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Early hemorheological changes in a porcine model of intravenously given E-coli induced fulminant sepsis

机译:静脉内给予大肠杆菌诱导的暴发性脓毒症的猪模型的早期血液流变学变化

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The pathophysiology of hemorheological and microcirculatory disturbances in septic process -mostly during the early hours-still not clarified in all the details, yet. In anesthetized pigs living E. coli (ATCC 25922 strain) was administered intravenously with an increasing concentration and the animals were observed for 8 hours. Before the intervention and in every 2 hours arterial (cannulated femoral artery) and venous (cannulated external jugular vein) blood samples were collected for hemorheological laboratory tests: blood and plasma viscosity, ESR, leukocyte anti-sedimentation rate, erythrocyte deformability (together with osmoscan parameters) and erythrocyte aggregation (using light-transmission and laser back-scattering methods) Control animals were stable over the 8-hour anesthesia, while septic animals died by the 6th hours in a fulminant sepsis. Over the experimental period, the tendency of impairment in erythrocyte deformability (together with osmotic gradient ektacytometry parameters) and the controversial decreasing of erythrocyte aggregation values (declining all aggregation index values, elongating t(1/2)) were well detected in this porcine model during the early hours (4-6) of fulminant sepsis. The in vitro effect of these bacteria on erythrocytes' micro-rheological parameter was similar: decreasing red blood cell deformability and lowering aggregation. Further studies are needed to clarify the early micro-rheological changes of bacteremia and the developing sepsis.
机译:脓毒症过程中的血液流变学和微循环障碍的病理生理学-主要是在早期的几个小时-尚未在所有细节中阐明。在麻醉的猪中,以不断增加的浓度静脉内施用大肠杆菌(ATCC 25922株),观察动物8小时。干预之前,每2小时采集一次动脉(空心股动脉)和静脉(空心颈外静脉)血样进行血液流变学实验室检查:血液和血浆粘度,ESR,白细胞抗沉淀率,红细胞变形能力(与osmoscan一起使用)参数)和红细胞聚集(使用光透射和激光反向散射方法)对照动物在8个小时的麻醉中保持稳定,而败血性动物在暴发性败血症中在第6个小时死亡。在实验期间,在该猪模型中可以很好地检测到红细胞变形能力受损的趋势(以及渗透梯度流式细胞仪参数)和有争议的红细胞聚集值下降(所有聚集指数值下降,t(1/2)延长)的趋势。在暴发性败血症的早期(4-6)。这些细菌对红细胞微流变学参数的体外影响相似:降低红细胞的可变形性并降低聚集。需要进一步的研究来阐明菌血症和发展中的败血症的早期微流变学变化。

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