Chinese Journal of Stroke ›› 2019, Vol. 14 ›› Issue (02): 183-187.DOI: 10.3969/j.issn.1673-5765.2019.02.020
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Received:
2018-08-24
Online:
2019-02-20
Published:
2019-02-20
朱燕,朱东亚
通讯作者:
朱东亚 dyzhu@njmu.edu.cn
基金资助:
国家自然科学基金(81870912)
ZHU Yan, ZHU Dong-Ya. Mechanism and Treatment of Secondary Brain Injury after Intracerebral Hemorrhage[J]. Chinese Journal of Stroke, 2019, 14(02): 183-187.
朱燕,朱东亚. 脑出血后继发性脑损伤的机制与治疗[J]. 中国卒中杂志, 2019, 14(02): 183-187.
[1] URDAY S,KIMBERLY W T,BESLOW L A,etal. Targeting secondary injury in intracerebralhaemorrhage--perihaematomal oedema[J]. Nat RevNeurol,2015,11(2):111-122.[2] STEINER T,ROSAND J,DIRINGER M.Intracerebral hemorrhage associated with oralanticoagulant therapy:current practices andunresolved questions[J]. Stroke,2006,37(1):256-262.[3] WEST K L,ADAMSON C,HOFFMAN M.Prophylactic correction of the internationalnormalized ratio in neurosurgery:a brief review of abrief literature:a review[J]. J Neurosurq,2011,114(1):9-18.[4] HUA Y,KEEP R F,HOFF J T,et al. Braininjury after intracerebral hemorrhage:the roleof thrombin and iron[J/OL]. Stroke,2007,38(2Suppl):759-762. https://doi.org/10.1161/01.STR.0000247868.97078.10.[5] HOLLENBERG M D,COMPTON S J. Internationalunion of pharmacology. XXVIII. Proteinaseactivatedreceptors[J]. Pharmacol Rev,2002,54(2):203-217.[6] YANG Y,ZHANG M,KANG X,et al. Thrombininducedmicroglial activation impairs hippocampalneurogenesis and spatial memory ability in mice[J].Behav Brain Functi,2015,11(1):30.[7] BABU R,BAGLEY J H,DI C,et al. Thrombinand hemin as central factors in the mechanisms ofintracerebral hemorrhage–induced secondary braininjury and as potential targets for intervention[J/OL].Neurosurg Focus,2012,32(4):E8. https://doi.org/10.3171/2012.1.FOCUS11366.[8] ZHENG H,CHEN C,ZHANG J,et al. Mechanismand therapy of brain edema after intracerebral hemorrhage[J]. Cerebrovasc Dis,2016,42(3-4):155-169.[9] XI G,KEEP R F,HOFF J T. Erythrocytesand delayed brain edema formation followingintracerebral hemorrhage in rats[J]. J Neurosurg,1998,89(6):991-996.[10] MIN H,CHOI B,JANG Y H,et al. Heme moleculefunctions as an endogenous agonist of astrocyteTLR2 to contribute to secondary brain damage afterintracerebral hemorrhage[J]. Mol Brain,2017,10(1):27.[11] XIONG X Y,WANG J,QIAN Z M,et al. Ironand intracerebral hemorrhage:from mechanism totranslation[J]. Trans Stroke Res,2014,5(4):429-441.[12] XI G,KEEP R F,HOFF J T. Mechanisms of braininjury after intracerebral haemorrhage[J]. LancetNeurol,2006,5(1):53-63.[13] CHEN-ROETLING J,LU X,REGAN R F.Targeting heme oxygenase after intracerebralhemorrhage[J/OL]. Ther Targets Neuro Dis,2015,2(1). pii:474. https://doi.org/10.14800/ttnd.474.[14] QURESHI A I,ALI Z,SURI M F K,et al.Extracellular glutamate and other amino acids inexperimental intracerebral hemorrhage:an in vivomicrodialysis study[J]. Crit Care Med,2003,31(5):1482-1489.