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一种用于检测癌细胞细胞毒性和增殖的无标记光子晶体生物传感器成像方法。

A label-free photonic crystal biosensor imaging method for detection of cancer cell cytotoxicity and proliferation.

作者信息

Chan Leo L, Gosangari Saujanya L, Watkin Kenneth L, Cunningham Brian T

机构信息

Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Apoptosis. 2007 Jun;12(6):1061-8. doi: 10.1007/s10495-006-0031-y.

Abstract

A label-free method for detecting the attachment of human cancer cells to a biosensor surface for rapid screening for biological activity is described, in which attachment of a cell results in highly localized increase of the resonant reflected wavelength of a photonic crystal narrowband reflectance filter incorporated into a standard 96-well microplate. An imaging detection instrument is used to determine the spatial distribution of attached cells by mapping the shift in reflected resonant wavelength as a function of position. The method enables monitoring of cancer cell attachment, cell proliferation, and cell detachment that is induced by exposure of the cells to drug compounds. We demonstrate the efficacy of this method as an early screening technique for the rapid quantification of the rate of cancer cell proliferation on the sensor surface, and subsequently as a means for quantifying cell detachment resulting from apoptosis that is induced by exposure of the cells to cytotoxic chemicals.

摘要

描述了一种用于检测人类癌细胞附着到生物传感器表面以快速筛选生物活性的无标记方法,其中细胞的附着会导致集成在标准96孔微孔板中的光子晶体窄带反射滤光片的共振反射波长高度局部增加。使用成像检测仪器通过绘制反射共振波长随位置的变化来确定附着细胞的空间分布。该方法能够监测癌细胞的附着、细胞增殖以及细胞因接触药物化合物而诱导的脱离。我们证明了该方法作为一种早期筛选技术在快速定量传感器表面癌细胞增殖速率方面的有效性,随后作为一种量化细胞因接触细胞毒性化学物质而诱导凋亡导致的细胞脱离的手段。

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