烧伤后动力学的免疫反应性特征

A. K. Azhikova, A. Yasenyavskaya, M. Samotrueva
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引用次数: 0

摘要

的相关性。迄今为止,烧伤仍然是一种复杂类型的皮肤组织损伤。除了局部破坏和营养不良现象外,还观察到全身的变化。本研究的目的是对非线性大鼠在接触性热创伤形成的“烧伤”应激条件下机体的免疫反应性进行实验研究。材料与方法。研究对象为平均体重220克的非线性雄性大鼠。实验动物免疫系统的功能活性根据评估免疫系统适应性的标准试验进行评估。结果和讨论。实验研究发现,在实验动物烧伤动力学过程中,机体免疫反应性在免疫的细胞和体液环节水平上发生了可变变化,表现为WGST指数下降,抗体滴度、吞噬指数(FI)、吞噬数(FF)、白细胞系数和白细胞数升高。棒状核形态含量的增加表明粒细胞生成的激活,这决定了中性粒细胞的核向左移。在这些变化的同时,免疫器官(胸腺和脾脏)的质量也在减少,这可以解释为在热烧伤背景下中毒引起的意外退化。结论。在“烧伤”应激条件下,在不同的观察时间,某些环节被激活而另一些环节被抑制,从而出现免疫失衡。因此,在烧伤过程中,发生在机体水平的全身免疫变化具有多向动态特征,这表明免疫系统的适应能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immune reactivity features in post-burn dynamics
Relevance. To date, burn injury remains a complex type of damage to skin tissues. Along with local destructive and dystrophic phenomena, systemic changes in the body are observed. The aim of the study was the experimental study of the immune reactivity of the body of nonlinear rats under conditions of “burn” stress formed as a result of contact thermal trauma. Materials and Methods. The study was carried out on non-linear male rats with an average mass of 220 gr. The functional activity of the immune system of laboratory animals was evaluated on the basis of standard tests assessing the adaptability of the immune system. Results and Discussion. In an experimental study, it was found that in the dynamics of burn injury in laboratory animals, variable changes in the body’s immune reactivity were observed at the level of the cellular and humoral links of immunity, which was manifested by a decrease in the WGST index and an increase in the following indicators - antibody titer, phagocytic index (FI), phagocytic number (FF), leukocytic coefficient and number of leukocytes. The increased content of stick-n uclear forms indicated the activation of granulocytopoiesis, which determined the deregenerative nuclear shift of neutrophil granulocytes to the left. Along with these changes, a decrease in the mass of immune organs (thymus and spleen) was observed, which can be explained by the expression of accidental involution caused by intoxication against the background of a thermal burn. Conclusion. Under conditions of “burn” stress, an immune imbalance occurs in the form of activation of some and suppression of other links at different observation times. Thus, during the burn process, systemic immune changes taking place at the body level have a multi-d irectional dynamic character, which indicates the adaptive capabilities of the immune system.
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CiteScore
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