细胞之间可编程相互作用方面的应用。我们使用了两种芯片实验室设备,一种(SmartSlide)带有193个平行电极,可产生多达50个圆柱形DEP笼,另一种(DEP阵列)带有102,400个阵列电极,可产生超过10,000个球形DEP笼。我们确定了这些设备是否可用于悬浮和移动微球及细胞,以便在微球与靶细胞之间获得强制相互作用。本论文的第一个重点是基于DEP的SmartSlide可用于转染实验,其中微球和靶细胞被迫共享同一个DEP笼,从而导致微球与靶细胞的有效结合。使用DEP阵列获得的数据表明,该系统允许将单独且独立移动的单个微球顺序地、软件控制地与单个靶肿瘤细胞结合。据我们所知,这是关于基于DEP的芯片实验室设备可能用于将单独移动的微球引导至单个肿瘤细胞进行多重结合的首次报道。这种方法在药物发现、递送和诊断领域可能会受到关注。

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