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Mechanisms of action of intravenous immunoglobulin in septic encephalopathy

机译:静脉内免疫球蛋白在脓毒症脑病中的作用机制

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Acute brain dysfunction associated with sepsis is a serious complication that results in morbidity and mortality. Intravenous immunoglobulin (IVIg) treatment is known to alleviate behavioral deficits in the experimentally induced model of sepsis. To delineate the mechanisms by which IVIg treatment prevents neuronal dysfunction, an array of immunological and apoptosis markers was investigated. Our results suggest that IVIgG and IgGAM administration ameliorates neuronal dysfunction and behavioral deficits by reducing apoptotic cell death and glial cell proliferation. IgGAM treatment might suppress classical complement pathway by reducing C5a activity and proapoptotic NF-κB and Bax expressions, thereby, inhibiting major inflammation and apoptosis cascades. Future animal model experiments performed with specific C5aR and NF-κB agonists/antagonists or C5aR-deficient mice might more robustly disclose the significance of these pathways. C5a, C5aR, and NF-κB, which were shown to be the key molecules in brain injury pathogenesis in sepsis, might also be utilized as potential targets for future treatment trials of septic encephalopathy.
机译:与败血症相关的急性脑功能障碍是一种严重的并发症,导致发病率和死亡率。已知静脉内免疫球蛋白(IVIG)治疗可缓解实验诱导的败血症模型中的行为缺陷。为了描绘IVIG治疗可防止神经元功能障碍的机制,研究了一种免疫和凋亡标志物。我们的研究结果表明,IVIGG和IGGAM给药通过减少凋亡细胞死亡和胶质细胞增殖来改善神经元功能障碍和行为缺陷。通过减少C5A活性和促凋亡NF-κB和BAX表达,抑制主要炎症和凋亡级联来抑制经典补体途径。用特异性C5AR和NF-κB激动剂/拮抗剂或C5AR缺陷小鼠进行的未来动物模型实验可能更加强大地公开了这些途径的重要性。被证明是败血症中脑损伤发病机制的关键分子的C5A,C5AR和NF-κB,也可以作为脓毒症脑病的未来治疗试验的潜在目标。

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