Chinese Journal of Stroke ›› 2018, Vol. 13 ›› Issue (04): 372-376.DOI: 10.3969/j.issn.1673-5765.2018.04.013
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Received:
2017-12-26
Online:
2018-04-20
Published:
2018-04-20
蔡晋,资文杰,刘新峰
通讯作者:
蔡晋 caij2013@163.com
基金资助:
国家自然科学基金青年科学基金项目(81400332)
CAI Jin, ZI Wen-Jie, LIU Xin-Feng. Extracellular Vesicles and Ischemic Stroke[J]. Chinese Journal of Stroke, 2018, 13(04): 372-376.
蔡晋, 资文杰, 刘新峰. 细胞外囊泡与缺血性卒中[J]. 中国卒中杂志, 2018, 13(04): 372-376.
[1] LIU L,WANG D,WONG K S,et al. Stroke andstroke care in China:huge burden,significantworkload,and a national priority[J]. Stroke,2011,42(12):3651-3654.[2] MOZAFFARIAN D,BENJAMIN E J,GO A S,etal. Heart disease and stroke statistics--2015 update:a report from the American Heart Association[J/OL].Circulation,2015,131(4):e29-e322. https://doi.org/10.1161/CIR.0000000000000152[3] ADAMS H P J R,BENDIXEN B H,KAPPELLE LJ,et al. Classification of subtype of acute ischemicstroke. Definitions for use in a multicenter clinicaltrial. TOAST. Trial of Org 10172 in Acute StrokeTreatment[J]. Stroke,1993,24(1):35-41.[4] COCUCCI E,RACCHETTI G,MELDOLESI J.Shedding microvesicles:artefacts no more[J]. TrendsCell Biol,2009,19(2):43-51.[5] CAI J,WU G,JOSE P A,et al. Functionaltransferred DNA within extracellular vesicles[J].Exp Cell Res,2016,349(1):179-183.[6] NIEUWLAND R,STURK A. Why do cells releasevesicles?[J]. Thromb Res,2010,125(Suppl 1):S49-51.[7] CAI J,HAN Y,REN H,et al. Extracellular vesiclemediatedtransfer of donor genomic DNA to recipientcells is a novel mechanism for genetic influencebetween cells[J]. J Mol Cell Biol,2013,5(4):227-238.[8] CAI J,WU G,TAN X,et al. Transferred BCR/ABL DNA from K562 extracellular vesicles causeschronic myeloid leukemia in immunodeficientmice[J/OL]. PLoS One,2014,9(8):e105200. https://doi.org/10.1371/journal.pone.0105200[9] CAI J,GUAN W,TAN X,et al. SRY genetransferred by extracellular vesicles acceleratesatherosclerosis by promotion of leucocyte adherenceto endothelial cells[J]. Clin Sci(Lond),2015,129(3):259-269.[10] WALDENSTRÖM A,GENNEBÄCK N,HELLMAN U,et al. Cardiomyocyte microvesiclescontain DNA/RNA and convey biological messagesto target cells[J/OL]. PLoS One,2012,7(4):e34653.https://doi. org/10. 1371/journal. pone. 0034653[11] ZEN K,ZHANG C Y. Circulating microRNAs:anovel class of biomarkers to diagnose and monitorhuman cancers[J]. Med Res Rev,2012,32(2):326-348.[12] MINEO M,GARFIELD S H,TAVERNA S,etal. Exosomes released by K562 chronic myeloidleukemia cells promote angiogenesis in a Src-dependent fashion[J]. Angiogenesis,2012,15(1):33-45.[13] WANG H,YAN H M,TANG M X,et al. Increasedserum levels of microvesicles in nonvalvular atrialfibrillation determinated by ELISA using a specificmonoclonal antibody AD-1[J]. Clin Chim Acta,2010,411(21-22):1700-1704.[14] MINCHEVA-NILSSON L,BARANOV V. Therole of placental exosomes in reproduction[J]. Am JReprod Immunol,2010,63(6):520-533.[15] HERGENREIDER E,HEYDT S,TRÉGUER K,et al. Atheroprotective communication betweenendothelial cells and smooth muscle cells throughmiRNAs[J]. Nat Cell Biol,2012,14(3):249-256.[16] ZHANG Y,LIU D,CHEN X,et al. Secretedmonocytic miR-150 enhances targeted endothelialcell migration[J]. Mol Cell,2010,39(1):133-144.[17] LAI C P,BREAKEFIELD X O. Role of exosomes/microvesicles in the nervous system and use inemerging therapies[J/OL]. Front Physiol,2012,3:228. https://doi.org/10.3389/fphys.2012.00228[18] HAQQANI A S,DELANEY C E,TREMBLAYT L,et al. Method for isolation and molecularcharacterization of extracellular microvesiclesreleased from brain endothelial cells[J]. FluidsBarriers CNS,2013,10(1):4.[19] YAMAMOTO S,NIIDA S,AZUMA E,et al.Inflammation-induced endothelial cell-derivedextracellular vesicles modulate the cellular statusof pericytes[J/OL]. Sci Rep,2015,5:8505. https://www.nature.com/articles/srep08505.DOI:10.1038/srep08505[20] TAKAHASHI H,SHIBUYA M. The vascularendothelial growth factor(VEGF)/VEGF receptorsystem and its role under physiological andpathological conditions[J]. Clin Sci(Lond),2005,109(3):227-241.[21] WINKLER E A,BELL R D,ZLOKOVIC B V.Central nervous system pericytes in health anddisease[J]. Nat Neurosci,2011,14(11):1398-1405.