Department of Chemical Sciences, University of Naples Federico II, Napoli, Italy.
Department of Chemical Sciences, University of Naples Federico II, Napoli, Italy.
Pharmacol Ther. 2022 Feb;230:107970. doi: 10.1016/j.pharmthera.2021.107970. Epub 2021 Aug 25.
Lipopolysaccharides (LPS) are the main components of the external leaflet of the Gram-negative outer membrane and consist of three different moieties: lipid A, core oligosaccharide, and O-polysaccharide. The lipid A is a glucosamine disaccharide with different levels of acylation and phosphorylation, beside carrying, in certain cases, additional substituents on the sugar backbone. It is also the main immunostimulatory part of the LPS, as its recognition by the host immune system represents a fundamental event for detection of perilous microorganisms. Moreover, an uncontrolled immune response caused by a large amount of circulating LPS can lead to dramatic outcomes for human health, such as septic shock. The immunostimulant properties of an LPS incredibly vary depending on lipid A chemical structure, and for this reason, natural and synthetic variants of the lipid A are under study to develop new drugs that mimic or antagonise its natural effects. Here, we review past and recent findings on the lipid A as an antibiotic target and immune-therapeutic molecule, with a special attention on the crucial role of the chemical structure and its exploitation for conceiving novel strategies for treatment of several immune-related pathologies.
脂多糖(LPS)是革兰氏阴性外膜外叶的主要成分,由三个不同的部分组成:脂质 A、核心寡糖和 O-多糖。脂质 A 是带有不同程度酰化和磷酸化的葡萄糖胺二糖,在某些情况下,糖主链上还带有其他取代基。它也是 LPS 的主要免疫刺激部分,因为宿主免疫系统对其的识别是检测危险微生物的基本事件。此外,大量循环 LPS 引起的失控免疫反应可能对人类健康产生巨大影响,如败血症休克。LPS 的免疫刺激特性令人难以置信地取决于脂质 A 的化学结构,出于这个原因,正在研究天然和合成的脂质 A 变体,以开发模仿或拮抗其天然作用的新药。在这里,我们回顾了脂质 A 作为抗生素靶标和免疫治疗分子的过去和最新发现,特别关注化学结构的关键作用及其在构思治疗几种与免疫相关的病理的新策略方面的应用。