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血小板部分通过P-选择素发挥作用,介导巨细胞病毒诱导的微血管功能障碍。

Platelets, acting in part via P-selectin, mediate cytomegalovirus-induced microvascular dysfunction.

作者信息

Khoretonenko Mikhail V, Brunson Jerry L, Senchenkov Evgeny, Leskov Igor L, Marks Christian R, Stokes Karen Y

机构信息

Department of Molecular and Cellular Physiology, Louisiana State University Health Sciences Center, Shreveport, Louisiana; Center for Molecular and Tumor Virology, Louisiana State University Health Sciences Center, Shreveport, Louisiana; and Center for Cardiovascular Diseases and Sciences, Louisiana State University Health Sciences Center, Shreveport, Louisiana.

Department of Molecular and Cellular Physiology, Louisiana State University Health Sciences Center, Shreveport, Louisiana;

出版信息

Am J Physiol Heart Circ Physiol. 2014 Dec 15;307(12):H1745-53. doi: 10.1152/ajpheart.00201.2014. Epub 2014 Oct 17.

Abstract

Cytomegalovirus (CMV) infects a majority of the population worldwide. It has been implicated in cardiovascular disease, induces microvascular dysfunction, and synergizes with hypercholesterolemia to promote leukocyte and platelet recruitment in venules. Although platelets and platelet-associated P-selectin contribute to cardiovascular disease inflammation, their role in CMV-induced vascular responses is unknown. We assessed the role of platelets in CMV-induced microvascular dysfunction by depleting platelets and developing bone marrow chimeric mice deficient in platelet P-selectin. Wild-type and chimeric mice received mock or murine (m)CMV intraperitoneally. Five weeks later, some mice were switched to a high-cholesterol diet (HC) to investigate the synergism between mCMV and HC. Arteriolar vasodilation and recruitment of leukocytes and donor platelets in venules were measured at 11wk. mCMV with or without HC caused significant endothelial dysfunction in arterioles. Platelet depletion restored normal vasodilation in mCMV-HC but not mCMV-ND mice, whereas protection was seen in both groups for platelet P-selectin chimeras. Only mCMV + HC elevated leukocyte and platelet recruitment in venules. Leukocyte adhesion was reduced to mock levels by acute platelet depletion but was only partially decreased in platelet P-selectin chimeras. Platelets from mCMV-HC mice and, to a lesser extent, mCMV-ND but not mock-HC mice showed significant adhesion in mCMV-HC recipients. Our findings implicate a role for platelets, acting through P-selectin, in CMV-induced arteriolar dysfunction and suggest that the addition of HC leads to a platelet-dependent, inflammatory infiltrate that is only partly platelet P-selectin dependent. CMV appeared to have a stronger activating influence than HC on platelets and may represent an additional therapeutic target in vulnerable patients.

摘要

巨细胞病毒(CMV)感染了全球大部分人口。它与心血管疾病有关,可导致微血管功能障碍,并与高胆固醇血症协同作用,促进小静脉中白细胞和血小板的募集。尽管血小板和血小板相关的P-选择素会导致心血管疾病炎症,但其在CMV诱导的血管反应中的作用尚不清楚。我们通过清除血小板和培育缺乏血小板P-选择素的骨髓嵌合小鼠,评估了血小板在CMV诱导的微血管功能障碍中的作用。野生型和嵌合小鼠腹腔内注射模拟物或鼠(m)CMV。五周后,一些小鼠改为高胆固醇饮食(HC),以研究mCMV和HC之间的协同作用。在第11周测量小动脉血管舒张以及小静脉中白细胞和供体血小板的募集情况。无论有无HC,mCMV均导致小动脉出现明显的内皮功能障碍。血小板清除使mCMV-HC小鼠的血管舒张恢复正常,但mCMV-ND小鼠未恢复,而两组的血小板P-选择素嵌合体均表现出保护作用。只有mCMV + HC会增加小静脉中白细胞和血小板的募集。急性血小板清除可使白细胞黏附减少至模拟水平,但在血小板P-选择素嵌合体中仅部分降低。来自mCMV-HC小鼠的血小板,以及程度较轻的mCMV-ND小鼠而非模拟-HC小鼠的血小板,在mCMV-HC受体中表现出明显的黏附。我们的研究结果表明,血小板通过P-选择素在CMV诱导的小动脉功能障碍中发挥作用,并表明添加HC会导致血小板依赖性的炎症浸润,且仅部分依赖血小板P-选择素。CMV对血小板的激活作用似乎比HC更强,可能是易患患者的另一个治疗靶点。

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