Rajendra Maity, Otto Dungan, Frédéric A. Perras, Jingwei Li, Daohua Liu, Sumei Ren, Dan Lehnherr, Zheng Huang, Eric M. Phillips, Moses Adeyemo, Joseph Frimpong, Timothy Quainoo, Zhen-Fei Liu, Long Luo
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引用次数: 0
摘要
同位素标记是制药业广泛使用的一种强大技术。通过追踪同位素标记的分子,研究人员可以对候选新药的药代动力学和药效学获得独特而宝贵的见解。氢同位素标记尤其重要,因为氢在生物系统中的有机分子中无处不在,而且可以通过后期氢同位素交换(HIE)有效地引入氢。然而,目前仍缺乏能同时标记不同类型分子中具有不同类型 C-H 键的多个位点的氢同位素方法。在此,我们展示了一种使用 CdS 量子点催化剂的异质光催化系统,该系统通过独特的双 HIE 途径机制--一个发生在反应溶液中,另一个发生在催化表面--来解决这一问题。这种独特的机制开启了多种独特的标记功能,包括同时标记多个具有挑战性的位点,如二级α-氨基、α-乙烯基、烯丙基和乙烯基位点,为药物标记的实际应用提供了极大的灵活性。
Hydrogen Isotope Labeling of Pharmaceuticals Via Dual Hydrogen Isotope Exchange Pathways Using CdS Quantum Dot Photocatalyst
Isotopic labeling is a powerful technique extensively used in the pharmaceutical industry. By tracking isotope-labeled molecules, researchers gain unique and invaluable insights into the pharmacokinetics and pharmacodynamics of new drug candidates. Hydrogen isotope labeling is particularly important as hydrogen is ubiquitous in organic molecules in biological systems, and it can be introduced effectively through late-stage hydrogen isotope exchange (HIE). However, hydrogen isotope methods that simultaneously label multiple sites with varying types of C–H bonds in the different types of molecules are still lacking. Herein, we demonstrate a heterogeneous photocatalytic system using a CdS quantum dot catalyst that proceeds via a unique dual HIE pathway mechanism─one occurs in the reaction solution and the other on the catalytic surface─to address it. This unique mechanism unlocked several unique labeling capabilities, including simultaneous labeling of multiple and challenging sites such as secondary α-amino, α-ethereal, allyl, and vinyl sites, providing great versatility in practical uses for pharmaceutical labeling.
期刊介绍:
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