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Aptamer-functionalized CdTe:Zn2+ quantum dots for the detection of tomato systemin

机译:适体功能化的CdTe:Zn2 +量子点在番茄中的检测

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摘要

With the advantages of excellent optical properties and biocompatibility, DNA-functionalized quantum dots (QDs) have been widely applied in biosensing and bioimaging. Systemin is an important class of plant peptide hormone that was first identified in plants. In this paper, we have synthesized aptamer-functionalized Zn2+ doped CdTe QDs through a facile one-pot hydrothermal route, and a fluorescent aptasensor based on graphene oxide (GO) is developed for the detection of tomato systemin (TomSys) with aptamer recognition properties. In the absence of TomSys, the aptamer-functionalized QDs are adsorbed on the surface of GO and the fluorescence is efficiently quenched, while in the presence of TomSys, the specific binding of TomSys with its aptamer competitively releases aptamer-functionalized QDs from the GO surface, leading to the recovery of QDs fluorescence. The results demonstrate that the simple, rapid and cost-efficient biosensor possesses satisfactory sensitivity and selectivity for the detection of TomSys.
机译:凭借出色的光学性能和生物相容性,DNA功能化量子点(QD)已广泛应用于生物传感和生物成像。 Systemin是一类重要的植物肽激素,最早在植物中被发现。本文通过一种简便的一锅水热法合成了适体功能化的掺杂Zn2 +的CdTe量子点,并开发了基于氧化石墨烯(GO)的荧光适体传感器,用于检测具有适体识别特性的番茄systemin(TomSys)。在没有TomSys的情况下,适体功能化的量子点被吸附在GO表面,荧光被有效地猝灭,而在存在TomSys的情况下,TomSys与它的适体的特异性结合从GO表面竞争性地释放了适体功能化的量子点。 ,导致QDs荧光的恢复。结果表明,该简单,快速和经济高效的生物传感器具有令人满意的灵敏度和选择性,可用于TomSys的检测。

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