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Tapered Optical Fiber Sensor Using Near-Infrared Fluorophores To Assay Hybridization

机译:使用近红外荧光团进行杂交的锥形光纤传感器

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We present an all-fiber hybridization assay sensor that relies on the evanescent field excitation of fluorescence from surface-bound fluorophores. The evanescent field is made accessible through the use of a long, adiabatically tapered single-mode fiber probe. A laser diode with a 785-nm wavelength is used in a pulsed mode of operation to excite fluorescence in the tapered region of a fiber probe using the near-infrared fluorophore IRD 41. We have used various chemical treatments to prepare the tapered fiber surface for chemical, as well as physical, binding of fluorophores. We have carried out real-time hybridization tests for IDR 41-labeled oligonucleofide, at various probe concentrations, binding to complementary oligonucleofide cross-linked to the tapered fiber surface. The biospecificity of our sensor is confirmed through hybridization tests with a control oligonucleotide. Short oligonucleotides (20-mer) bound to the fiber surface have been used to detect near-IR dye-labeled complementary sequences at subnanomolar levels. Sandwich assays with Helieobacter pylori total RNA were conducted to examine the capability of the biosensor for detecting bacterial cells using rRNA as the target. The results indicate that this fluorsensor is capable of detecting H. pylori in a sandwich assay at picomolar concentrations.
机译:我们提出了一种全纤维杂交测定传感器,它依赖于表面结合荧光团的荧光的e逝场激发。通过使用长的绝热锥形单模光纤探头可以使逝场变得可访问。使用脉冲操作模式使用波长为785 nm的激光二极管,以使用近红外荧光团IRD 41在光纤探针的锥形区域中激发荧光。我们已经使用各种化学处理来制备锥形光纤表面,以用于化学和物理结合的荧光团。我们已经进行了IDR 41标记的寡核苷酸在各种探针浓度下的实时杂交测试,这些寡核苷酸与交联到锥形纤维表面的互补寡核苷酸结合。通过与对照寡核苷酸的杂交测试,可以确认我们传感器的生物特异性。结合到纤维表面的短寡核苷酸(20-mer)已用于检测亚纳摩尔水平的近红外染料标记的互补序列。进行了幽门螺杆菌总RNA的夹心测定,以检查生物传感器以rRNA为靶标检测细菌细胞的能力。结果表明,该荧光传感器能够以皮摩尔浓度在夹心测定中检测幽门螺杆菌。

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