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Investigation into Effect of Thrombomodulin Alfa for Septic Model Rats based on Microcirculation Image Analysis

机译:基于微循环图像分析的血栓调节素α对脓毒症模型大鼠的作用研究

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Sepsis is life threatening organ dysfunction caused by microcirculatory dysfunction. With progression of sepsis, the patients are likely to develop septic shock which is associated with multi organ dysfunction. To treat sepsis and septic shock, Thrombomodulin alfa (TM alfa) was developed. Direct observation of the microcirculation may provide new and rich information in terms of the effect of TM alfa on sepsis. Thus we conducted rodent experiments in which we observed the microcirculation with a non-contact optical imaging setup and measured lactate value from collected blood. From the acquired motion pictures, we estimated the blood velocity. As a result, from experiments, the sham rats showed no significant change in both lactate value and the blood velocity during the observation. On the other hand, lactate value of the septic model rats increased and the blood velocity of them decreased. Lactate value of the septic model rats treated with TM alfa decreased after showing an increase while the blood velocity of them increased after showing a decrease. These findings suggest that microcirculatory alteration may be a sign of sepsis as well as septic shock progression and that the TM alfa may be effective for the treatment of sepsis and septic shock.
机译:败血症是由微循环功能障碍引起的危及生命的器官功能障碍。随着脓毒症的进展,患者可能发展出败血症性休克,这与多器官功能障碍有关。为了治疗败血症和败血性休克,开发了血栓调节素α(TM alfa)。就TM alfa对败血症的影响而言,直接观察微循环可提供新的丰富信息。因此,我们进行了啮齿动物实验,其中我们使用非接触式光学成像装置观察了微循环,并从采集的血液中测量了乳酸值。从获得的电影中,我们估计了血流速度。结果,根据实验,在观察过程中,假大鼠的乳酸值和血流速度均无明显变化。另一方面,败血模型大鼠的乳酸值增加而它们的血流速度降低。用TM alfa处理的败血模型大鼠的乳酸值显示出升高后降低,而其血流速度显示出降低后升高。这些发现表明,微循环改变可能是败血症和败血性休克进展的标志,并且TMα可以有效治疗败血症和败血性休克。

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