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Research progress on the protective effect of silent information regulator 1 in postoperative cognitive dysfunction |
QIN Xiaoyu1 WANG Chunai2#br# |
1.The First Clinical Medical College, Gansu University of Chinese Medicine, Gansu Province, Lanzhou 730000, China;
2.Department of Anesthesiology, Gansu Provincial Hospital of Traditional Chinese Medicine, Gansu Province, Lanzhou 730050, China |
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Abstract Postoperative cognitive dysfunction is particularly common after anesthesia, which has a serious impact on the quality of life and postoperative rehabilitation of patients, increasing the postoperative morbidity and mortality, and increasing the length of hospital stay and economic expenditure of patients. Silencing information regulator 1 (SIRT1) plays a crucial role in the pathogenesis of postoperative cognitive dysfunction, and plays a key protective role in neuroinflammatory response, oxidative stress, mitochondrial energy metabolism, endoplasmic reticulum stress, neuronal apoptosis, autophagy, and regulating nerve cell-related factors or proteins. In this paper, SIRT1 will be taken as the core to focus on the mechanism of its protective effect on cognitive impairment caused by anesthesia surgery, in order to provide some help for future scientific research in this field.
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[1] Deiner S,Silverstein JH. Postoperative delirium and cognitive dysfunction [J]. Br J Anaesth,2009,103 Suppl 1(Suppl 1):i41-i46.
[2] Chang HC,Guarente L. SIRT1 and other sirtuins in metab-olism [J]. Trends Endocrinol Metab,2014,25(3):138-145.
[3] Liu Y,Yin Y. Emerging Roles of Immune Cells in Postoperative Cognitive Dysfunction [J]. Mediators Inflamm,2018:1-8.
[4] K?觟les L,Fürst S,Illes P. Purine ionotropic (P2X) receptors [J]. Curr Pharm Des,2007,13(23):2368-2384.
[5] Yan J,Luo A,Gao J,et al. The role of SIRT1 in neuroinflammation and cognitive dysfunction in aged rats after anesthesia and surgery [J]. Am J Transl Res,2019,11(3):1555-1568.
[6] Locatelli FM,Kawano T,Iwata H,et al. Resveratrol-loaded nanoemulsion prevents cognitive decline after abdominal surgery in aged rats [J]. J Pharmacol Sci,2018,137(4):395-402.
[7] Wang Y,He H,Li D,et al. The role of the TLR4 signaling pathway in cognitive deficits following surgery in aged rats [J]. Mol Med Rep,2013,7(4):1137-1142.
[8] Shi J,Zou X,Jiang K,et al. SIRT1 mediates improvement of cardiac surgery-induced postoperative cognitive dysfunction via the TLR4/NF-κB pathway [J]. World J Biol Psychiatry,2020,21(10):757-765.
[9] Choi M,Jo H,Park HJ,et al. Design,synthesis,and biological evaluation of benzofuran- and 2,3-dihydrobenzofuran-2-carboxylic acid N-(substituted)phenylamide derivatives as anticancer agents and inhibitors of NF-κB [J]. Bioorg Med Chem Lett,2015,25(12):2545-2549.
[10] 方四通,陈勇,姚鹏,等.右美托咪定可能通过SIRT1信号通路减轻老龄大鼠的术后认知功能障碍[J].南方医科大学学报,2018,38(9):1071-1075.
[11] 杨玉军.睡眠碎片化对老龄大鼠术后认知功能的影响[D].南昌:南昌大学,2020.
[12] 黄滔,周兴路,毛曦轲,等.DNA甲基化基因DNMT1的研究进展[J].现代肿瘤医学,2019,27(14):2595-2600.
[13] Lee YR,Noh EM,Kwon KB,et al. Radix clematidis extract inhibits UVB-induced MMP expression by suppressing the NF-kappaB pathway in human dermal fibroblasts [J]. Int J Mol Med,2009,23(5):679-684.
[14] 李颖,刘占矿,赵自刚.星状神经节阻滞改善老年人术后认知功能障碍的作用[J].中国老年学杂志,2021,41(11):2448-2451.
[15] 胡衍辉,陈勇,梁应平,等.SIRT1信号通路在星状神经节阻滞减轻老龄大鼠术后认知功能障碍中的作用[J].中华麻醉学杂志,2017,37(1):54-57.
[16] 张惠敏,任莹璐,苏聪平,等.中医药基于氧化应激治疗心力衰竭的应用[J].世界中医药,2019,14(10):2801-2804.
[17] Liu PR,Cao F,Zhang Y,et al. Electroacupuncture reduces astrocyte number and oxidative stress in aged rats with surgery-induced cognitive dysfunction [J]. J Int Med Res,2019,47(8):3860-3873.
