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镰状细胞病转基因小鼠血管通透性屏障的时空功能障碍

Spatiotemporal dysfunction of the vascular permeability barrier in transgenic mice with sickle cell disease.

作者信息

Ghosh Samit, Tan Fang, Ofori-Acquah Solomon F

机构信息

Aflac Cancer and Blood Disorders Center, Division of Hematology/Oncology/BMT, Department of Pediatrics, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Anemia. 2012;2012:582018. doi: 10.1155/2012/582018. Epub 2012 Jun 12.

Abstract

Sickle cell disease (SCD) is characterized by chronic intravascular hemolysis that generates excess cell-free hemoglobin in the blood circulation. Hemoglobin causes multiple endothelial dysfunctions including increased vascular permeability, impaired reactivity to vasoactive agonists, and increased adhesion of leukocytes to the endothelium. While the adhesive and vasomotor defects of SCD associated with cell-free hemoglobin are well defined, the vascular permeability phenotype remains poorly appreciated. We addressed this issue in two widely used and clinically relevant mouse models of SCD. We discovered that the endothelial barrier is normal in most organs in the young but deteriorates with aging particularly in the lung. Indeed, middle-aged sickle mice developed pulmonary edema revealing for the first time similarities in the chronic permeability phenotypes of the lung in mice and humans with SCD. Intravenous administration of lysed red blood cells into the circulation of sickle mice increased vascular permeability significantly in the lung without impacting permeability in other organs. Thus, increased vascular permeability is an endothelial dysfunction of SCD with the barrier in the lung likely the most vulnerable to acute inflammation.

摘要

镰状细胞病(SCD)的特征是慢性血管内溶血,在血液循环中产生过量的游离血红蛋白。血红蛋白会导致多种内皮功能障碍,包括血管通透性增加、对血管活性激动剂的反应性受损以及白细胞与内皮的粘附增加。虽然与游离血红蛋白相关的SCD的粘附和血管舒缩缺陷已得到明确界定,但血管通透性表型仍未得到充分认识。我们在两种广泛使用且与临床相关的SCD小鼠模型中解决了这个问题。我们发现,年轻小鼠大多数器官中的内皮屏障是正常的,但随着年龄增长会恶化,尤其是在肺部。实际上,中年镰状小鼠出现了肺水肿,首次揭示了小鼠和患有SCD的人类肺部慢性通透性表型的相似之处。向镰状小鼠的循环系统中静脉注射裂解的红细胞,会显著增加肺部的血管通透性,而不会影响其他器官的通透性。因此,血管通透性增加是SCD的一种内皮功能障碍,肺部的屏障可能最易受到急性炎症的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffe0/3384933/96c0ed04cb1c/ANE2012-582018.001.jpg

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