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硅胶介导的烯丙基基序氧化生成类似天然产物的人工产物。

Silica Gel-mediated Oxidation of Prenyl Motifs Generates Natural Product-Like Artifacts.

机构信息

UIC/NIH Center for Botanical Dietary Supplements Research, Pharmacognosy Institute, and Department of Pharmaceutical Sciences, College of Pharmacy, University of Illinois at Chicago, Chicago, United States.

Center for Natural Product Technologies (CENAPT), Pharmacognosy Institute, and Department of Pharmaceutical Sciences, College of Pharmacy, University of Illinois at Chicago, Chicago, United States.

出版信息

Planta Med. 2021 Oct;87(12-13):998-1007. doi: 10.1055/a-1472-6164. Epub 2021 May 11.

Abstract

Prenyl moieties are commonly encountered in the natural products of terpenoid and mixed biosynthetic origin. The reactivity of unsaturated prenyl motifs is less recognized and shown here to affect the acyclic monoterpene glycoside, kenposide A (8: ), which oxidizes readily on silica gel when exposed to air. The major degradation product mediated under these conditions was a new aldehyde, 9: . Exhibiting a shortened carbon skeleton formed through the breakdown of the terminal isopropenyl group, 9: is prone to acetalization in protic solvents. Further investigation of minor degradation products of both 8: and 8-prenylapigenin (8-PA, 12: ), a flavonoid with an -prenyl substituent, revealed that the aldehyde formation was likely realized through epoxidation and subsequent cleavage at the prenyl olefinic bond. Employment of H NMR full spin analysis (HiFSA) achieved the assignment of all chemical shifts and coupling constants of the investigated terpenoids and facilitated the structural validation of the degradation product, 9: . This study indicates that prenylated compounds are generally susceptible to oxidative degradation, particularly in the presence of catalytic mediators, but also under physiological conditions. Such oxidative artifact/metabolite formation leads to a series of compounds with prenyl-derived (cyclic) partial structures that are analogous to species formed during Phase I metabolism . Phytochemical and pharmacological studies should take precautions or at least consider the impact of (unavoidable) exposure of prenyl-containing compounds to catalytic and/or oxidative conditions.

摘要

异戊烯部分在萜类和混合生物合成来源的天然产物中很常见。不饱和异戊烯基的反应性尚未得到充分认识,本文展示了它会影响非环单萜糖苷 kenposide A(8:),当暴露于空气中时,8:在硅胶上很容易氧化。在这些条件下介导的主要降解产物是一种新的醛,9:。由于末端异丙烯基的断裂,9:形成缩短的碳骨架,容易在质子溶剂中形成缩醛。对 8:和 8-prenylapigenin(8-PA,12:)的次要降解产物的进一步研究,8-PA 是一种具有异戊烯取代基的类黄酮,表明醛的形成可能是通过环氧化和随后在异戊烯烯键处裂解实现的。使用 1H NMR 全自旋分析(HiFSA)实现了所研究萜类化合物的所有化学位移和偶合常数的分配,并促进了降解产物 9:的结构验证。该研究表明,异戊烯化化合物通常容易发生氧化降解,特别是在存在催化介质的情况下,但在生理条件下也是如此。这种氧化副产物/代谢物的形成导致一系列具有异戊烯衍生(环状)部分结构的化合物,类似于 I 期代谢过程中形成的化合物。植物化学和药理学研究应采取预防措施,或至少考虑到含有异戊烯的化合物不可避免地暴露于催化和/或氧化条件下的影响。

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