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通过芯片上的三维微传感器实现无标记活化 T 淋巴细胞的识别。

Label-free identification of activated T lymphocytes through tridimensional microsensors on chip.

机构信息

Laboratory of Life Sciences Electronics - Swiss Federal Institute of Technology (EPFL), Lausanne CH-1015, Switzerland.

Ludwig Center for Cancer Research - University of Lausanne (UNIL), CH-1066, Switzerland.

出版信息

Biosens Bioelectron. 2017 Aug 15;94:193-199. doi: 10.1016/j.bios.2017.02.047. Epub 2017 Mar 3.

Abstract

Label-free approaches to assess cell properties ideally suit the requirements of cell-based therapeutics, since they permit to characterize cells with minimal perturbation and manipulation, at the benefit of sample recovery and re-employment for treatment. For this reason, label-free techniques would find sensible application in adoptive T cell-based immunotherapy. In this work, we describe the label-free and single-cell detection of in vitro activated T lymphocytes in flow through an electrical impedance-based setup. We describe a novel platform featuring 3D free-standing microelectrodes presenting passive upstream and downstream extensions and integrated into microfluidic channels. We employ such device to measure the impedance change associated with T cell activation at electrical frequencies maximizing the difference between non-activated and activated T cells. Finally, we harness the impedance signature of unstimulated T cells to set a boundary separating activated and non-activated clones, so to characterize the selectivity and specificity of the system. In conclusion, the strategy here proposed highlights the possible employment of impedance to assess T cell activation in label-free.

摘要

无标记方法评估细胞特性非常适合基于细胞的治疗学的要求,因为它们可以在最小的干扰和操作下对细胞进行特征化,有利于样品回收和再用于治疗。出于这个原因,无标记技术将在过继性 T 细胞为基础的免疫疗法中得到合理的应用。在这项工作中,我们描述了通过基于电阻抗的设置在流动中对体外激活的 T 淋巴细胞进行无标记和单细胞检测。我们描述了一种新颖的平台,其特点是具有 3D 独立式微电极,具有无源上游和下游延伸部分,并集成到微流道中。我们使用这种装置在最大限度地提高非激活和激活 T 细胞之间差异的电频率下测量与 T 细胞激活相关的阻抗变化。最后,我们利用未刺激的 T 细胞的阻抗特征来设置一个边界,将激活和非激活的克隆分开,从而对系统的选择性和特异性进行特征描述。总之,这里提出的策略突出了阻抗在无标记评估 T 细胞激活中的可能应用。

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