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Selective Detection of Sub-Atto-Molar Streptavidin in 10~(13) Fold Impure Sample Using Nanoslot Photonic Crystal Nanolaser

机译:使用纳米曲线光子晶体纳米淋洗型,在10〜(13)折叠纯度样品中选择性检测亚型摩尔链霉蛋白蛋白

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Biosensors which can selectively detect a very small amount of biomarker protein in human blood are desired toward early diagnoses of severe diseases. However, no methods simultaneously satisfy the requirements such as high sensitivity, high selectivity, simple detection, and immediacy. We succeeded in detecting ultra-low-concentration streptavidin (SA) even in a highly impure sample using nanoslot photonic crystal (PC) nanolasers. This nanolaser consists of GaInAsP semiconductor slab with a periodic airhole array. Since the total device area is no larger than 20 x 20 mum~2, high-throughput fabrication is possible even using e-beam lithography. Moreover, it is easy to operate by photopumping through free-space optics. Since the evanescent wave of the laser mode penetrates from the PC slab, the laser wavelength changes sensitively to the environmental index. In the sensing experiment, we first functionalized the devices with biotin, and then measured the wavelength in ultrapure water before and after immersing in the solutions with various concentrations of SA. As a result, we evaluated that the detection limit of SA is 16 zM. In another experiment, we put 1 muM BSA into the solution as a contaminant, and repeated the same measurement. We detected 100 zM SA even in the impure solution only when biotin is functionalized in advance, meaning a selectivity ratio (BSA / SA) of 10~(13). Thus this device achieves unprecedentedly high sensitivity and selectivity in addition to the simple fabrication and fast sensing. It is very promising as a point of care device for medical diagnoses.
机译:希望在早期诊断严重疾病中选择性地检测人血液中的非常少量的生物标志物蛋白的生物传感器。然而,没有同时满足高灵敏度,高选择性,简单检测和即时性的要求。我们成功地使用纳米卷光子晶体(PC)纳米溶解器在高纯度的样品中检测超低浓度链霉抗生物素蛋白(SA)。该纳米座由具有周期性气孔阵列的GaiAx半导体板组成。由于总装置面积不大于20×20毫米〜2,因此即使使用电子束光谱,也可以进行高通量制造。而且,通过自由空间光学器件光泵易于操作。由于激光模式的渐逝波从PC板上渗透,因此激光波长敏感地变化到环境指标。在感测实验中,我们首先用生物素官能化,然后在用各种浓度的SA浸入溶液之前和之后测量超纯水中的波长。结果,我们评估了SA的检测限是16 ZM。在另一个实验中,我们将1毫米BSA放入溶液中作为污染物,并重复相同的测量。只有在纯度的解决方案中,我们检测到100 ZM SA才能预先官能化,意味着10〜(13)的选择性比(BSA / SA)。因此,除了简单的制造和快速感测之外,该装置还实现了前所未有的高灵敏度和选择性。这是一种很有希望的医疗诊断的护理点。

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