间歇性短时间再充氧可减弱心脏对缺氧反应的变化:组织学、超微结构和氧化/抗氧化参数

IF 2.7 4区 医学 Q2 MEDICAL LABORATORY TECHNOLOGY
Ayed A Shati, Mohamed Samir A Zaki, Youssef A Alqahtani, Mohamed A Haidara, Mohammed A Alshehri, Amal F Dawood, Refaat A Eid
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引用次数: 0

摘要

背景:间歇性短时间再氧合可减轻缺氧时心脏的变化。目的:观察间歇性短时间再氧合对心肌缺氧损伤的保护作用。材料与方法:以18只白化大鼠为实验对象。大鼠分为:(缺氧);暴露于室内空气中的大鼠作为对照,第二(缺氧)组;将大鼠置于405mmhg的低压舱中模拟5000 m的缺氧,第三次(间歇性短时间再充氧);老鼠每天三次暴露在室内空气中。实验时间均为14天。结果:缺氧增强氧化应激生物标志物丙二醛,降低抗氧化超氧化物歧化酶。缺氧心肌组织肿瘤坏死因子(TNF-α)和白细胞介素-6 (IL-6)水平升高。缺氧大鼠心肌原纤维组织学表现为肌纤维紊乱,肌浆空泡化,细胞核固缩,细胞间隙扩大。心肌细胞超微结构分析显示心室心肌细胞有退行性缺损。肌原纤维变薄和退行性线粒体改变影响筋膜粘附、桥粒和间隙连接的间插椎间盘。间歇性短时间再充氧可改善缺氧时心脏组织、超微结构和氧化/抗氧化参数的变化。结论:缺氧对心肌结构、氧化应激和促炎细胞因子均有显著影响。间歇性短时间再充氧可显著降低缺氧引起的心脏变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Intermittent Short-Duration Re-oxygenation Attenuates Cardiac Changes in Response to Hypoxia: Histological, Ultrastructural and Oxidant/Antioxidant Parameters.

Intermittent Short-Duration Re-oxygenation Attenuates Cardiac Changes in Response to Hypoxia: Histological, Ultrastructural and Oxidant/Antioxidant Parameters.

Intermittent Short-Duration Re-oxygenation Attenuates Cardiac Changes in Response to Hypoxia: Histological, Ultrastructural and Oxidant/Antioxidant Parameters.

Intermittent Short-Duration Re-oxygenation Attenuates Cardiac Changes in Response to Hypoxia: Histological, Ultrastructural and Oxidant/Antioxidant Parameters.

Context: Intermittent short-duration re-oxygenation attenuates cardiac changes in response to hypoxia. Objective: To see if intermittent short-duration re-oxygenation may protect the heart muscle from hypoxia damage. Materials and Methods: Eighteen albino rats were used to carry out the study. Rats divided into: (normoxia); rats exposed to room air as a control, second (hypoxic) group; rats subjected to a pressure of 405 mmHg in a hypobaric chamber to simulate hypoxia at 5,000 m, and third (intermittent short-duration re-oxygenation); rats exposed to room air three times per day. Experiments were all 14 days long. Results: Hypoxia enhanced the oxidative stress biomarker malondialdehyde while lowering the antioxidant superoxide dismutase . The levels of tumour necrosis factor (TNF-α) and interleukin-6 (IL-6) in the myocardium were elevated in hypoxic hearts. The hypoxic rats' cardiac myofibrils showed disarray of muscle fibres, vacuolation of the sarcoplasm, pyknosis of the nucleus, and expansion of intercellular gaps on histological examination. In addition, cardiomyocytes showed degenerative defects in ventricular myocardial cells on ultrastructural analysis. Myofibril thinning and degenerative mitochondrial changes affected intercalated discs with fascia adherent, desmosomes, and gap junction. Intermittent short-duration re-oxygenation improve cardiac histological, ultrastructural and oxidant/antioxidant parameters changes during hypoxia. Conclusion: Hypoxia showed a substantial impact on myocardial architecture, as well as increased oxidative stress and pro-inflammatory cytokines. Intermittent short-duration re-oxygenation significantly decreases hypoxia-induced cardiac changes.

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来源期刊
British Journal of Biomedical Science
British Journal of Biomedical Science 医学-医学实验技术
CiteScore
4.40
自引率
15.80%
发文量
29
审稿时长
>12 weeks
期刊介绍: The British Journal of Biomedical Science is committed to publishing high quality original research that represents a clear advance in the practice of biomedical science, and reviews that summarise recent advances in the field of biomedical science. The overall aim of the Journal is to provide a platform for the dissemination of new and innovative information on the diagnosis and management of disease that is valuable to the practicing laboratory scientist.
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