Resuscitation with human fresh frozen plasma (FFP) in hemorrhagic shock (HS) patients is associated with improved clinical outcomes. Our group has demonstrated that the beneficial effect of FFP is due to its blockade on endothelial hyperpermeability, thereby improving vascular barrier function. The current study aimed to investigate HS-induced endothelial cell apoptosis, a potential major contributor to the endothelial hyperpermeability, and to determine the effect and the key components/factors of FFP on protecting endothelial cells from apoptosis. We first measured and demonstrated an increase in apoptotic endothelial microparticles (CD146AnnexinV) in patients in shock compared to normal subjects, indicating the induction of endothelial cell activation and apoptosis in shock patients. We then transfused HS rats with FFP and showed that FFP blocked HS-induced endothelial cell apoptosis in gut tissue. To identify the anti-apoptotic factors in FFP, we utilized high-performance liquid chromatography, fractionated FFP, and screened the fractions in vitro for the anti-apoptotic effects. We selected the most effective fractions, performed mass spectrometry, and identified fibrinogen as a potent anti-apoptotic factor. Taken together, our findings suggest that HS-induced endothelial apoptosis may constitute a major mechanism underlying the vascular hyperpermeability. Furthermore, the identified anti-apoptotic factor fibrinogen may contribute to the beneficial effects of FFP resuscitation, and therefore, may have therapeutic potential for HS.
Identification of Fibrinogen as a Key Anti-Apoptotic Factor in Human Fresh Frozen Plasma for Protecting Endothelial Cells In Vitro.
鉴定纤维蛋白原为人类新鲜冷冻血浆中保护内皮细胞的关键抗凋亡因子
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作者:Yu Qiang, Yang Baibing, Davis Joy M, Ghosn Jean, Deng Xiyun, Doursout Marie-Francoise, Dong Jing-Fei, Wang Run, Holcomb John B, Wade Charles E, Ko Tien C, Cao Yanna
| 期刊: | Shock | 影响因子: | 2.900 |
| 时间: | 2020 | 起止号: | 2020 May;53(5):646-652 |
| doi: | 10.1097/SHK.0000000000001399 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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