[22] SCHULZ G B,WIELAND E,WÜSTEHUBELAUSCHJ,et al. Cerebral cavernous malformation-1protein controls DLL4-Notch3 signaling between theendothelium and pericytes[J]. Stroke,2015,46(5):1337-1343.[23] CANTALUPPI V,BIANCONE L,FIGLIOLINIF,et al. Microvesicles derived from endothelialprogenitor cells enhance neoangiogenesis of humanpancreatic islets[J]. Cell Transplant,2012,21(6):1305-1320.[24] DEREGIBUS M C,CANTALUPPI V,CALOGERO R,et al. Endothelial progenitor cell derivedmicrovesicles activate an angiogenic programin endothelial cells by a horizontal transfer ofmRNA[J]. Blood,2007,110(7):2440-2448.[25] SKOG J,WÜRDINGER T,VAN RIJN S,et al.Glioblastoma microvesicles transport RNA andproteins that promote tumour growth and providediagnostic biomarkers[J]. Nat Cell Biol,2008,10(12):1470-1476.[26] IHRIE R A,ALVAREZ-BUYLLA A. Lake-frontproperty:a unique germinal niche by the lateralventricles of the adult brain[J]. Neuron,2011,70(4):674-686.[27] DOEPPNER T R,HERZ J,GÖRGENS A,etal. Extracellular vesicles improve post-strokeneuroregeneration and prevent postischemicimmunosuppression[J]. Stem Cells Transl Med,2015,4(10):1131-1143.[28] COSSETTI C,IRACI N,MERCER T R,et al.Extracellular vesicles from neural stem cells transferIFN-γ via Ifngr1 to activate Stat1 signaling in targetcells[J]. Mol Cell,2014,56(2):193-204.[29] HIGA G S,DE SOUSA E,WALTER L T,et al.MicroRNAs in neuronal communication[J]. MolNeurobiol,2014,49(3):1309-1326.[30] KAWIKOVA I,ASKENASE P W. Diagnosticand therapeutic potentials of exosomes in CNSdiseases[J/OL]. Brain Res,2015,1617:63-71. https://doi.org/10.1016/j.brainres.2014.09.070[31] LACHENAL G,PERNET-GALLAY K,CHIVETM,et al. Release of exosomes from differentiatedneurons and its regulation by synaptic glutamatergicactivity[J]. Mol Cell Neurosci,2011,46(2):409-418.[32] GOLDIE B J,DUN M D,LIN M,et al. ActivityassociatedmiRNA are packaged in Map1b-enrichedexosomes released from depolarized neurons[J].Nucleic Acids Res,2014,42(14):9195-9208.[33] CLARKSON A N,OVERMAN J J,ZHONG S,etal. AMPA receptor-induced local brain-derivedneurotrophic factor signaling mediates motorrecovery after stroke[J]. J Neurosci,2011,31(10):3766-3775.[34] GONCALVES M B,MALMQVIST T,CLARKEE,et al. Neuronal RARβ signaling modulates PTENactivity directly in neurons and via exosome transferin astrocytes to prevent glial scar formation andinduce spinal cord regeneration[J]. J Neurosci,2015,35(47):15731-15745.[35] SHEN L H,LI Y,GAO Q,et al. Down-regulationof neurocan expression in reactive astrocytespromotes axonal regeneration and facilitates theneurorestorative effects of bone marrow stromalcells in the ischemic rat brain[J]. Glia,2008,56(16):1747-1754.[36] QUERFURTH H W,LAFERLA F M. Alzheimer'sdisease[J]. N Engl J Med,2010,362(4):329-344.[37] YUYAMA K,SUN H,MITSUTAKE S,et al.Sphingolipid-modulated exosome secretion promotesclearance of amyloid-β by microglia[J]. J Biol Chem,2012,287(14):10977-10989.[38] TAMBOLI I Y,BARTH E,CHRISTIAN L,etal. Statins promote the degradation of extracellularamyloid {beta}-peptide by microglia via stimulationof exosome-associated insulin-degrading enzyme(IDE)secretion[J]. J Biol Chem,2010,285(48):37405-37414.[39] DARWISH H,MAHMOOD A,SCHALLERT T,etal. Simvastatin and environmental enrichment effecton recognition and temporal order memory aftermild-to-moderate traumatic brain injury[J]. Brain Inj,2014,28(2):211-226.[40] CHEN J,ZHANG Z G,LI Y,et al. Statins induceangiogenesis,neurogenesis,and synaptogenesisafter stroke[J]. Ann Neurol,2003,53(6):743-751.[41] XIN H,LI Y,CHOPP M. Exosomes/miRNAs asmediating cell-based therapy of stroke[J/OL]. FrontCell Neurosci,2014,8:377. https://doi.org/10.3389/fncel.2014.00377.[42] XIN H,LI Y,LIU Z,et al. MiR-133b promotesneural plasticity and functional recovery aftertreatment of stroke with multipotent mesenchymalstromal cells in rats via transfer of exosome-enrichedextracellular particles[J]. Stem Cells,2013,31(12):2737-2746.[43] XIN H,KATAKOWSKI M,WANG F,et al.MicroRNA cluster miR-17-92 cluster in exosomesenhance neuroplasticity and functional recoveryafter stroke in rats[J]. Stroke,2017,48(3):747-753. |
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