Evaluation of HIF1A Expression Level and Parenchymal-Stromal Relationships after Traumatic Air Shock Wave Exposure to the Liver

S. V. Kozlov, M. A. Korzachenko
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Abstract

The purpose of the study was to investigate, analyze and evaluate the expression level of HIF1A and parenchymal-stromal relations after traumatic air shock wave exposure to the liver. Materials and methods. The material for the study was the liver of 30 male rats, weighing 177.5 ± 15.8 g. All animals were randomly divided into three groups: group 1 consisted of intact rats (n - 6), group 2 – control (halothane anesthesia with fixation) (n - 12), group 3 (n - 12) – experimental animals (halothane anesthesia with fixation, traumatic single action of an air shock wave with an excess pressure of 31.6 ± 4.8, which was generated in the device developed by us). In order to study the reactive changes in the liver after exposure to an air shock wave, an immunohistochemical method was used to study the expression of the hypoxia marker HIF1A and a morphometric analysis of parenchymal-stromal relations on the 7th and 30th day of the experiment. Results and discussion. The studied expression of the transcription factor HIF1A in the liver after exposure to an air shock wave by the immunohistochemical method showed a relationship with the consequences that occur after the injury (alteration, inflammation, regeneration), as well as with the observation period and distribution in the liver parenchyma. Despite the diffuse injury of the liver, which occurs after a low-intensity exposure to an air shock wave, we record a high threshold of resistance of liver cells to the action of this traumatic factor. The absence of HIF1A expression in the liver one month after exposure to an air shock wave is a direct indication of the restoration of the functioning of specialized liver cells, despite the initial significant diffuse changes at the level of the microcirculatory channel of the liver lobules. Research has repeatedly shown the high regenerative potential of the liver, despite the factors of influence, toxic, mechanical, and others. Understanding the spatial response of liver cells to external and internal factors will allow us to assess the adaptive capabilities of the metabolism of hepatocytes that are in different conditions of blood supply, which will expand our knowledge about the pathogenesis of the post-traumatic period and offer new therapeutic tools for their correction. Conclusion. Morphometric analysis of parenchymal-stromal relations of the liver after a single exposure to an air shock wave showed a significant decrease in the area of hepatocytes by 8% and a significant increase in the area of connective tissue by almost 2.4 times on the 30th day of the post-traumatic period in comparison with the control group of animals. Evaluation of the level of expression of the transcription factor HIF1A in the liver at the stages of the post-traumatic period showed that moderate expression was characteristic of the subcapsular area of the liver in the early post-traumatic period. On the 30th day of the post-traumatic period, the accumulation of the HIF1A marker in the liver of the experimental group of animals was not statistically significant compared to the control group
肝脏创伤性空气冲击波暴露后HIF1A表达水平及实质-间质关系的评价
本研究旨在探讨、分析和评价空气冲击波对肝脏创伤性损伤后HIF1A的表达水平及实质-间质关系。材料和方法。研究材料为30只雄性大鼠肝脏,体重为177.5±15.8 g。所有动物随机分为三组:1组为完整大鼠(n - 6), 2组为对照组(氟烷麻醉固定)(n - 12), 3组(n - 12)为实验动物(氟烷麻醉固定,在我们研制的装置中产生的超压31.6±4.8的空气冲击波的创伤性单作用)。为了研究空气冲击波暴露后肝脏的反应性变化,在实验第7天和第30天采用免疫组织化学方法研究缺氧标志物HIF1A的表达和实质-间质关系的形态计量学分析。结果和讨论。利用免疫组织化学方法研究空气冲击波暴露后肝脏中转录因子HIF1A的表达与损伤后的后果(改变、炎症、再生)以及肝实质的观察时间和分布有关。尽管肝脏的弥漫性损伤发生在低强度空气冲击波暴露后,但我们记录到肝细胞对这种创伤因素的抵抗的高阈值。暴露于空气冲击波一个月后肝脏中HIF1A表达的缺失直接表明特化肝细胞功能的恢复,尽管最初在肝小叶微循环通道水平上发生了显著的弥漫性变化。研究一再表明,肝脏具有很高的再生潜力,尽管有影响因素、毒性因素、机械因素和其他因素。了解肝细胞对外部和内部因素的空间反应将使我们能够评估不同血供条件下肝细胞代谢的适应能力,这将扩大我们对创伤后发病机制的认识,并为其纠正提供新的治疗工具。结论。单次空气冲击波暴露后肝脏实质-间质关系的形态计量学分析显示,与对照组相比,创伤后第30天肝细胞面积显著减少8%,结缔组织面积显著增加近2.4倍。对创伤后肝脏中转录因子HIF1A表达水平的评估显示,创伤后早期肝脏包膜下区具有中度表达的特征。创伤后第30天,实验组动物肝脏中HIF1A标记物的积累量与对照组相比无统计学意义
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