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Relationship between homocysteine, interleukin-6 and cognitive dysfunction after ischemic stroke |
ZHANG Jianping1 LIN Wenjing1 SHI Yinhua2 LI Qing1 HAO Weihua3 |
1.Department of Geriatrics, Shijiazhuang People’s Hospital, Hebei Province, Shijiazhuang 050000, China;
2.Department of Cardiac Surgery, Shijiazhuang People’s Hospital, Hebei Province, Shijiazhuang 050000, China;
3.Department of Critical Care Medicine, Shijiazhuang People’s Hospital, Hebei Province, Shijiazhuang 050000, China
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Abstract Objective To investigate the relationship between homocysteine (Hcy), interleukin-6 (IL-6) and cognitive dysfunction after ischemic stroke. Methods A total of 150 patients with ischemic stroke who visited Shijiazhuang People’s Hospital from December 2018 to December 2020 were included in the study, according to the results of the Montreal cognitive assessment scale score, the patients were divided into cognitive impairment group of 110 cases and control group of 40 cases. The gender, age, heart rate, total cholesterol, triglyceride, low-density lipoprotein cholesterol, high-density lipoprotein cholesterol, Hcy, and IL-6 levels were collected and compared between the two groups, the correlation between Hcy level, IL-6 level and Montreal cognitive assessment scale (MoCA) score were analyzed. Results The levels of Hcy and IL-6 in cognitive dysfunction group were higher than those in control group, and the differences were statistically significant (P<0.05). Hcy and IL-6 level were the influencing factors of cognitive dysfunction in ischemic stroke patients (F=25.225, P<0.001). Regression equation: MoCA score of patients with ischemic stroke =1.091-0.239×Hcy-0.503×IL-6, R2 of the model was 0.135, and the adjusted R2 was 0.130. Conclusion Hcy level and IL-6 level are the influencing factors of cognitive dysfunction in ischemic stroke patients.
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[1] Li T,Liu X,Diao S,et al. H-Type Hypertension Is a Risk Factor for Cerebral Small-Vessel Disease [J]. Biomed Res Int,2020,2020:6498903.
[2] Li T,Zhu J,Fang Q,et al. Association of H-Type Hypertension with Stroke Severity and Prognosis [J]. Biomed Res Int,2018,2018:8725908.
[3] Zhang Y,Zhang Z,Wei R,et al. IL (Interleukin)-6 Contributes to Deep Vein Thrombosis and Is Negatively Regulated by miR-338-5p [J]. Arterioscler Thromb Vasc Biol,2020, 40(2):323-334.
[4] 李英,曾理,孙颖,等.炎症因子IL-6,IL-10及hs-CRP与老年高血压患者认知功能障碍的关系研究[J].四川医学,2020,41(7):676-679.
[5] 中华医学会神经病学分会,中华医学会神经病学分会脑血管病学组.中国急性缺血性脑卒中诊治指南2018[J].中华神经科杂志,2018,51(9):666-682.
[6] Nasreddine ZS,Phillips NA,Bédirian V,et al. The Montreal Cognitive Assessment,MoCA:a brief screening tool for mild cognitive impairment [J]. J Am Geriatr Soc,2005,53(4):695-699.
[7] 中华医学会神经病学分会,中华医学会神经病学分会脑血管病学组.中国脑血管病一级预防指南2019[J].中华神经科杂志,2019,52(9):684-709.
[8] 赵晓玲,孙瑞红.脑小血管病与血清同型半胱氨酸相关性的研究进展[J].神经疾病与精神卫生,2021,21(6):5.
[9] ?譒kovierová Henrieta,Eva V,Silvia M,et al. The Molecular and Cellular Effect of Homocysteine Metabolism Imbalance on Human Health [J]. Int J Mol Sci,2016,17(10):1733.
[10] 黄晶,刘颖,范琳,等.缺血性脑卒中患者颈动脉粥样硬化严重程度与血清同型半胱氨酸水平的关系研究[J].国际检验医学杂志,2018,39(16):2063-2066.
