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Effects of hyperbaric oxygen combined with cattle encephalon glycoside and ignotin in treating patients with traumatic brain injury and its effect on the expression of HIF-1α and miR-210 |
CHEN Guiping LI Min TIAN Zhihua SHEN Jianbo CUI Jie DUAN Haifeng ZHANG Hao RU Xiaohong▲ |
Department of Neurosurgery, Jincheng People’s Hospital, Shanxi Province, Jincheng 048000, China |
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Abstract Objective To explore the effect of hyperbaric oxygen combined with cattle encephalon glycoside and ignotin in treating patients with traumatic brain injury and its effect on the expression of hypoxia inducible factor-1α (HIF-1α) and microRNA (miR-210). Methods A total of 110 patients with traumatic brain injury treated in Jincheng People’s Hospital of Shanxi Province from April 2018 to April 2020 were selected and divided into control group and observation group according to random number table method, with 55 cases in each group. Both groups were given conventional treatment, control group was treated with cattle encephalon glycoside and ignotin, and observation group was treated with hyperbaric oxygen combined with cattle encephalon glycoside and ignotin. Both groups were treated for 30 days. Glasgow coma scale (GCS) score, serum levels of neuron specific enolase (NSE), soluble factors associated suicide (sFas), HIF-1α, and miR-210 were compared between two groups before and after treatment. The incidence of secondary epilepsy was followed up for one and three months. Results A total of 102 patients were enrolled in this study, including 52 in the control group and 50 in the observation group. Thirty days after treatment, GCS scores of two groups were higher than those before treatment, and observation group was higher than control group (P < 0.05). Thirty days after treatment, serum levels of NSE, sFas, HIF-1α, and miR-210 of two groups were lower than those before treatment (P < 0.05), and observation group was lower than control group (P < 0.05). Three months after treatment, the incidence of secondary epilepsy in observation group was lower than that in control group (P < 0.05). Conclusion Hyperbaric oxygen combined with cattle encephalon glycoside and ignotin has a better clinical effect in the treatment of traumatic brain injury. It can significantly reduce nerve function injury, inhibit nerve cell apoptosis and regulate the expression of HIF-1α and miR-210, and can reduce the risk of short-term secondary epilepsy to a certain extent.
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Cite this article: |
CHEN Guiping LI Min TIAN Zhihua SHEN Jianbo CUI Jie DUAN Haifeng ZHANG Hao RU Xiaohong▲. Effects of hyperbaric oxygen combined with cattle encephalon glycoside and ignotin in treating patients with traumatic brain injury and its effect on the expression of HIF-1α and miR-210[J]. 中国医药导报, 2022, 19(20): 66-69,91.
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URL: |
https://www.yiyaodaobao.com.cn/EN/ OR https://www.yiyaodaobao.com.cn/EN/Y2022/V19/I20/66 |
[1] 王忠诚.王忠诚神经外科学[M].武汉:湖北科学技术出版社,2005:336-337.
[2] 洪明,赵蕾蕾,陈国金.血清HMGB1、IGF-1、ficolin-3在重症颅脑损伤患者中的表达及预后价值[J].分子诊断与治疗杂志,2020,12(1):93-98.
[3] 王碰起,魏梁锋,周苏键,等.高压氧治疗对亚急性期创伤性脑损伤患者腺垂体功能的影响[J].中华物理医学与康复杂志,2020,42(8):712-715.
[4] 王碰起,高进喜,陈锦华,等.创伤性颅脑损伤早期患者ACTH轴和TSH轴激素水平及相关指标的变化[J].中华神经医学杂志,2020,19(6):566-567.
[5] 中国抗癫痫协会常务理事.癫痫中心分级标准(试行)2016年10月修改[J].癫痫杂志,2017,3(3):243-247.
[6] 杨国传,林密群,李海堃,等.颅脑损伤患者性激素动态变化的临床意义分析[J].中国当代医药,2019,26(21):52-55.
[7] 巩生辉,何云凌,赵名,等.亚甲蓝对高原低氧脑损伤的保护作用研究[J].中国神经免疫学和神经病学杂志,2018, 25(2):108-112.
