金晓红,徐杰丰,张茂. 心脏骤停复苏后急性肾损伤的研究进展[J]. 中国急救医学, 2019, 39(7): 704-709.
Jin Xiao-hong, Xu Jie-feng, Zhang Mao. Research progress of acute kidney injury after cardiac arrest and resuscitation. Chinese Journal of Critical Care Medicine, 2019, 39(7): 704-709.
[1]杭晨晨,袁伟,李春盛. 心肺复苏研究的中国贡献[J].中华医学信息导报, 2018, 33(17): 14-15.
[2]Mozaffarian D, Benjamin EJ, Go AS, et al. Heart disease and stroke statistics-2016 update: a report from the American heart association[J]. Circulation, 2016, 133(4): e38-360.
[3]Shao F, Li CS, Liang LR, et al. Outcome of out-of-hospital cardiac arrests in Beijing, China[J]. Resuscitation, 2014, 85(11): 1411-1417.
[4]Neumar RW, Nolan JP, Adrie C, et al. Post-cardiac arrest syndrome: epidemiology, pathophysiology, treatment, and prognostication. A consensus statement from the International Liaison Committee on Resuscitation (American Heart Association, Australian and New Zealand Council on Resuscitation, European Resuscitation Council, Heart and Stroke Foundation of Canada, InterAmerican Heart Foundation, Resuscitation Council of Asia, and the Resuscitation Council of Southern Africa); the American Heart Association Emergency Cardiovascular Care Committee; the Council on Cardiovascular Surgery and Anesthesia; the Council on Cardiopulmonary, Perioperative, and Critical Care; the Council on Clinical Cardiology; and the Stroke Council[J]. Circulation, 2008, 118(23): 2452-2483.
[5]Laurent I, Monchi M, Chiche JD, et al. Reversible myocardial dysfunction in survivors of out-of-hospital cardiac arrest[J]. J Am Coll Cardiol, 2002, 40(12): 2110-2116.
[6]Laver S, Farrow C, Turner D, et al. Mode of death after admission to an intensive care unit following cardiac arrest[J]. Intensive Care Med, 2004, 30(11): 2126-2128.
[7]Roine RO, Kajaste S, Kaste M. Neuropsychological sequelae of cardiac arrest[J]. JAMA, 1993, 269(2): 237-242.
[8]Zeiner A, Sunder-Plassmann G, Sterz F, et al. The effect of mild therapeutic hypothermia on renal function after cardiopulmonary resuscitation in men[J]. Resuscitation, 2004, 60(3): 253-261.
[9]Bagshaw SM, Laupland KB, Doig CJ, et al. Prognosis for long-term survival and renal recovery in critically ill patients with severe acute renal failure: a population-based study[J]. Crit Care, 2005, 9(6): R700-709.
[10]Storm C, Krannich A, Schachtner T, et al. Impact of acute kidney injury on neurological outcome and long-term survival after cardiac arrest-A 10 year observational follow up[J]. J Crit Care, 2018, 47: 254-259.
[11]Bellomo R, Ronco C, Kellum JA, et al. Acute renal failure-definition, outcome measures, animal models, fluid therapy and information technology needs: the Second International Consensus Conference of the Acute Dialysis Quality Initiative (ADQI) Group[J]. Crit Care, 2004, 8(4): R204-212.
[12]Mehta RL, Kellum JA, Shah SV, et al. Acute Kidney Injury Network: report of an initiative to improve outcomes in acute kidney injury[J]. Crit Care, 2007, 11(2): R31.
[13]Khwaja A. KDIGO clinical practice guidelines for acute kidney injury[J]. Nephron Clin Pract, 2012, 120(4): c179-184.
[14]杨毅,于凯江. 重症肾脏病学[M]. 上海:上海科学技术出版社, 2014, 108-114.
[15]Tujjar O, Mineo G, Dell′Anna A, et al. Acute kidney injury after cardiac arrest[J]. Crit Care, 2015, 19: 169.
[16]Kim YW, Cha KC, Cha YS, et al. Shock duration after resuscitation is associated with occurrence of post-cardiac arrest acute kidney injury[J]. J Korean Med Sci, 2015, 30(6): 802-807.
[17]Geri G, Guillemet L, Dumas F, et al. Acute kidney injury after out-of-hospital cardiac arrest: risk factors and prognosis in a large cohort[J]. Intensive Care Med, 2015, 41(7): 1273-1280.
[18]Beitland S, Nakstad ER, Staer-Jensen H, et al. Impact ofacute kidney injury on patient outcome in out-of-hospital cardiac arrest: a prospective observational study[J]. Acta Anaesthesiol Scand, 2016, 60(8): 1170-1781.
[19]胡克金,蒋文艳,黄卫东,等. 肾脏缺血-再灌注损伤发病机制的研究进展[J]. 医学新知杂志, 2017, 27(2): 160-162.
[20]Natanov R, Gueler F, Falk CS, et al. Blood cytokine expression correlates with early multi-organ damage in a mouse model of 〖JP2〗moderate hypothermia with circulatory arrest using cardiopulmonary bypass[J]. PloS One, 2018, 13(10): e0 205 437.
