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Colloid-gold nanoparticle enhanced detection sensitivity of paired surface plasma waves biosensor

机译:胶体金纳米颗粒增强了配对表面等离子体波生物传感器的检测灵敏度

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Previous work with amplitude-sensitive paired surface plasma waves biosensor (PSPWB) demonstrated that the detection sensitivity of PSPWB is able to experimentally detect 0.001% sucrose-water solution and biomolecular interaction of 10pg/ml mouse IgG interacting with immobilized anti-mouse IgG successfully.Further development of the detection sensitivity of PSPWB has been conducted by using 20nm in diameter colloid gold nanoparticles conjugated with target molecules that can result in a higher mass coverage and a larger resonant angle change of plasmon resonance, thereby its detection sensitivity is further enhanced significantly. Bare gold nanoparticles, which is randomly suspended in solution, is adopted to differentiate biospecific binding induced further signal enhancement. Experimentally, the sensitivity at 330fg/ml of Au-nanoparticle conjugated protein A (PA-Au) interacting with mouse IgG which is immobilized on a CM5 sensor chip was detected successfully. By this arrangement, 6-fold signal amplification is demonstrated compared with the same concentration of PA without conjugated gold nanoparticles.
机译:先前使用振幅敏感的配对等离子表面波生物传感器(PSPWB)进行的工作表明,PSPWB的检测灵敏度能够通过实验检测到0.001%的蔗糖水溶液以及10pg / ml小鼠IgG与固定化抗小鼠IgG相互作用的生物分子相互作用。通过使用与目标分子缀合的直径为20nm的胶体金纳米颗粒,可以进一步提高PSPWB的检测灵敏度,这可以导致更高的质量覆盖率和等离振子共振的更大的共振角变化,从而可以进一步显着提高其检测灵敏度。裸金纳米颗粒(随机悬浮在溶液中)被用来区分生物特异性结合诱导的进一步信号增强。实验上,成功地检测到与固定在CM5传感器芯片上的小鼠IgG相互作用的金纳米颗粒偶联蛋白A(PA-Au)在330fg / ml的灵敏度。通过这种布置,与没有共轭金纳米颗粒的相同浓度的PA相比,证明了6倍的信号放大。

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