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New trends in non-invasive prenatal diagnosis: Applications of dielectrophoresis-based Lab-on-a-chip platforms to the identification and manipulation of rare cells (Review)

机译:非侵入性产前诊断的新趋势:基于介电电泳的芯片实验室平台在鉴定和操作稀有细胞中的应用(综述)

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摘要

The isolation of rare cells, such as fetal nucleated red blood cells and trophoblasts, from maternal blood for non-invasive prenatal diagnosis is a new field of research exhibiting several difficulties since this strategy requires unresolved basic technological protocols for a successful outcome. However, several achievements in the field of Laboratory-on-a-chip (Lab-on-a-chip) technology have provided clear advancements in projects aimed at the isolation of rare cells from biological fluids. Among the most interesting approaches are those based on dielectrophoresis (DEP). DEP-based Lab-on-a-chip platforms have been demonstrated to be suitable for several applications in biotechnology and biomedicine. DEP-based arrays are able to manipulate single cells, which can be identified and moved throughout the DEP chip to recovery places. DEP buffers are compatible with molecular interactions between monoclonal antibodies and target cells, allowing integration of these devices with magnetic cell sorting (MACS). DEP treatment does not alter the viability of manipulated cells
机译:从母体血液中分离出稀有细胞,例如胎儿有核红细胞和滋养细胞,以进行非侵入性产前诊断是一个新的研究领域,它显示出一些困难,因为该策略需要未解决的基本技术方案才能成功。但是,芯片实验室(Lab-on-a-chip)技术领域的一些成就为旨在从生物流体中分离稀有细胞的项目提供了明显的进步。其中最有趣的方法是基于介电电泳(DEP)的方法。基于DEP的芯片实验室平台已被证明适用于生物技术和生物医学中的多种应用。基于DEP的阵列能够处理单个细胞,这些细胞可以被识别并在整个DEP芯片中移动到恢复位置。 DEP缓冲液与单克隆抗体和靶细胞之间的分子相互作用兼容,从而可以将这些设备与磁性细胞分选(MACS)集成在一起。 DEP处理不会改变受控细胞的活力

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