Anal Chem. 2011 Mar 1;83(5):1504-9. doi: 10.1021/ac102922f. Epub 2011 Feb 8.
Chiral recognition is among the important and special modes of molecular recognition. It is highly desirable to develop a simple, rapid, sensitive, and high-throughput routine assay for chiral recognition. In this study, we demonstrate that nucleotide-capped Ag nanoparticles (AgNPs) can be used as an ultrahigh efficiency enantioseparation and detection platform for D- and L-cysteine. The aggregation of AgNPs is selectively induced by an enantiomer of cysteine, which allowed the rapid colorimetric enantiodiscrimination of cysteine without any prior derivatization and specific instruments and left an excess of the other enantiomer in the solution, thus resulting in enantioseparation. This is the first application of a nucleotide-capped AgNP-based biosensing platform for chiral recognition and opens new opportunities for design of more novel enantiosensing strategies and enantiospecific adsorbents and expansion of its application in different fields.
手性识别是分子识别的重要和特殊模式之一。开发一种简单、快速、灵敏、高通量的手性识别常规分析方法是非常可取的。在本研究中,我们证明了核苷酸封端的银纳米粒子(AgNPs)可用作 D-和 L-半胱氨酸的超高效率对映体分离和检测平台。AgNPs 的聚集被半胱氨酸的对映体选择性诱导,这允许快速比色对映体选择性区分半胱氨酸,而无需任何预先衍生化和特定仪器,并且溶液中留下过量的另一种对映体,从而导致对映体分离。这是基于核苷酸封端的 AgNP 的生物传感平台在手性识别中的首次应用,为设计更多新颖的对映体传感策略和对映体特异性吸附剂以及将其应用扩展到不同领域开辟了新的机会。