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植物固醇游离形式和酯的最新进展:分类、生物合成、化学和检测。

Current advances in phytosterol free forms and esters: Classification, biosynthesis, chemistry, and detection.

机构信息

Team of Ethnopharmacology and Pharmacognosy, Department of Biology, FSTE, Moulay Ismail University of Meknes, BP 609, 52000 Errachidia, Morocco.

Team of Ethnopharmacology and Pharmacognosy, Department of Biology, FSTE, Moulay Ismail University of Meknes, BP 609, 52000 Errachidia, Morocco.

出版信息

Steroids. 2024 Dec;212:109520. doi: 10.1016/j.steroids.2024.109520. Epub 2024 Oct 6.

DOI:10.1016/j.steroids.2024.109520
PMID:39378976
Abstract

Phytosterols are plant sterols that are important secondary plant metabolites with significant pharmacological properties. Their presence in the plant kingdom concerns many unrelated botanical families such as oleageneous plants and cereals. The structures of phytosterols evoke those of cholesterol. These molecules are composed of a sterane ring, also known as perhydrocyclopentanophenanthrene, along with a methyl or ethyl group at C-24 in their side chains, a hydroxyl group at C-3 on ring A, and one or two double bonds in the B ring. Phytosterols display different oxidation degrees at the sterane ring and at the side chain as well as varying numbers of carbons with complex stereochemistries. Fats and water solubilities of phytosterols have been achieved by physical, chemical and enzymatic esterifications to favor their bioavailability and to improve the sensory quality of food, and the efficiency of pharmaceutic and cosmetic products. This review aims to provide comprehensive information starting from the definition and structural classification of phytosterols, and exposes an update of their biogenic relationships. Next, the synthesis of phytosterol esters and their applications as well as their effective roles as hormone precursors are discussed. Finally, a concise exploration of the latest advancements in phytosterol / oxyphytosterols analysis techniques is provided, with a particular focus on modern hyphenated techniques.

摘要

植物甾醇是植物固醇的重要次生代谢产物,具有显著的药理学特性。它们在植物界的存在涉及许多不相关的植物科,如油脂植物和谷物。植物甾醇的结构唤起了胆固醇的结构。这些分子由甾烷环组成,也称为全氢化环戊并菲,以及在其侧链的 C-24 位上的甲基或乙基基团、在 A 环上的 C-3 位上的羟基以及在 B 环上的一个或两个双键。植物甾醇在甾烷环和侧链上显示出不同的氧化程度,以及具有复杂立体化学的不同数量的碳原子。通过物理、化学和酶酯化来实现植物甾醇的脂肪和水溶性,以提高其生物利用度并改善食品的感官质量,以及提高药物和化妆品产品的效率。这篇综述旨在从植物甾醇的定义和结构分类开始提供全面的信息,并介绍其生物合成关系的最新进展。接下来,讨论了植物甾醇酯的合成及其应用以及它们作为激素前体的有效作用。最后,简要探讨了植物甾醇/氧化植物甾醇分析技术的最新进展,特别关注现代的联用技术。

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