[8] 谷培栋,张世耀,张立芳.拉莫三嗪联合醒脑静对创伤性颅脑损伤继发癫痫患者神经功能、认知能力的影响[J].中国药业,2019,28(3):71-73.
[9] 孟彦丽,董自平,李哲敏,等.高压氧联合脑苷肌肽对创伤性颅脑损伤患者NSE、sFas的影响[J].河北医药,2020, 42(21):3300-3303.
[10] 陈玉民,张璇,冯清燕,等.高压氧联合司来吉兰对帕金森病患者运动功能及血清miR-124、IGF-1水平的影响[J].中华航海医学与高气压医学杂志,2020,27(2):200-204.
[11] 闫喜功.肠道菌群变化对高压氧联合脑苷肌肽治疗创伤性颅脑损伤预后的影响[J].中国微生态学杂志,2021, 33(5):581-583.
[12] 张华,张建国,胡文瀚,等.幕上脑膜瘤继发癫痫的危险因素分析及手术治疗效果[J].中华神经外科杂志,2018, 34(12):1192-1196.
[13] Liu Y,Ran H,Xiao Y,et al. Knockdown of HIF-1α impairs postischemic vascular reconstruction in the brain via deficient homing and sprouting bmEPCs [J]. Brain Pathol,2018,28(6):860-874.
[14] Rattner A,Williams J,Nathans J. Roles of HIFs and VEGF in angiogenesis in the retina and brain [J]. J Clin Invest,2019,130(8):3807-3820.
[15] Foster MT,Das K,May P,et al. Motor cortex relocation after complete anatomical hemispherectomy for intractable epilepsy secondary to Rasmussen’s encephalitis [J]. Brit J Neurosurg,2019,33(2):234-236.
[16] Ma Q,Dasgupta C,Li Y,et al. MicroRNA-210 downregulates ISCU and induces mitochondrial dysfunction and neuronal death in neonatal hypoxic-ischemic brain injury [J]. Mol Neurobiol,2019,56(8):5608-5625.
[17] 柏文华,疏佳萍,戴王娟,等.抑制低氧诱导因子1α分解对早产儿脑损伤模型中血管生成的影响[J].东南大学学报(医学版),2019,38(2):265-268.
[18] Nik A,Sheikh-Andalibi MS,Ehsaei MR,et al. The efficacy of Glasgow coma scale (GCS) score and acute physiology and chronic health evaluation (APACHE) Ⅱ for predicting hospital mortality of ICU patients with acute traumatic brain injury [J]. Bull Emerg Trauma,2018, 6(2):141-145.
[19] 陈旭东,华新宇,孙丹华,等.复方猪脑肽节苷脂减轻宫内缺氧后新生小鼠脑损伤并促进小脑肽4(CBLN4)表达[J].细胞与分子免疫学杂志,2019,246(8):721-726.
[20] 陶晶,孙涛.高压氧对脑梗死患者血脂及超声血液流变学的影响[J].中国现代医学杂志,2019,29(14):77-80.
[21] 梁芳,李品品,刘雪华,等.高压氧处理对创伤性脑损伤大鼠脑组织小胶质细胞极化的影响[J].中华航海医学与高气压医学杂志,2021,28(3):299-303,308.
[22] 丁政,周苏键,彭慧平,等.早期高压氧干预对创伤性脑损伤后认知功能障碍影响的DTI研究[J].中华物理医学与康复杂志,2019,41(3):189-194.
[23] 于秋红,刘亚玲,王丛,等.高压氧对大脑中动脉阻塞大鼠细胞凋亡的影响[J].中华物理医学与康复杂志,2019, 41(8):561-564.
[24] 邓青山,王东,张超,等.高压氧通过调节BACE1蛋白水平改善APP/PS1模型小鼠Aβ相关病理改变及认知功能[J].中国病理生理杂志,2019,89(7):1219-1225.
[25] 印佳,吕远,方涛,等.早期不同频次高压氧联合亚低温对重度颅脑外伤患者脑神经功能的影响[J].重庆医学,2021,50(7):1187-1190. |
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