Protective effect of sub-hypothermic mechanical perfusion combined with membrane lung oxygenation on a yorkshire model of brain injury after traumatic blood loss.

IF 1.8 4区 医学 Q2 ORTHOPEDICS Chinese Journal of Traumatology Pub Date : 2024-12-22 DOI:10.1016/j.cjtee.2024.10.003
Xiang-Yu Song, Yang-Hui Dong, Zhi-Bo Jia, Lei-Jia Chen, Meng-Yi Cui, Yan-Jun Guan, Bo-Yao Yang, Si-Ce Wang, Sheng-Feng Chen, Peng-Kai Li, Heng Chen, Hao-Chen Zuo, Zhan-Cheng Yang, Wen-Jing Xu, Ya-Qun Zhao, Jiang Peng
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Abstract

Purpose: To investigate the protective effect of sub-hypothermic mechanical perfusion combined with membrane lung oxygenation on ischemic hypoxic injury of yorkshire brain tissue caused by traumatic blood loss.

Methods: This article performed a random controlled trial. Brain tissue of 7 yorkshire was selected and divided into the sub-low temperature anterograde machine perfusion group (n = 4) and the blank control group (n = 3) using the random number table method. A yorkshire model of brain tissue injury induced by traumatic blood loss was established. Firstly, the perfusion temperature and blood oxygen saturation were monitored in real-time during the perfusion process. The number of red blood cells, hemoglobin content, NA+, K+, and Ca2+ ions concentrations and pH of the perfusate were detected. Following perfusion, we specifically examined the parietal lobe to assess its water content. The prefrontal cortex and hippocampus were then dissected for histological evaluation, allowing us to investigate potential regional differences in tissue injury. The blank control group was sampled directly before perfusion. All statistical analyses and graphs were performed using GraphPad Prism 8.0 Student t-test. All tests were two-sided, and p value of less than 0.05 was considered to indicate statistical significance.

Results: The contents of red blood cells and hemoglobin during perfusion were maintained at normal levels but more red blood cells were destroyed 3 h after the perfusion. The blood oxygen saturation of the perfusion group was maintained at 95% - 98%. NA+ and K+ concentrations were normal most of the time during perfusion but increased significantly at about 4 h. The Ca2+ concentration remained within the normal range at each period. Glucose levels were slightly higher than the baseline level. The pH of the perfusion solution was slightly lower at the beginning of perfusion, and then gradually increased to the normal level. The water content of brain tissue in the sub-low and docile perfusion group was 78.95% ± 0.39%, which was significantly higher than that in the control group (75.27% ± 0.55%, t = 10.49, p < 0.001), and the difference was statistically significant. Compared with the blank control group, the structure and morphology of pyramidal neurons in the Prefrontal cortex and CA1 region of the hippocampal gyrus were similar, and their integrity was better. The structural integrity of granulosa neurons was destroyed and cell edema increased in the perfusion group compared with the blank control group. Immunofluorescence staining for glail fibrillary acidic protein and Iba1, markers of glial cells, revealed well-preserved cell structures in the perfusion group. While there were indications of abnormal cellular activity, the analysis showed no significant difference in axon thickness or integrity compared to the 1-h blank control group.

Conclusions: Mild hypothermic machine perfusion can improve ischemia and hypoxia injury of yorkshire brain tissue caused by traumatic blood loss and delay the necrosis and apoptosis of yorkshire brain tissue by continuous oxygen supply, maintaining ion homeostasis and reducing tissue metabolism level.

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亚低温机械灌注联合膜肺氧合对创伤性失血脑损伤约克郡模型的保护作用。
目的:探讨亚低温机械灌注联合膜肺氧合对外伤性失血所致约克郡脑组织缺血性缺氧损伤的保护作用。方法:采用随机对照试验。选取7只大约克羊脑组织,采用随机数字表法分为亚低温顺行机灌注组(n = 4)和空白对照组(n = 3)。建立外伤性失血致脑组织损伤约克郡模型。首先,实时监测灌注过程中的灌注温度和血氧饱和度。检测灌注液红细胞数量、血红蛋白含量、NA+、K+、Ca2+离子浓度及pH值。灌注后,我们专门检查顶叶以评估其含水量。然后解剖前额叶皮层和海马体进行组织学评估,使我们能够研究组织损伤的潜在区域差异。空白对照组在灌注前直接取样。所有统计分析和图表均采用GraphPad Prism 8.0学生t检验。所有检验均为双侧检验,p值小于0.05为有统计学意义。结果:灌注时红细胞和血红蛋白含量维持在正常水平,但灌注后3 h红细胞破坏较多。灌注组血氧饱和度维持在95% ~ 98%。NA+和K+浓度在灌注期间大部分时间正常,但在4 h左右显著升高。Ca2+浓度在各时期保持在正常范围内。血糖水平略高于基线水平。灌注液的pH值在灌注开始时略低,然后逐渐升高至正常水平。亚低温和温和灌注组脑组织含水量为78.95%±0.39%,显著高于对照组(75.27%±0.55%),t = 10.49, p结论:亚低温机灌注可通过持续供氧,维持离子稳态,降低组织代谢水平,改善外伤性失血引起的约克郡脑组织缺血缺氧损伤,延缓约克郡脑组织坏死和凋亡。
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来源期刊
CiteScore
3.80
自引率
4.80%
发文量
1707
审稿时长
28 weeks
期刊介绍: Chinese Journal of Traumatology (CJT, ISSN 1008-1275) was launched in 1998 and is a peer-reviewed English journal authorized by Chinese Association of Trauma, Chinese Medical Association. It is multidisciplinary and designed to provide the most current and relevant information for both the clinical and basic research in the field of traumatic medicine. CJT primarily publishes expert forums, original papers, case reports and so on. Topics cover trauma system and management, surgical procedures, acute care, rehabilitation, post-traumatic complications, translational medicine, traffic medicine and other related areas. The journal especially emphasizes clinical application, technique, surgical video, guideline, recommendations for more effective surgical approaches.
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