[18] 胡雅娟,胡格吉胡,石海霞,等.银杏叶注射液对丙泊酚麻醉引起的大鼠认知功能障碍的影响[J].世界中医药,2020,15(23):3639-3645.
[19] Hu HQ,Shu MQ,Xue F,et al. Sirt1 mediates improvement of isoflurane-induced memory impairment following hyperbaric oxygen preconditioning in middle-aged mice [J]. Physiol Behav,2018,195:1-8.
[20] 陈宁园.火麻仁提取液对D-半乳糖致衰老大鼠空间学习和记忆的干预作用及其机制研究[D].南宁:广西医科大学,2017.
[21] Zhao Z,Yao M,Wei L,et al. Obesity caused by a high-fat diet regulates the Sirt1/PGC-1α/FNDC5/BDNF pathway to exacerbate isoflurane-induced postoperative cognitive dysfunction in older mice [J]. Nutr Neurosci,2020, 23(12):971-982.
[22] Ahmadi A,Hayes AW,Karimi G. Resveratrol and endoplasmic reticulum stress: A review of the potential protective mechanisms of the polyphenol [J]. Phytother Res,2021,35(10):5564-5583.
[23] Tian A,Ma H,Zhang R,et al. Edaravone improves spatial memory and modulates endoplasmic reticulum stress-mediated apoptosis after abdominal surgery in mice [J]. Exp Ther Med,2017,14(1):355-360.
[24] Li X,Wang S,Dai J,et al. Homoharringtonine prevents surgery-induced epidural fibrosis through endoplasmic reticulum stress signaling pathway[J]. Eur J Pharmacol,2017,815:437-445.
[25] Wang B,Ge S,Xiong W,et al. Effects of resveratrol pretreatment on endoplasmic reticulum stress and cognitive function after surgery in aged mice [J]. BMC Anesthesiol,2018,18(1):141.
[26] Yao M,Zhao Z,Wei L,et al. HSF1/HSP pathway in the hippocampus is involved in SIRT1-mediated caloric restriction-induced neuroprotection after surgery in aged mice [J]. Exp Gerontol,2019,119:184-192.
[27] 熊万霞.SIRT1-p53、cAMP/CREB信号通路参与老年大鼠吸入麻醉致学习与记忆损害的机制研究[D].上海:复旦大学,2014.
[28] Yang LH,Xu YC,Zhang W. Neuroprotective effect of CTRP3 overexpression against sevoflurane anesthesia-induced cognitive dysfunction in aged rats through activating AMPK/SIRT1 and PI3K/AKT signaling pathways [J]. Eur Rev Med Pharmacol Sci,2020,24(9):5091-5100.
[29] Gu HF,Li N,Tang YL,et al. Nicotinate-curcumin ameliorates cognitive impairment in diabetic rats by rescuing autophagic flux in CA1 hippocampus [J]. CNS Neurosci Ther,2019,25(4):430-441.
[30] Yan WJ,Wang DB,Ren DQ,et al. AMPKα1 overexpression improves postoperative cognitive dysfunction in aged rats through AMPK-Sirt1 and autophagy signaling [J]. J Cell Biochem,2019.
[31] Esteves AR. Editorial:New Avenues and Therapeutic Strategies for the Treatment of Neurodegenerative Diseases [J]. Curr Pharm Des,2017,23(5):667-668.
[32] 薛芬,薛姗姗,周翠红,等.海马Sirt1在高压氧预处理改善异氟醚诱导老龄小鼠认知功能障碍中的作用[J].现代生物医学进展,2020,20(22):4213-4217.
[33] 李晓娜,靳国恩,李生花.低氧对学习记忆相关蛋白的影响研究进展[J].现代生物医学进展,2017,17(31):6191-6195.
[34] 严婧. SIRT1介导的去乙酰化作用在老龄大鼠术后认知功能障碍中的作用和机制研究[D].武汉:华中科技大学,2019.
[35] 陈文楠,杨柳,宫惠琳,等.去乙酰化酶Sirt1对神经母细胞瘤SK-N-SN细胞中Tau蛋白表达及磷酸化水平的影响[J].西安交通大学学报(医学版),2017,38(3):410-415.
[36] 申远,谢仲淙.术后神经认知功能障碍[J].北京医学,2018,40(6):501-503.
[37] Yan J,Luo A,Gao J,et al. The role of SIRT1 in neuroinflammation and cognitive dysfunction in aged rats after anesthesia and surgery [J]. Am J Transl Res,2019,11(3):1555-1568.
[38] 杨卫玉,曾庆繁,武良玉,等.血管紧张素受体阻滞剂对术后认知功能影响的临床研究[J].中国药物与临床,2017, 17(5):693-695. |
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