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首页> 外文期刊>International immunopharmacology >A systematic investigation on animal models of cyclosporine A combined with Escherichia coli to simulate the immunosuppressive status of sepsis patients before onset
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A systematic investigation on animal models of cyclosporine A combined with Escherichia coli to simulate the immunosuppressive status of sepsis patients before onset

机译:系孢子素A组合与大肠杆菌动物模型的系统研究,模拟脓毒症患者免疫抑制状态

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摘要

Immunosuppression is an important mechanism for the development of sepsis pathology, and is the key to the high mortality of sepsis. However, patients appear to be immunocompromised before sepsis onset due to lack of enough attention. Present sepsis models cannot fully mimic the onset of sepsis in patients. Hence, effective treatments in animal experiments could not be transformed into clinical application. In the present study, we improved the animal model of sepsis and used cyclosporine A immunosuppressive mice to make it closer to immune status before the onset of sepsis, followed by the intraperitoneal injection ofEscherichia coli(E.coli) CMCC (B) 44,102 standard strain to produce the immunocompromised sepsis model. This trial systematically evaluates the new immunosuppressive sepsis model. Compared with routine sepsis models, the release of inflammatory factors in the new sepsis model was insufficient, blood bacteria were more cultured, diffuse intravascular coagulation (DIC) was more severe, lung, liver and kidney damage were heavier, and mortality rate was higher. In conclusion, the new sepsis model can mimic the patient's pre-onset immunocompromised state, is suitable for the development and evaluation of new methods of sepsis, and solves the controversy of sepsis treatment, providing new ideas and direction.
机译:免疫抑制是脓毒症病理学发展的重要机制,是败血症高死亡率的关键。然而,由于缺乏足够的重视,患者似乎在败血症发作之前均为免疫引起的。目前SEPSIS模型不能完全模仿患者的败血症发病。因此,动物实验中的有效治疗不能转化为临床应用。在本研究中,我们改善了败血症的动物模型,并使用了患有免疫抑制小鼠的动物模型,使其在败血症发作前更接近免疫状态,然后是腹腔注射肠杆菌(E.coli)CMCC(B)44,102标准菌株产生免疫功能性的败血症模型。该试验系统地评估了新的免疫抑制败血症模型。与常规败血症模型相比,新脓毒症模型中炎症因素的释放不足,血细菌更加培养,弥漫性血管内凝血(DIC)更严重,肺,肝和肾损害更重,死亡率较高。总之,新的败血症模型可以模仿患者的预发病预态,适用于对败血症新方法的开发和评估,并解决了败血症治疗的争议,提供了新的思路和方向。

著录项

  • 来源
    《International immunopharmacology》 |2018年第2018期|共10页
  • 作者单位

    Graduate School of Tianjin University of Traditional Chinese Medicine;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Brain Hospital of Cangzhou Central Hospital;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Affiliated Hospital of Logistics University of Chinese People's Armed Police Forces;

    Graduate School of Jinzhou Medical University;

    Affiliated Hospital of Logistics University of Chinese People's Armed Police Forces;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Affiliated Hospital of Logistics University of Chinese People's Armed Police Forces;

    Science and Technology Experiment Center of Cangzhou Medical College;

    Science and Technology Experiment Center of Cangzhou Medical College;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

    Immunosuppressive; Sepsis; Animal model; Cyclosporine A; Escherichia coli;

    机译:免疫抑制;败血症;动物模型;环孢素A;大肠杆菌;

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