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Hyperbaric oxygen treatment reduced the lung injury of type II decompression sickness

机译:高压氧治疗减轻了II型减压病的肺损伤

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摘要

Objective: To detect the ultrastructural changes in rabbits with type II decompression sickness (DCS), and study the therapeutic effects of hyperbaric oxygen (HBO). Methods: Twenty-seven male New Zealand rabbits were randomly divided equally into the DCS group, HBO treatment group and control group. Experimental models of each group were prepared. Lung apex tissues were harvested to prepare paraffin- and EPON812-embedded tissues. Results: In the DCS group, macroscopic and histological examination revealed severe and rapid damage to lung tissue. Ultrastructural examination revealed exudation of red blood cells in the alveolar space. Type I alveolar epithelial cells exhibited retracted cell processes and swollen mitochondria, and type II cells showed highly swollen mitochondria and decrease in cytoplasmic lamellar bodies. Dilatation and congestion of capillary vessels were accompanied by swelling of endothelial cells and incomplete basement membrane. In the HBO treatment group, the findings were somewhat similar to those in the DCS group, but the extent of damage was lesser. Only a small amount of tiny bubbles could be seen in the blood vessels. Type I alveolar epithelia cells and endothelial cells of the capillaries illustrated slight shortening of cells, swollen cytoplasm and decreased cell processes. Type II alveolar epithelial cells showed slight swelling of the mitochondria, decreased vacuolar degeneration of lamellar bodies, and increase in the number of free ribosomes. Conclusions: Our microscopic and ultrastructural findings confirm that the lung is an important organ affected by DCS. We also confirmed that HBO can alleviate DCS-induced pulmonary damage.
机译:目的:检测家兔II型减压病(DCS)的超微结构变化,并研究高压氧(HBO)的治疗作用。方法:将27只雄性新西兰兔随机分为DCS组,HBO治疗组和对照组。准备每组的实验模型。收获肺尖组织以制备石蜡和EPON812包埋的组织。结果:在DCS组中,肉眼观察和组织学检查发现肺组织受到了严重而迅速的损害。超微结构检查发现肺泡腔内有红细胞渗出。 I型肺泡上皮细胞表现出缩回的细胞过程和线粒体肿胀,而II型细胞则表现出高度的线粒体肿胀并且胞质层状体减少。毛细血管扩张充血,伴有内皮细胞肿胀和基底膜不完整。在HBO治疗组中,发现与DCS组中的发现有些相似,但损害程度较小。在血管中只能看到少量的微小气泡。 I型肺泡上皮细胞和毛细血管内皮细胞显示细胞略微缩短,细胞质肿胀和细胞进程减少。 II型肺泡上皮细胞显示线粒体轻度肿胀,层状体空泡变性降低,游离核糖体数量增加。结论:我们的显微和超微结构发现证实,肺是受DCS影响的重要器官。我们还证实,HBO可以减轻DCS引起的肺损伤。

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