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Surface Plasmon Resonator Using High Sensitive Resonance Telecommunication Wavelengths for DNA Sensors of Mycobacterium Tuberculosis with Thiol-Modified Probes

机译:使用高灵敏度共振电信波长的表面等离子体共振器用于硫醇修饰探针的结核分枝杆菌DNA传感器

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摘要

Various analytes can be verified by surface plasmon resonance, thus continuous improvement of this sensing technology is crucial for better sensing selection and higher sensitivity. The SPR sensitivity on the wavelength modulation is enhanced with increasing wavelengths. The telecommunication wavelength range was then utilized to detect Mycobacterium tuberculosis (MTB) deoxyribonucleic acid (DNA) under two situations, without immobilization and with 5′-thiol end labeled IS6100 DNA probes, for SPR sensitivity comparison. The experimental data demonstrated that the SPR sensitivity increased more than 13 times with the wavelength modulation after immobilization. Since the operating wavelength accuracy of a tunable laser source can be controlled within 0.001 nm, the sensitivity and resolution on immobilized MTB DNA were determined as 1.04 nm/(μg/mL) and 0.9 ng/mL, respectively.
机译:可以通过表面等离振子共振来验证各种分析物,因此,不断改进该传感技术对于更好的传感选择和更高的灵敏度至关重要。随着波长的增加,SPR对波长调制的灵敏度会增强。然后将电信波长范围用于检测两种情况下的结核分枝杆菌(MTB)脱氧核糖核酸(DNA),无需固定,并使用5'-硫醇末端标记的IS6100 DNA探针进行SPR敏感性比较。实验数据表明,固定后,随着波长的调制,SPR灵敏度提高了13倍以上。由于可调激光源的工作波长精度可以控制在0.001 nm之内,因此对固定的MTB DNA的灵敏度和分辨率分别确定为1.04 nm /(μg/ mL)和0.9 ng / mL。

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