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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Highly selective recognition and ultrasensitive quantification of enantiomersf
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Highly selective recognition and ultrasensitive quantification of enantiomersf

机译:对映异构体的高度选择性识别和超灵敏定量

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摘要

The ability to recognize and quantify the molecular chirality of enantiomers at the nanolevel in biological systems constitutes the basis of many critical areas for specific targeting in drug development and metabolite probing. Plasmonic nanoparticle dimers exhibit circular dichroism effects at visible wavelengths, amplifying the chiral signal of chiral molecules. We demonstrate the self-assembly of plasmonic chiroptical dimers through multibody attractive forces mediated by cysteine, which amplified the plasmonic chirality of enantiomers using enantiomeric cysteines (l and o), and achieved chiral recognition and a quantitative chiroptical sensing platform, with a detection limit of 20 pM level for L-cysteine. The versatility of nanoparticle dimers with customized chiroptical response opens up the avenue for adaptation of the plasmonic chiroptical platform for the drug development and proteomic profiling of metabolites.
机译:在生物系统中纳米级识别和定量对映异构体的分子手性的能力构成了在药物开发和代谢物探测中进行特异性靶向的许多关键领域的基础。等离子体纳米颗粒二聚体在可见光波长下表现出圆二色性,从而放大了手性分子的手性信号。我们通过半胱氨酸介导的多体吸引力证明了等离子手性手性二聚体的自组装,半胱氨酸通过对映体半胱氨酸(l和o)放大了对映体的等离子手性,并实现了手性识别和定量手性感应平台,检测限为L-半胱氨酸为20 pM。具有定制的手性响应的纳米颗粒二聚体的多功能性为等离子手性平台适应药物开发和代谢产物的蛋白质组学分析开辟了途径。

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