Increased Glycolytic Activity Is Part of Impeded M1(LPS) Macrophage Polarization in the Presence of Urolithin A.

IF 2.1 4区 医学 Q3 CHEMISTRY, MEDICINAL
Planta medica Pub Date : 2024-06-01 Epub Date: 2024-06-06 DOI:10.1055/a-2240-7462
Sheyda Bahiraii, Barbara Braunböck-Müller, Elke H Heiss
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引用次数: 0

Abstract

Urolithin A is a gut metabolite of ellagitannins and reported to confer health benefits, e.g., by increased clearance of damaged mitochondria by macroautophagy or curbed inflammation. One targeted cell type are macrophages, which are plastic and able to adopt pro- or anti-inflammatory polarization states, usually assigned as M1 and M2 macrophages, respectively. This flexibility is tightly coupled to characteristic shifts in metabolism, such as increased glycolysis in M1 macrophages, and protein expression upon appropriate stimulation. This study aimed at investigating whether the anti-inflammatory properties of U: rolithin A may be driven by metabolic alterations in cultivated murine M1(lipopolysaccharide) macrophages. Expression and extracellular flux analyses showed that urolithin A led to reduced il1β, il6, and nos2 expression and boosted glycolytic activity in M1(lipopolysaccharide) macrophages. The pro-glycolytic feature of UROLITHIN A: occurred in order to causally contribute to its anti-inflammatory potential, based on experiments in cells with impeded glycolysis. Mdivi, an inhibitor of mitochondrial fission, blunted increased glycolytic activity and reduced M1 marker expression in M1(lipopolysaccharide/UROLITHIN A: ), indicating that segregation of mitochondria was a prerequisite for both actions of UROLITHIN A: . Overall, we uncovered a so far unappreciated metabolic facet within the anti-inflammatory activity of UROLITHIN A: and call for caution about the simplified notion of increased aerobic glycolysis as an inevitably proinflammatory feature in macrophages upon exposure to natural products.

在尿石素 A 的作用下,糖酵解活性增加是 M1(LPS)巨噬细胞极化受阻的部分原因。
尿石素 A 是鞣花丹宁的一种肠道代谢物,据报道可通过大自噬增加受损线粒体的清除率或抑制炎症等方式为健康带来益处。其中一种目标细胞类型是巨噬细胞,这种细胞具有可塑性,能够采用促炎或抗炎极化状态,通常分别称为 M1 和 M2 巨噬细胞。这种灵活性与新陈代谢的特征性转变密切相关,例如 M1 巨噬细胞的糖酵解增加,以及在适当刺激下的蛋白质表达。本研究旨在探讨 U: rolithin A 的抗炎特性是否可能是由培养的小鼠 M1(脂多糖)巨噬细胞中的代谢变化驱动的。表达和细胞外通量分析表明,尿石素 A 可降低 M1(脂多糖)巨噬细胞中 il1β、il6 和 nos2 的表达,并增强其糖酵解活性。根据在糖酵解受阻的细胞中进行的实验,UROLITHIN A: 促进糖酵解的特性是其抗炎潜力的重要原因。线粒体分裂抑制剂 Mdivi 可抑制糖酵解活性的增加,并减少 M1(脂多糖/UROLITHIN A:)中 M1 标记的表达,这表明线粒体分离是 UROLITHIN A:发挥这两种作用的先决条件。总之,我们发现了UROLITHIN A: 抗炎活性中一个迄今未被重视的新陈代谢方面,并呼吁人们谨慎对待将有氧糖酵解增加作为巨噬细胞暴露于天然产品时必然会产生的促炎特征这一简单化的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Planta medica
Planta medica 医学-药学
CiteScore
5.10
自引率
3.70%
发文量
101
审稿时长
1.8 months
期刊介绍: Planta Medica is one of the leading international journals in the field of natural products – including marine organisms, fungi as well as micro-organisms – and medicinal plants. Planta Medica accepts original research papers, reviews, minireviews and perspectives from researchers worldwide. The journal publishes 18 issues per year. The following areas of medicinal plants and natural product research are covered: -Biological and Pharmacological Activities -Natural Product Chemistry & Analytical Studies -Pharmacokinetic Investigations -Formulation and Delivery Systems of Natural Products. The journal explicitly encourages the submission of chemically characterized extracts.
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