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新型分子(膜活性免疫调节剂)天然产物对胰岛素抵抗的缓解作用

Mitigation of Insulin Resistance by Natural Products from a New Class of Molecules, Membrane-Active Immunomodulators.

作者信息

Izbicka Elzbieta, Streeper Robert T

机构信息

New Frontier Labs LLC, San Antonio, TX 78240, USA.

出版信息

Pharmaceuticals (Basel). 2023 Jun 21;16(7):913. doi: 10.3390/ph16070913.

Abstract

Insulin resistance (IR), accompanied by an impaired cellular glucose uptake, characterizes diverse pathologies that include, but are not limited to, metabolic disease, prediabetes and type 2 diabetes. Chronic inflammation associated with deranged cellular signaling is thought to contribute to IR. The key molecular players in IR are plasma membrane proteins, including the insulin receptor and glucose transporter 4. Certain natural products, such as lipids, phenols, terpenes, antibiotics and alkaloids have beneficial effects on IR, yet their mode of action remains obscured. We hypothesized that these products belong to a novel class of bioactive molecules that we have named membrane-active immunomodulators (MAIMs). A representative MAIM, the naturally occurring medium chain fatty acid ester diethyl azelate (DEA), has been shown to increase the fluidity of cell plasma membranes with subsequent downstream effects on cellular signaling. DEA has also been shown to improve markers of IR, including blood glucose, insulin and lipid levels, in humans. The literature supports the notion that DEA and other natural MAIMs share similar mechanisms of action in improving IR. These findings shed a new light on the mechanism of IR mitigation using natural products, and may facilitate the discovery of other compounds with similar activities.

摘要

胰岛素抵抗(IR)伴有细胞葡萄糖摄取受损,是多种病理状况的特征,包括但不限于代谢性疾病、糖尿病前期和2型糖尿病。与紊乱的细胞信号传导相关的慢性炎症被认为是导致IR的原因。IR的关键分子参与者是质膜蛋白,包括胰岛素受体和葡萄糖转运蛋白4。某些天然产物,如脂质、酚类、萜类、抗生素和生物碱,对IR有有益作用,但其作用方式仍不清楚。我们假设这些产物属于一类新型的生物活性分子,我们将其命名为膜活性免疫调节剂(MAIMs)。一种具有代表性的MAIM,即天然存在的中链脂肪酸酯壬二酸二乙酯(DEA),已被证明可增加细胞质膜的流动性,并随后对细胞信号传导产生下游影响。DEA在人体中也已被证明可改善IR的指标,包括血糖、胰岛素和血脂水平。文献支持DEA和其他天然MAIMs在改善IR方面具有相似作用机制的观点。这些发现为使用天然产物减轻IR的机制提供了新的线索,并可能促进发现具有类似活性的其他化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ab8/10386479/dc313adb17d2/pharmaceuticals-16-00913-g001.jpg

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