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超声辅助微连续过程促进甾体激素的选择性氘代

Ultrasound-Assisted Microcontinuous Process Facilitates the Selective Deuteration of Steroid Hormones.

作者信息

Wang Dan, Lv Xin, Wei Fang

机构信息

Oil Crops Research Institute of Chinese Academy of Agricultural Sciences, Key Laboratory of Oilseeds Processing of Ministry of Agriculture, Key Laboratory of Biology and Genetic Improvement of Oil Crops of Ministry of Agriculture, Hubei Key Laboratory of Lipid Chemistry and Nutrition, Wuhan, China.

Hubei Hongshan Laboratory, Wuhan, China.

出版信息

J Labelled Comp Radiopharm. 2025 May;68(5-6):e4146. doi: 10.1002/jlcr.4146.

Abstract

Constructing deuterated molecules efficiently and practically has been a long-standing challenge. Deuterated steroid hormones are essential for medical research and drug metabolism studies and are thus in high demand; mild and selective methods for the deuteration of steroid hormones have remained unexplored. Herein, we demonstrate a practical and efficient approach to synthesize 12 deuterated steroid hormones with up to 98% selectivity and 99% d-incorporation under an ultrasound-assisted microcontinuous process. Optical rotation experiments confirm that steroid hormones configurations are preserved during the H/D exchange reaction. Our protocol enables rapid, inexpensive, and sustainable gram-scale synthesis, facilitated by the reuse of deuterated solvents via molecular distillation technology. Applying synthetic deuterated steroid hormones as mass spectrometry standards, six steroid hormones in metabolites are accurately analyzed from Frozen Human Plasma-1950 sample. Overall, this work has successfully demonstrated the application of ultrasound assisted microcontinuous processing in enhancing H/D exchange reactions.

摘要

高效且实用地构建氘代分子一直是一个长期存在的挑战。氘代甾体激素对于医学研究和药物代谢研究至关重要,因此需求量很大;甾体激素氘代的温和且选择性方法仍未被探索。在此,我们展示了一种实用且高效的方法,即在超声辅助微连续过程下合成12种氘代甾体激素,选择性高达98%,氘掺入率达99%。旋光实验证实,甾体激素的构型在氢/氘交换反应过程中得以保留。我们的方案能够实现快速、廉价且可持续的克级合成,这得益于通过分子蒸馏技术对氘代溶剂的再利用。将合成的氘代甾体激素用作质谱标准品,从“冷冻人类血浆 - 1950”样本中准确分析出代谢物中的六种甾体激素。总体而言,这项工作成功展示了超声辅助微连续处理在增强氢/氘交换反应中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/275a/12051752/a3988331586c/JLCR-68-0-g002.jpg

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