A MORPHOMETRIC ANALYSIS OF LUNG COMPONENTS IN WHITE RATS WITH HYPOXIA COMBINED WITH THE NATURAL GAS IMPACT

A. Protsko, T. Shishkina, L. Naumova, I. Y. Chikunova, E. A. Zadneprovskaya, Yu. V. Polina
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Abstract

The human respiratory system is daily exposed to various biotic and abiotic factors, and, first of all, there is damage to the cellular elements of the mucous membrane. Prolonged irritating effects are accompanied by inhibition of regenerative processes and subsequent morphofunctional restructuring of the structural components of the lungs. The aim of the study was to research the morphometric parameters of the structural components of the lungs of white laboratory rats at different periods of chronic simulated hypoxia combined with inhalation of natural gas from the Astrakhan field, at a concentration of 3 mg/m3. The study covered 94 white mongrel sexually mature male rats who were in conditions of chronic hypoxia combined with natural gas inhalation for 120 days. The animals were placed in a special seed chamber produced by the Erisman Institute with a volume of 200 liters with a variable composition of the air-gas mixture, and with a decrease in the oxygen concentration in the inhaled air to 17.5 %, natural gas from the Astrakhan field was supplied through a special nozzle. The animals were kept in experimental conditions lasting four hours a day for five days a week. For the manufacture of histological preparations, animals were anesthetized with sodium ethaminal (40 mg/kg weight). Lung tissue samples were fixed in a 10 % solution of buffered formalin. The preparations were stained with hematoxylineosin and Van Gison. The analysis and visualization of the obtained glass preparations was carried out using a ZeissAxioScopeA1 light microscope (Germany) and a LeicaAperioCS2 digital scanner of micropreparations with specialized software. It was determined that the initial significant changes were already formed by 60 days of experimental exposure. In one group of drugs, thickening of the interalveolar septa associated with the processes of edema formation and infiltration by cellular elements were noted, another group of drugs showed emphysemalike changes with stretched and partially torn alveoli. By day 90 of the experiment, a decrease in the airiness of the lung tissue was determined on all preparations, manifested by thickening of the interalveolar septa and a decrease in the diameter of the alveoli. By day 120, the changes identified in the early stages were progressively increasing: there were areas completely devoid of alveoli, other fields of vision showed alveoli with torn walls. On the part of the bronchi, the following pattern was determined: an increased thickness of the walls of the bronchi, mainly due to the mucous and adventitial membranes, followed by deformation of the bronchi of medium and small caliber and the formation of peribronchial infiltrates. The morphometric analysis confirmed that chronic hypoxia combined with natural gas inhalation causes significant changes in the structural components of the lungs.
缺氧和天然气影响下白鼠肺成分的形态分析
人的呼吸系统每天都会受到各种生物和非生物因素的影响,首先是粘膜的细胞成分受到损害。长期的刺激作用会抑制再生过程,进而导致肺部结构成分的形态功能重组。这项研究的目的是,在不同时期的慢性模拟缺氧状态下,同时吸入浓度为 3 毫克/立方米的阿斯特拉罕气田天然气,研究白色实验鼠肺部结构组件的形态参数。这项研究涉及 94 只白色杂种性成熟雄性大鼠,它们在慢性缺氧和吸入天然气的条件下生活了 120 天。这些动物被放置在埃里斯曼研究所生产的容积为 200 升、空气-气体混合物成分可变的特殊种子箱中,吸入空气中的氧气浓度降低到 17.5%,来自阿斯特拉罕气田的天然气通过一个特殊的喷嘴供应。动物在实验条件下饲养,每周五天,每天四小时。在制作组织学制剂时,使用乙胺嘧啶钠(40 毫克/千克体重)对动物进行麻醉。将肺组织样本固定在 10% 的缓冲福尔马林溶液中。用苏木精和范吉森对制备物进行染色。使用 ZeissAxioScopeA1 光显微镜(德国)和带有专用软件的 LeicaAperioCS2 微制片数字扫描仪对获得的玻璃制片进行分析和观察。实验结果表明,在实验接触 60 天后,已初步形成了明显的变化。在一组药物中,肺泡间质增厚与水肿形成和细胞浸润过程有关,另一组药物则显示出肺气肿样变化,肺泡被拉伸和部分撕裂。到实验的第 90 天,所有制剂的肺组织气度都有所下降,表现为肺泡间隔膜增厚和肺泡直径减小。到第 120 天时,早期发现的变化逐渐加剧:有些区域完全没有肺泡,其他视野中的肺泡壁破损。在支气管方面,确定了以下模式:支气管壁厚度增加,主要是由于粘膜和临近膜造成的,随后中、小口径支气管变形,支气管周围浸润形成。形态计量分析证实,长期缺氧加上吸入天然气会导致肺部结构成分发生显著变化。
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