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Implantable optical biosensor for in vivo molecular imaging

机译:用于体内分子成像的可植入光学生物传感器

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摘要

We present the design and fabrication of an implantable fluorescence biosensor suitable for continuously monitored, freely-moving in vivo rodent studies. The GaAs-based semiconductor sensor incorporates an un-cooled photodetector with a 670nm vertical-cavity surface-emitting laser (VCSEL) optimized for sensing fluorescent Cy5.5 dye. For filtering unwanted spectra, a combination of physical and spectral blocking layers yields OD5 excitation rejection at the detector. The sensor detects near-IR fluorescent Cy5.5 molecules in vitro at 100nM concentration (in a 100μL volume) with linear response for concentrations up to 25 μM. In a preliminary study in a living mouse, subcutaneously injected dye (1μM Cy5.5 in 50μL) was detected. This technology has the potential to enable new studies of living systems in applications that require long-term, continuous fluorescence sensing.
机译:我们目前的设计和制造的植入式荧光生物传感器适用于连续监测,自由移动体内啮齿动物研究。基于GaAs的半导体传感器将非冷却光电探测器与670nm垂直腔表面发射激光器(VCSEL)结合在一起,该激光器针对感测荧光Cy5.5染料进行了优化。为了过滤不想要的光谱,物理层和光谱阻挡层的组合会在检测器处产生OD5激发抑制。该传感器可在体外以100nM的浓度(100μL的体积)检测近红外荧光Cy5.5分子,浓度高达25μM时具有线性响应。在对活体小鼠的初步研究中,检测到了皮下注射的染料(50μL中含1μMCy5.5)。该技术具有潜力,可以在需要长期连续荧光传感的应用中对生命系统进行新的研究。

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