[11] 潘庭荣,黄梅,潘丹丹,等.脑卒中患者Hcy、GFAP、BDNF和hs-CRP水平与血管性认知障碍相关性研究[J].东南大学学报(医学版),2018,37(4):648-652.
[12] Sibarov DA,Giniatullin R,Antonov SM. High sensitivity of cerebellar neurons to homocysteine is determined by expression of GluN2C and GluN2D subunits of NMDA receptors [J]. Biochem Biophys Res Commun,2018,506(3):648-652.
[13] 张颖,张春丽,李璐,等.血管性痴呆患者血清MMP-9,NLRP3,Hcy水平变化及其与认知、神经功能、预后的关系[J].卒中与神经疾病,2021,28(1):67-72.
[14] Moretti R,Caruso P. The Controversial Role of Homocysteine in Neurology: From Labs to Clinical Practice [J]. Int J Mol Sci,2019,20(1):1-22.
[15] Lee JH,Hong SM,Shin YA. Effects of exercise training on stroke risk factors,homocysteine concentration,and cognitive function according the APOE genotype in stroke patients [J]. J Exerc Rehabil,2018,14(2):267-274.
[16] 周丹,周磊,胡晓燕.H型高血压患者认知功能障碍程度和炎症及氧化应激因子水平的相关性[J].中华高血压杂志,2018,26(9):871-874.
[17] 彭远艳,邱呈兵,周敏,等.Hcy、NSE及IL-8水平变化与脑卒中患者神经功能恢复的关系研究[J].分子诊断与治疗杂志,2021,13(3):470-473.
[18] 杜慧慧,易昕,彭晨,等.缺血性脑卒中发生及疗效相关的血清分子标志物研究[J].中华老年心脑血管病杂志,2021,23(1):42-46.
[19] Alme KN,Ulvik A,Knapskog AB,et al. Neopterin and kynurenic acid as predictors of stroke recurrence and mortality:a multicentre prospective cohort study on biomarkers of inflammation measured three months after ischemic stroke [J]. BMC Neurol,2021,21(1):1-11.
[20] 朱洁,张敏.缺血性脑卒中合并脑微出血患者认知功能及血清细胞因子变化的研究[J].重庆医学,2019,48(11):1909-1911.
[21] 张林丽,宋景贵.CD4 T淋巴细胞在脑卒中后抑郁发病机制中的研究进展[J].中国医药导报,2020,17(31):62- 65.
[22] Lasek-Bal A,Jedrzejowska-Szypulka H,Student S,et al. The importance of selected markers of inflammation and blood-brain barrier damage for short-term ischemic stroke prognosis [J]. J Physiol Pharmacol,2019,70(2):209-217.
[23] Georgakis MK,Malik R,Gill D,et al. Interleukin-6 Signaling Effects on Ischemic Stroke and Other Cardiovascular Outcomes:A Mendelian Randomization Study [J]. Circ Genom Precis Med,2020,13(3):1-7
[24] 陈云,王丹,刘晓利,等.IL-6与卒中后癫痫认知功能障碍的相关性研究[J].中国实用神经疾病杂志,2019,22(11):1194-1198.
[25] Lurie DI. An Integrative Approach to Neuroinflammation in Psychiatric disorders and Neuropathic Pain [J]. J Exp Neurosci,2018,12:1179069518793639.
[26] 吴学平,杨昌勤,吴学毅,等.血清同型半胱氨酸及白介素-6(IL-6)水平与缺血性卒中患者认知功能障碍的相关性及临床价值[J].中国免疫学杂志,2016,32(5):734-736.
[27] Qu P,Cheng K,Gao Q,et al. Application Value of Serum Hcy,TLR4,and CRP in the Diagnosis of Cerebral Small Vessel Disease [J]. Evid Based Complement Alternat Med,2022,2022:4025965. |
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