[15] DUAN Z Z,ZHANG F,LI F Y,et al. Proteaseactivated receptor 1(PAR1)enhances Src-mediatedtyrosine phosphorylation of NMDA receptor inintracerebral hemorrhage(ICH)[J/OL]. Sci Rep,2016,6:29246. https://doi.org/10.1038/srep29246.[16] HU X,TAO C,GAN Q,et al. Oxidative stress inintracerebral hemorrhage:sources,mechanisms,and therapeutic targets[J/OL]. Oxid Med CellLongev,2016,2016:3215391. https://doi.org/10.1155/2016/3215391.[17] ZHAO X,ARONOWSKI J. Nrf2 to pre-conditionthe brain against injury caused by products ofhemolysis after ICH[J]. Transl Stroke Res,2013,4(1):71-75.[18] YU Y P,CHI X L,LIU L J. A hypothesis:hydrogen sulfide might be neuroprotective againstsubarachnoid hemorrhage induced brain injury[J/OL]. Scientific World Journal,2014,2014:432318.https://doi.org/10.1155/2014/432318.[19] DUAN X,WEN Z,SHEN H,et al. Intracerebralhemorrhage,oxidative stress,and antioxidanttherapy[J/OL]. Oxid Med Cell Longev,2016,2016:1203285. https://doi.org/10.1155/2016/1203285.[20] ZHOU Y,WANG Y,WANG J,et al. Inflammationin intracerebral hemorrhage:from mechanismsto clinical translation[J/OL]. Prog Neurobiol,2014,115:25-44. https://doi.org/10.1016/j.pneurobio.2013.11.003.[21] ZHANG Z,ZHANG Z,LU H,et al. Microglialpolarization and inflammatory mediators afterintracerebral hemorrhage[J]. Mol Neurobiol,2017,54(3):1874-1886.[22] ARONOWSKI J,ZHAO X. Molecularpathophysiology of cerebral hemorrhage:secondarybrain injury[J]. Stroke,2011,42(6):1781-1786.[23] SUN Z,ZHAO Z,ZHAO S,et al. Recombinanthirudin treatment modulates aquaporin-4 andaquaporin-9 expression after intracerebralhemorrhage in vivo[J]. Mol Biol Rep,2009,36(5):1119.[24] ZHOU Z H,QU F,ZHANG C D. Systemicadministration of argatroban inhibits proteaseactivatedreceptor-1 expression in perihematomaltissue in rats with intracerebral hemorrhage[J]. BrainRes Bull,2011,86(3-4):235-238.[25] NAKAMURA T,KURODA Y,HOSOMI N,et al.Serine protease inhibitor attenuates intracerebralhemorrhage-induced brain injury and edemaformation in rat[J/OL]. Acta Neurochir Suppl,2010,106:307-310. https://doi.org/10.1007/978-3-211-98811-4_57.[26] CUI H J,HE H,YANG A L,et al. Efficacy ofdeferoxamine in animal models of intracerebralhemorrhage:a systematic review and stratified metaanalysis[J/OL]. PloS One,2015,10(5):e0127256.https://doi.org/10.1371/journal.pone.0127256.[27] ZENG L,TAN L,LI H,et al. Deferoxamine therapyfor intracerebral hemorrhage:A systematic review[J/OL]. PloS One,2018,13(3):e0193615. https://doi.org/10.1371/journal.pone.0193615.[28] WU H,WU T,XU X,et al. Iron toxicity inmice with collagenase-induced intracerebralhemorrhage[J]. J Cereb Blood Flow Metab,2011,31(5):1243-1250.[29] NAKAMURA T,KEEP R F,HUA Y,et al.Deferoxamine-induced attenuation of brainedema and neurological deficits in a rat model ofintracerebral hemorrhage[J]. J Neurosurg,2004,100(4):672-678.