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海洋微藻中的生物活性氧化脂类谱。

Bioactive Oxylipins Profile in Marine Microalgae.

机构信息

Institut des Biomolécules Max Mousseron, IBMM, Université de Montpellier, CNRS, ENSCM, 34093 Montpellier, France.

Microphyt, 713 Route de Mudaison, 34670 Baillargues, France.

出版信息

Mar Drugs. 2023 Feb 22;21(3):136. doi: 10.3390/md21030136.

Abstract

Microalgae are photosynthetic microscopic organisms that serve as the primary food source in aquatic environments. Microalgae can synthesize a wide variety of molecules, such as polyunsaturated fatty acids (PUFAs) of the omega-3 and omega-6 series. Oxidative degradation of PUFA due to radical and/or enzymatic conversion leads to the formation of oxylipins, which are compounds known for their bioactive properties. In the present study, we aim to profile oxylipins from five microalgae species grown in 10-L photo-bioreactors under optimal conditions. During their exponential phase, microalgae were harvested, extracted and analyzed by LC-MS/MS to determine the qualitative and quantitative profile of oxylipins for each species. The five different selected microalgae revealed a high diversity of metabolites, up to 33 non-enzymatic and 24 enzymatic oxylipins present in different concentrations. Taken together, these findings highlight an interesting role of marine microalgae as a source of bioactive lipids mediators, which we hypothesize have an important function in preventive health measures such as amelioration of inflammation. The rich mixture of oxylipins may display advantages to biological organisms, especially by providing for human health benefits including antioxidant, anti-inflammatory, neuroprotective or immunomodulator activities. Some oxylipins are also well known for their cardiovascular properties.

摘要

微藻是光合的微观生物,是水生环境中主要的食物来源。微藻可以合成多种分子,如ω-3 和 ω-6 系列的多不饱和脂肪酸 (PUFA)。由于自由基和/或酶的转化,PUFA 的氧化降解导致了氧代脂类的形成,这些化合物以其生物活性特性而闻名。在本研究中,我们旨在对在最佳条件下在 10 升光生物反应器中生长的五种微藻物种中的氧代脂类进行分析。在指数生长期,收获微藻,通过 LC-MS/MS 进行提取和分析,以确定每种物种的氧代脂类的定性和定量分布。五种不同的选择的微藻显示出代谢物的高度多样性,多达 33 种非酶促和 24 种酶促氧代脂类以不同的浓度存在。总之,这些发现突出了海洋微藻作为生物活性脂质介质来源的有趣作用,我们假设这些脂质介质在预防健康措施中具有重要功能,例如改善炎症。丰富的氧代脂类混合物可能对生物有机体显示出优势,特别是通过提供对人类健康有益的抗氧化、抗炎、神经保护或免疫调节剂活性。一些氧代脂类也因其心血管特性而闻名。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8508/10051100/73d361bfbef9/marinedrugs-21-00136-g001.jpg

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