[21]韩奕,李春盛. 低温盐水灌注对猪心肺复苏后肝肾核转录因子-κB的影响[J]. 中国危重病急救医学, 2010, 22(2): 115-116.
[22]Zhang Q, Li G, Xu L, et al. Toll like receptor 4 contributes to acute kidney injury after cardiopulmonary resuscitation in mice[J]. Mol Med Rep, 2016, 14(4): 2983-2990.
[23]杨兴易,王学斌,林兆奋,等. 贝科能对心肺复苏后大鼠心、脑、肾的保护作用[J]. 中华急诊医学杂志, 2006, 15(2): 131-135.
[24]王学斌, 杨兴易, 赵良, 等. 心肺复苏后大鼠肾小管上皮细胞凋亡的实验研究[J]. 中华急诊医学杂志, 2006, 15(11): 982-986.
[25]贾秋颖. 氧化樟脑注射液对心肺复苏后大鼠心、脑、肾细胞超微结构的保护作用[J]. 中国老年学杂志, 2014, 34(2): 440-442.
[26]Mei X, Hang CC, Wang S, et al. Renal Doppler and novel biomarkers to assess acute kidney injury in a swine model of ventricular fibrillation cardiac arrest[J]. Chin Med J (Engl), 2015, 128(22): 3069-3075.
[27]Presciutti A, Sobczak E, Sumner JA, et al. The impact of psychological distress on long-term recovery perceptions in survivors of cardiac arrest[J]. J Crit Care, 2019, 50: 227-233.
[28]Park SO, Ahn JY, Lee YH, et al. Plasma neutrophil gelatinase-associated lipocalin as an early predicting biomarker of acute kidney injury and clinical outcomes after recovery of spontaneous circulation in out-of-hospital cardiac arrest patients[J]. Resuscitation, 2016, 101: 84-90.
[29]Beitland S, Waldum-Grevbo BE, Nakstad ER, et al. Urine biomarkers give early prediction of acute kidney injury and outcome after out-of-hospital cardiac arrest[J]. Crit Care, 2016, 20(1): 314.
[30]Elmer J, Jeong K, Abebe KZ, et al. Serum neutrophilgelatinase-associated lipocalin predicts survival after resuscitation from cardiac arrest[J]. Crit Care Med, 2016, 44(1): 111-119.
[31]Cho YS, Lee BK, Lee DH, et al. Association of plasma neutrophil gelatinase-associated lipocalin with acute kidney injury and clinical outcome in cardiac arrest survivors depends on the time of measurement[J]. Biomarkers, 2018, 23(5): 487-494.
[32]Vijayan A, Faubel S, Askenazi DJ, et al. Clinical use of the urine biomarker [TIMP - 2]× [IGFBP7]for acute kidney injury risk assessment[J]. Am J Kidney Dis, 2016, 68 (1): 19-28.
[33]Su LJ, Li YM, Kellum JA, et al. Predictive value of cell cycle arrest biomarkers for cardiac surgery-associated acute kidney injury: a meta-analysis[J]. Br J Anaesth, 2018, 121(2): 350-357.
[34]Adler C, Heller T, Schregel F, et al. TIMP-2/IGFBP7 predicts acute kidney injury in out-of-hospital cardiac arrest survivors[J]. Crit Care, 2018, 22(1): 126.
[35]Cummings JJ, Shaw AD, Shi J, et al. Intraoperative prediction of cardiac surgery-associated acute kidney injury using urinary biomarkers of cell cycle arrest[J]. J Thorac Cardiovasc Surg, 2019, 157(4): 1545-1553.
[36]Zaouter C, Potvin J, Bats ML, et al. A combined approach for the early recognition of acute kidney injury after adult cardiac surgery[J]. Anaesth Crit Care Pain Med, 2018, 37(4): 335-341.
[37]王欣. 肾脏彩色多普勒超声对重症患者发生急性肾损伤的预测价值评估[D]. 河北医科大学, 2016: 1-64.
[38]Hasper D, von Haehling S, Storm C, et al. Changes in serum creatinine in the first 24 hours after cardiac arrest indicate prognosis: an observational cohort study[J]. Crit Care, 2009, 13(5): R168.
[39]吴春双,高玉芝,徐杰丰,等. 超声在心肺复苏中的应用进展[J]. 中华急诊医学杂志, 2018, 27(3): 345-348.
[40]冉丽斯,徐昉,廖晓辉. 超声造影在急性肾损伤早期诊断及预后评估中的研究进展[J]. 中国急救医学, 2018, 38(9): 794-798.
[41]Grand J,Hassager C, Winther-Jensen M, et al. Mean arterial pressure during targeted temperature management and renal function after out-of-hospital cardiac arrest[J]. J Crit Care, 2019, 50: 234-241.
[42]Niforopoulou P, Iacovidou N, Lelovas P, et al. Correlation of impedance threshold device use during cardiopulmonary resuscitation with post-cardiac arrest acute kidney injury[J]. Am J Emerg Med, 2017, 35(6): 846-854.
