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可溶性受体对脑卒中结局的影响:潜在的生物标志物和治疗工具。

Soluble Receptors Affecting Stroke Outcomes: Potential Biomarkers and Therapeutic Tools.

机构信息

Department of Anesthesiology, University of Florida College of Medicine, Gainesville, FL 32610, USA.

Departments of Pathology, Immunology and Laboratory Medicine, University of Florida, Gainesville, FL 32610, USA.

出版信息

Int J Mol Sci. 2021 Jan 23;22(3):1108. doi: 10.3390/ijms22031108.

Abstract

Soluble receptors are widely understood to be freestanding moieties formed via cleavage from their membrane-bound counterparts. They have unique structures, are found among various receptor families, and have intriguing mechanisms of generation and release. Soluble receptors' ability to exhibit pleiotropic action by receptor modulation or by exhibiting a dual role in cytoprotection and neuroinflammation is concentration dependent and has continually mystified researchers. Here, we have compiled findings from preclinical and clinical studies to provide insights into the role of soluble/decoy receptors, focusing on the soluble cluster of differentiation 36, the soluble cluster of differentiation 163, and soluble lipoprotein-related protein 1 (sCD36, sCD163, and sLRP1, respectively) and the functions they could likely serve in the management of stroke, as they would notably regulate the bioavailability of the hemoglobin and heme after red blood cell lysis. The key roles that these soluble receptors play in inflammation, oxidative stress, and the related pharmacotherapeutic potential in improving stroke outcomes are described. The precise pleiotropic physiological functions of soluble receptors remain unclear, and further scientific investigation/validation is required to establish their respective role in diagnosis and therapy.

摘要

可溶性受体被广泛认为是通过从其膜结合的对应物切割而形成的独立结构域。它们具有独特的结构,存在于各种受体家族中,并且具有有趣的生成和释放机制。可溶性受体通过受体调节或在细胞保护和神经炎症中发挥双重作用来表现出多效性的能力取决于浓度,这一直令研究人员感到困惑。在这里,我们汇集了临床前和临床研究的结果,以提供对可溶性/诱饵受体作用的深入了解,重点介绍可溶性细胞分化抗原 36、可溶性细胞分化抗原 163 和可溶性脂蛋白相关蛋白 1(sCD36、sCD163 和 sLRP1)以及它们在中风管理中可能发挥的作用,因为它们可以显著调节红细胞裂解后血红蛋白和血红素的生物利用度。描述了这些可溶性受体在炎症、氧化应激中的关键作用以及改善中风预后的相关药物治疗潜力。可溶性受体的确切多效生理功能仍不清楚,需要进一步的科学研究/验证来确定它们在诊断和治疗中的各自作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b48/7865279/8a87d0802973/ijms-22-01108-g001.jpg

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