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基于脂质的免疫调节因子。

Lipid-based regulators of immunity.

作者信息

Johnson Wade T, Dorn Nicholas C, Ogbonna Dora A, Bottini Nunzio, Shah Nisarg J

机构信息

Department of Nanoengineering University of California, San Diego La Jolla California USA.

Chemical Engineering Program University of California, San Diego La Jolla California USA.

出版信息

Bioeng Transl Med. 2021 Dec 31;7(2):e10288. doi: 10.1002/btm2.10288. eCollection 2022 May.

Abstract

Lipids constitute a diverse class of molecular regulators with ubiquitous physiological roles in sustaining life. These carbon-rich compounds are primarily sourced from exogenous sources and may be used directly as structural cellular building blocks or as a substrate for generating signaling mediators to regulate cell behavior. In both of these roles, lipids play a key role in both immune activation and suppression, leading to inflammation and resolution, respectively. The simple yet elegant structural properties of lipids encompassing size, hydrophobicity, and molecular weight enable unique biodistribution profiles that facilitate preferential accumulation in target tissues to modulate relevant immune cell subsets. Thus, the structural and functional properties of lipids can be leveraged to generate new materials as pharmacological agents for potently modulating the immune system. Here, we discuss the properties of three classes of lipids: polyunsaturated fatty acids, short-chain fatty acids, and lipid adjuvants. We describe their immunoregulatory functions in modulating disease pathogenesis in preclinical models and in human clinical trials. We conclude with an outlook on harnessing the diverse and potent immune modulating properties of lipids for immunoregulation.

摘要

脂质构成了一类多样的分子调节物,在维持生命过程中具有普遍的生理作用。这些富含碳的化合物主要来源于外源性来源,可直接用作细胞结构构建块,或作为生成信号介质的底物来调节细胞行为。在这两种作用中,脂质在免疫激活和抑制中都起着关键作用,分别导致炎症和炎症消退。脂质简单而优雅的结构特性,包括大小、疏水性和分子量,使其具有独特的生物分布特征,便于在靶组织中优先积累,从而调节相关免疫细胞亚群。因此,脂质的结构和功能特性可被利用来开发新材料,作为有效调节免疫系统的药物制剂。在此,我们讨论三类脂质的特性:多不饱和脂肪酸、短链脂肪酸和脂质佐剂。我们描述了它们在临床前模型和人类临床试验中调节疾病发病机制的免疫调节功能。我们以利用脂质多样而强大的免疫调节特性进行免疫调节的展望作为总结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f4b/9115682/37ea8b4b5c27/BTM2-7-e10288-g001.jpg

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