[30] YU Y,ZHAO W,ZHU C,et al. The clinicaleffect of deferoxamine mesylate on edema afterintracerebral hemorrhage[J/OL]. PLoS One,2015,10(4):e0122371. https://doi.org/10.1371/journal.pone.0122371. [31] LI Q,WAN J,LAN X,et al. Neuroprotection of brain-permeable iron chelator VK-28 againstintracerebral hemorrhage in mice[J]. J Cereb BloodFlow Metab,2017,37(9):3110-3123.[32] BELUR P K,CHANG J J,HE S,et al. Emergingexperimental therapies for intracerebral hemorrhage:targeting mechanisms of secondary brain injury[J/OL]. Neurosurg Focus,2013,34(5):E9. https://doi.org/10.3171/2013.2.FOCUS1317.[33] WASSERMAN J K,ZHU X,SCHLICHTER L C.Evolution of the inflammatory response in the brainfollowing intracerebral hemorrhage and effectsof delayed minocycline treatment[J/OL]. BrainRes,2007,1180:140-154. https://doi.org/10.1016/j.brainres.2007.08.058.[34] WU Z,ZOU X,ZHU W,et al. Minocycline iseffective in intracerebral hemorrhage by inhibitionof apoptosis and autophagy[J/OL]. J Neurol Sci,2016,371:88-95. https://linkinghub.elsevier.com/retrieve/pii/S0022510X16306645.[35] CAO S,HUA Y,KEEP R F,et al. Minocyclineeffects on intracerebral hemorrhage-induced ironoverload in aged rats:brain iron quantification withmagnetic resonance imaging[J]. Stroke,2018,49(4):995-1002.[36] SZYMANSKA A,BIERNASKIE J,LAIDLEYD,et al. Minocycline and intracerebral hemorrhage:influence of injury severity and delay to treatment[J].Exp Neurol,2006,197(1):189-196.[37] SALIBA W,RENNERT H S,BARNETTGRINESSO,et al. Association of statin use withspontaneous intracerebral hemorrhage:A cohortstudy[J/OL]. Neurology,2018,91(5):e400-e409.https://doi.org/10.1212/WNL.0000000000005907.[38] YANG D,KNIGHT R A,HAN Y,et al. Vascularrecovery promoted by atorvastatin and simvastatinafter experimental intracerebral hemorrhage:magnetic resonance imaging and histological study.Laboratory investigation[J]. J Neurosurg,2011,114(4):1135-1142.[39] TAPIA-PEREZ H,SANCHEZ-AGUILAR M,TORRES-CORZO J G,et al. Use of statins for thetreatment of spontaneous intracerebral hemorrhage:results of a pilot study[J]. Cent Eur Neurosurg,2009,70(1):15-20.[40] PAN Y S,JING J,WANG Y L,et al. Use of statinduring hospitalization improves the outcome afterintracerebral hemorrhage[J]. CNS Neurosci Ther,2014,20(6):548-555.[41] KAWAI N,KAWANISHI M,OKAUCHI M,et al.Effects of hypothermia on thrombin-induced brainedema formation[J]. Brain Res,2001,895(1-2):50-58.[42] KAWANISHI M,KAWAI N,NAKAMURA T,etal. Effect of delayed mild brain hypothermia onedema formation after intracerebral hemorrhage inrats[J]. J Stroke Cerebrovasc Dis,2008,17(4):187-195.[43] SONG F,GUO C,GENG Y,et al. Therapeutictime window and regulation of autophagy by mildhypothermia after intracerebral hemorrhage in rats[J/OL]. Brain Res,2018,1690:12-22. https://doi.org/10.1016/j.brainres.2018.04.005.[44] STAYKOV D,WAGNER I,VOLBERS B,et al.Mild prolonged hypothermia for large intracerebralhemorrhage[J]. Neurocrit Care,2013,18(2):178-183. |
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