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A fluorescence biochip with a plasmon active surface

机译:具有等离激元活性表面的荧光生物芯片

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摘要

We present details of the development of a optical biochip, with integrated on-chip laser excitation, for fluorescence intensity cell based assays. The biochip incorporates an "active surface" for the control and manipulation of fluorescent species placed directly on the device. The active elements of the biochip are one-dimensional periodic sub-wavelength corrugations fabricated on a thin gold film. We have made fluorescence intensity measurements of both an organic dye (Cy5), and immobilized and fluorescently labeled (with 705 nm emitting quantum dots), mammalian tumor cells in contact with the active surface. Here we show that the presence of the periodic grating can be used to control both the excitation and fluorescence generation process itself. We demonstrate that the gratings convert evanescent surface optical modes into well-defined beams of radiation in the far-field and at the surface of the device this produces highly contrasting regions of fluorescence excitation providing regions of high spatial selectivity.
机译:我们介绍了光学生物芯片的开发细节,集成了芯片上的激光激发,用于基于荧光强度细胞的检测。生物芯片结合了“活性表面”,用于控制和操纵直接放置在设备上的荧光物质。生物芯片的活性元素是在金薄膜上制造的一维周期性亚波长波纹。我们已经对有机染料(Cy5)进行了荧光强度测量,并固定并荧光标记(带有705 nm发射量子点),使哺乳动物肿瘤细胞与活性表面接触。在这里,我们表明,周期性光栅的存在可用于控制激发和荧光生成过程本身。我们证明了光栅将e逝的表面光学模式转换为在远场中明确定义的辐射束,并且在设备表面产生了高对比度的荧光激发区域,从而提供了高空间选择性的区域。

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