[43]Yuan XL, Li CS, Zhang Y, et al. Extracorporeal membrane oxygenation improving survival and alleviating kidney injury in a swine model of cardiac arrest compared to conventional cardiopulmonary resuscitation[J]. Chin Med J, 2018, 131(15): 1840-1848.
[44]金晓红. 不同降温技术对猪心肺复苏后肾损伤的保护作用及机制研究[D]. 浙江大学,2017.
[45]韩奕,李春盛. 4 ℃生理盐水诱导低温对猪心搏骤停复苏后肾脏的影响[J]. 中国危重病急救医学, 2013, 25(2): 76-79.
[46]Susantitaphong P, Alfayez M, Cohen-Bucay A, et al. Therapeutic hypothermia and prevention of acute kidney injury: a meta-analysis of randomized controlled trials[J]. Resuscitation, 2012, 83(2): 159-167.
[47]杨敬宁,肖敏,王学军,等. 蛋白酶激活受体-1拮抗剂对兔心脏骤停后综合征中肾损伤的保护作用及机制[J]. 国际心血管病杂志, 2014, 6: 402-405.
[48]Yu L, Gu T, Liu Y, et al. Cold-inducible ribonucleic acid-binding protein attenuates acute kidney injuries after deep hypothermic circulatory arrest in rats[J]. Interac Cardiovasc Thorac Surg, 2018, 26(1): 124-130.
[49]沈建明,叶婷婷,王黎萍,等. 依达拉奉对心肺复苏后大鼠肾损伤的保护作用及其机制[J]. 中华实验外科杂志, 2009, 26(6): 778-779.
[50]严跃红,黄爱群,李显波,等. 乌司他丁对心肺复苏后兔肾损伤的影响[J]. 中国病理生理杂志, 2011, 27(6): 1138-1142.
[51]马天威,马明远,邓梦华,等. 乌司他丁联合控温治疗心肺复苏后急性肾损伤患者疗效及对TNF-α、IL-6和IL-10水平的影响[J]. 现代诊断与治疗, 2018, 29(8): 1242-1244.
[52]Liu S, Xu J, Gao Y, et al. Multi-organ protection of ulinastatin in traumatic cardiac arrest model[J]. World J Emerg Surg, 2018, 13: 51.
[53]唐秀英. 右美托咪定对心肺复苏兔重要器官功能的保护作用及机制[D]. 西南医科大学, 2017: 1-58.
[54]吕畅. 血必净对心肺复苏后急性肾损伤的临床研究[J]. 当代医学, 2015, 1: 131-132.
[55]Mousavi S, Moradi M, Khorshidahmad T, et al. Anti-inflammatory effects of heparin and its derivatives: a systematic review[J]. Adv Pharmacol Sci, 2015: 507 151.
[56]梁丽宁,钟霞,季宪飞,等. 尼可地尔后适应对猪心脏骤停后心脑肾缺血-再灌注损伤的保护作用[J]. 山东大学学报(医学版), 2017, 55(10): 46-51.
[57]杨超,金晓烨,贺丽,等.前列地尔预防心肺复苏后患者急性肾损伤的临床观察[J]. 临床荟萃, 2010, 25(16): 1447-1448.
[58]陈凯. 红细胞生成素对肾脏缺血-再灌注损伤的保护作用[J]. 中国血液净化, 2014, 13(6): 424-427.
[59]van Rijt WG, Nieuwenhuijs-Moeke GJ, van Goor H, et al. ARA290, a non-erythropoietic EPO derivative, attenuates renal ischemia/reperfusion injury[J]. J Transl Med, 2013, 11: 9.
[60]Yang C, Zhao T, Lin M, et al. Helix B surface peptide administered after insult of lschemia reperfusion improved renal function, 〖JP3〗structure and apoptosis through beta common receptor/erythropoietin receptor and P13K/Akt pathway in a murine model[J]. Exp Biol Med (Maywood), 2013, 238(1): 111-119.
[61]王帅伟. 硫化氢通过增强自噬减轻肾缺血-再灌注损伤[D]. 河南大学, 2016: 1-82.
[62]黄君龄,孟婧,袁颖,等. 参附注射液对心肺复苏多脏器功能保护的研究[J]. 中华急诊医学杂志, 2014, 23(7): 791-795.
[63]董勇,占景琼,徐雯,等. 大黄萃取液对兔CPR后肾脏NGAL及IL-18表达的影响[J]. 中华危重病急救医学,2017,29(10):907-910.
[64]Shi J, Wu G, Zou X,et al. Enteral baicalin, a flavone glycoside, reduces indicators of cardiac surgery-associated acute kidney injury in rats[J]. Cardiorenal Med, 2019, 9(1): 31-40.〖JP〗
[65]周燕红,金晓玲,朱丽娟. 中药鼻饲防治心肺复苏后并发急性肾损伤体会[J]. 中医临床研究, 2014, 24: 59-60.