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首页> 外文期刊>Journal of Immunological Methods >Functional assessment of mouse complement pathway activities. and quantification of C3b/C3c/iC3b in an experimental model of mouse renal ischaemia/reperfusion injury
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Functional assessment of mouse complement pathway activities. and quantification of C3b/C3c/iC3b in an experimental model of mouse renal ischaemia/reperfusion injury

机译:小鼠补体途径活性的功能评估。小鼠肾脏缺血/再灌注损伤实验模型中C3b / C3c / iC3b的合成和定量

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The complement system is an essential component of our innate immunity, both for the protection against infections and for proper handling of dying cells. However, the complement system can also contribute to tissue injury and inflammatory responses. In view of novel therapeutic possibilities, there is an increasing interest in measurement of the complement system activation in the systemic compartment, both in the clinical setting as well as in experimental models. Here we describe in parallel a sensitive and specific sandwich ELISA detecting mouse C3 activation fragments C3b/C3c/iC3b, as well as functional complement ELISAs detecting specific activities of the three complement pathways at the level of C3 and at the level of C9 activation. In a murine model of renal ischaemia/reperfusion injury (IRI) we found transient complement activation as shown by generation of C3b/C3c/iC3b fragments at 24 h following reperfusion, which returned to base-line at 3 and 7 days post reperfusion. When the pathway specific complement activities were measured at the level of C3 activation, we found no significant reduction in any of the pathways. However, the functional complement activity of all three pathways was significantly reduced when measured at the level of C9, with the strongest reduction being observed in the alternative pathway. For all three pathways there was a strong correlation between the amount of C3 fragments and the reduction in functional complement activity. Moreover, at 24 h both C3 fragments and the functional complement activities showed a correlation with the rise in serum creatinine. Together our results show that determination of the systemic pathway specific complement activity is feasible in experimental mouse models and that they are useful in Understanding complement activation and inhibition in vivo. (C) 2015 Elsevier B.V. All rights reserved.
机译:补体系统是我们固有免疫力的重要组成部分,既可以防止感染,也可以正确处理垂死的细胞。但是,补体系统也可能导致组织损伤和炎症反应。鉴于新的治疗可能性,在临床环境和实验模型中,对在系统性区室中补体系统激活的测量的兴趣日益增加。在这里,我们并行描述了检测小鼠C3激活片段C3b / C3c / iC3b的灵敏且特异性的夹心ELISA,以及在C3水平和C9激活水平检测三种补体途径的特定活性的功能性补体ELISA。在小鼠肾脏缺血/再灌注损伤(IRI)模型中,我们发现瞬时补体激活,如再灌注后24小时产生C3b / C3c / iC3b片段所示,再灌注后3天和7天恢复到基线。当在C3激活水平测量途径特异性补体活性时,我们发现任何途径均无明显减少。但是,在C9水平上测量时,所有三个途径的功能补体活性均显着降低,其中在替代途径中观察到的降低幅度最大。对于所有三个途径,C3片段的数量与功能性补体活性的降低之间都具有很强的相关性。此外,在24小时时,C3片段和功能补体活性均与血清肌酐的升高相关。我们的研究结果共同表明,在实验小鼠模型中确定全身途径特异性补体活性是可行的,并且它们可用于了解体内补体激活和抑制。 (C)2015 Elsevier B.V.保留所有权利。

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