棕酸盐可以防止脂多糖诱导的炎症和炎症酶活性
Prakash Kumar Sahoo1, Aiswariya Ravi1, Baolong Liu2
1Department of Nutrition & Health Sciences, University of Nebraska-Lincoln, Lincoln, NE, USA.
Journal of lipid research
|October 13, 2024
概括
棕酸是一种omega-7脂肪酸,可降低炎症并防止细胞死亡. 这项研究表明它对抗脂多糖 (LPS) 诱导的炎症和炎症酶激活的抗炎作用.
科学领域:
- 免疫学 免疫学 免疫学
- 代谢疾病 代谢疾病
- 脂质生物学 脂质生物学
背景情况:
- 长时间的炎症会导致代谢和炎症性疾病.
- 专门的前溶解脂质调解剂可以缓解炎症反应.
- 欧米茄-7单不和脂肪酸在炎症中的作用需要进一步研究.
研究的目的:
- 为了研究棕酸盐的抗炎性质.
- 为了确定棕酸盐对脂聚糖 (LPS) 诱导的炎症和炎症酶激活的作用.
- 评估棕酸盐对和脂肪酸诱导的细胞死亡的保护作用.
主要方法:
- 使用骨髓衍生的巨细胞 (BMDMs) 和人类THP-1衍生的巨细胞.
- 细胞暴露于脂聚糖 (LPS),瘤缩因子-α (TNFα) 和棕酸盐.
- 评估了炎症酶激活,细胞因子表达,细胞死亡,基激活蛋白激酶 (MAPK) 和核因子kappa B (NF-κB) 转位.
主要成果:
- 棕酸抑制了LPS介导的炎症性细胞因子的上调.
- 棕酸阻断了LPS + ATP诱导的炎症酶激活.
- 棕酸盐保护了LPS+棕酸盐诱导的细胞死亡,并抑制了MAPK激活和NF-κB核转位.
结论:
- 棕酸具有显著的抗炎性质.
- 棕酸盐减轻了LPS诱导的炎症和炎症酶激活.
- 棕酸盐可以保护和脂肪酸诱导的细胞损伤.
相关概念视频
Formation of Lipopolysaccharides
1
Lipopolysaccharides (LPS) are crucial components of the outer membrane of Gram-negative bacteria, serving both structural and functional roles. It contributes to membrane stability and protects bacteria from host immune responses. LPS is composed of three major regions—lipid A, a core oligosaccharide, and an O antigen. The biosynthesis and assembly of LPS involve a highly coordinated set of enzymatic reactions and transport mechanisms. Additionally, LPS is recognized as an endotoxin,...
1
Lipid-derived Compounds in the Human Body
4.3K
Fats and lipids are crucial components in the human body. Some lipid-derived compounds, such as fat-soluble vitamins, eicosanoids, lipoproteins, and glycolipids, also play unique roles to support various biological processes .
Fat-soluble Vitamins
Fat-soluble vitamins, including vitamins A, D, E, and K, are required in minimal quantities, but their deficiencies can lead to severely abnormal physiological conditions. For example, vitamin A deficiency can cause night blindness, dry skin,...
Fat-soluble Vitamins
Fat-soluble vitamins, including vitamins A, D, E, and K, are required in minimal quantities, but their deficiencies can lead to severely abnormal physiological conditions. For example, vitamin A deficiency can cause night blindness, dry skin,...
4.3K
Biosynthesis of Lipids
1
Microbial membranes exhibit remarkable diversity in lipid composition, reflecting evolutionary adaptations to various environmental conditions. The three domains of life—Bacteria, Archaea, and Eukarya—synthesize membrane lipids through distinct biosynthetic pathways, leading to fundamental structural differences that impact membrane stability, function, and adaptability.Fatty Acid-Based Lipids in Bacteria and EukaryaBacteria and eukaryotes share a common fatty acid biosynthesis...
1
Assembly of the Lipid Bilayer in the ER
3.1K
Biological membranes are more than just a barrier separating cell cytoplasm from the outside environment. They are highly dynamic and help maintain the integrity and physiological stability of the cells as well as membrane-bound organelles. Membranes also play vital roles in cell-to-cell and intracellular communication.
A large chunk of any biological membrane is composed of phospholipids. These lipids have a heterogeneous distribution across different subcellular organelles and even between...
A large chunk of any biological membrane is composed of phospholipids. These lipids have a heterogeneous distribution across different subcellular organelles and even between...
3.1K
Inflammation
53.0K
Overview
53.0K
Lipids as Anchors
5.5K
In the plasma membrane, the lipids forming the bilayer can also act as an anchor to tether proteins to the membrane. The three main types of lipid anchors found in eukaryotes are – prenyl groups, fatty acyl groups, and glycosylphosphatidylinositol or GPI groups. Prenyl and fatty acyl groups act as anchors on the cytosolic surface of the membrane, whereas GPI anchors proteins on the extracellular side.
The carboxy-terminal of most of the prenylated proteins, such as Ras proteins, contains...
The carboxy-terminal of most of the prenylated proteins, such as Ras proteins, contains...
5.5K


