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Creating Rat Model for Hypoxic Brain Damage in Neonates by Oxygen Deprivation

机译:通过缺氧建立新生儿缺氧性脑损伤的大鼠模型

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摘要

Current study explores the feasibility of using a non-surgical method of oxygen deprivation to create Hypoxic brain damage in neonatal rats for medical studies. 7-day-old Sprague Dowley (SD) rats were kept in a container with low oxygen level (8%) for 1.5h. A second group had bilateral cephalic artery ligation before the 1.5h-low oxygen treatment, a method similar to the popular Rice method, to expose the brain to both hypoxic and ischemic situations. Short term neural functions and brain water weights were evaluated 1 day after the hypoxic treatment. Brain pathology and histology were also examined at 1 day and 3 days after the hypoxic treatment. Both groups showed impaired neural functions and increased brain water weight compared to the controls. Histology studies also revealed injuries in the subcortex, hippocampus and lateral ventricle in the brains from both groups. There is no significant difference in the degree of brain damages observed in the two groups. Our work demonstrated that oxygen deprivation alone is sufficient to cause brain damages similar to those seen in Hypoxic-ischemic brain disease (HIBD). Because this method avoids the invasive surgical procedure and therefore reduces the stress and mortality of laboratory animals during the experiment, we recommend it to be the favorable method for creating rat models for HIBD studies.
机译:当前的研究探索了使用非手术剥夺氧气的方法对新生大鼠进行缺氧性脑损伤以进行医学研究的可行性。将7天大的Sprague Dowley(SD)大鼠放在低氧气含量(8%)的容器中1.5小时。第二组在1.5h低氧治疗之前进行双侧头颈动脉结扎,这类似于流行的Rice方法,使大脑暴露于缺氧和缺血情况。缺氧治疗后1天评估短期神经功能和脑水重量。低氧治疗后第1天和第3天也检查了脑病理学和组织学。与对照组相比,两组均显示出神经功能受损和脑水量增加。组织学研究还显示,两组大脑皮层下,海马和侧脑室均受到损伤。在两组中观察到的脑损伤程度没有显着差异。我们的工作表明,仅缺氧就足以引起脑损伤,与缺氧缺血性脑病(HIBD)相似。由于此方法避免了侵入性的外科手术,因此可以降低实验动物在实验过程中的压力和死亡率,因此我们建议将其作为创建HIBD研究大鼠模型的理想方法。

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