植物提取物负荷和氧化应激背景下大鼠肝组织和血浆中免疫机制的研究

O. Pavlova, O. Gulenko, D. Gromova, E. Kuzina
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According to group affiliation animals received aqueous extracts of common and blackberry in a dose of 50 mg/100g of animal weight, 1.5 ml daily for 30 days, and animals of the control group received distilled water in the same regime. Starting from 30 days of the experiment, rats were injected with tetrachloromethane oil solution at a dose of 2 g/kg of animal weight in parallel with the administration of plant extracts for 6 days. On the 37th day of the experiment, blood was taken from the animals and then killed according to ethical standards. Histological preparations were made from liver tissues and the number of sinusoidal cells was counted. The content of cytokines in rat liver homogenates and blood plasma was determined by enzyme-linked immunosorbent assay using a Lazurite Automated ELISA System.Results. 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引用次数: 0

摘要

肝胆系统的病变在整个疾病结构中占有重要地位。肝脏在受到毒性损害时发生的形态变化是以肝细胞的细胞溶解为基础的。接触四氯甲烷导致的代谢紊乱可能会改变免疫系统细胞产生的抗炎和消炎细胞因子。我们研究的目的是在大鼠肝脏组织中加入黑莓和锯蝇的水提取物并诱导氧化应激的背景下,研究大鼠肝脏组织的修复过程和免疫机制。实验中使用了 120 只大鼠。按照组别,动物接受普通和黑莓水提取物,剂量为 50 毫克/100 克体重,每天 1.5 毫升,连续 30 天;对照组动物接受蒸馏水,剂量相同。从实验的第 30 天开始,在给大鼠注射植物提取物的同时,以每公斤体重 2 克的剂量给大鼠注射四氯甲烷油溶液,共注射 6 天。在实验的第 37 天,对动物进行采血,然后按照伦理标准将其处死。对肝组织进行组织学制备,并计算窦状细胞的数量。大鼠肝脏匀浆和血浆中细胞因子的含量通过酶联免疫吸附测定法(使用 Lazurite 自动 ELISA 系统)进行测定。在血浆氧化应激的情况下,促炎细胞因子 TNFα 的产生增加,IL-10 的产生受到抑制,而促炎细胞因子 IL-6 和 IL-18 的浓度变化不大。与此同时,在肝组织出现弥漫性毒性肝损伤和氧化应激时,细胞因子 IL-1α、IL-18、TNFα、IL-10 的浓度会升高,而 IL-6、IFNγ、TGF-β 的浓度会降低。肝组织中 IL-1α 和 IL-18 的分泌增加似乎会通过提高 TNFα、IL-6 等细胞因子的水平引发局部炎症。抗炎细胞因子 IL-10 浓度的增加证实了这种介质在调节免疫反应中的关键作用及其抑制促炎细胞因子 TNFα 和 IL-6 分泌的能力。结论冷杉和黑莓的水提取物在不同程度上调节了四氯甲烷毒性暴露早期窦状细胞的功能状态,这有助于炎症过程的早期缓解。将冷杉和黑莓的水提取物暴露于窦状细胞会改变调节因子的产生,从而补偿毒性暴露后恢复过程的速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of immune mechanisms in liver tissues and blood plasma of rats against the background of loading with plant extracts and induced oxidative stress
Pathologies of the hepatobiliary system occupy a significant share in the total structure of diseases. Morphological changes that develop in the liver during its toxic damage are based on cytolysis of hepatocytes. Metabolic disorders arising from exposure to tetrachloromethane may alter the production of anti-inflammatory and anti-inflammatory cytokines by cells of the immune system. The aim of our study was to investigate reparative processes and immune mechanisms in rat liver tissues against the background of loading with aqueous extracts of blackberry and common sawfly and induced oxidative stress.Materials and methods. 120 rats were used in the experiment. According to group affiliation animals received aqueous extracts of common and blackberry in a dose of 50 mg/100g of animal weight, 1.5 ml daily for 30 days, and animals of the control group received distilled water in the same regime. Starting from 30 days of the experiment, rats were injected with tetrachloromethane oil solution at a dose of 2 g/kg of animal weight in parallel with the administration of plant extracts for 6 days. On the 37th day of the experiment, blood was taken from the animals and then killed according to ethical standards. Histological preparations were made from liver tissues and the number of sinusoidal cells was counted. The content of cytokines in rat liver homogenates and blood plasma was determined by enzyme-linked immunosorbent assay using a Lazurite Automated ELISA System.Results. In case of oxidative stress in blood plasma there is an increased production of proinflammatory cytokine TNFα and suppression of IL-10 production, while the concentration of proinflammatory cytokines IL-6 and IL-18 does not change significantly. At the same time, in response to diffuse toxic liver damage and oxidative stress in liver tissues there is an increase in the concentration of cytokines IL- 1α, IL-18, TNFα, IL-10 and a decrease in the concentration of IL-6, IFNγ, TGF-β. Increased production of IL-1α and IL-18 in liver tissues seems to trigger local inflammation by increasing the levels of cytokines such as TNFα, IL-6. The increased concentration of anti-inflammatory cytokine IL-10 confirms the key role of this mediator in the regulation of immune response and its ability to suppress the secretion of pro-inflammatory cytokines TNFα and IL-6. Conclusion. The aqueous extracts of fir and blackberry modulate to different degrees the functional state of sinusoidal cells in the early periods of toxic exposure to tetrachloromethane, which contributes to the early resolution of the inflammatory process. Exposure of aqueous extracts of fir and blackberry to sinusoidal cells changes the production of regulatory factors, which compensates the speed of recovery processes after toxic exposure.
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