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RNAi技术在抗甲型流感病毒中的研究进展 被引量:1

Research Advance of RNAi in Anti-influenza Virus
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摘要 RNAi技术广泛应用于防治人类多种疾病病原的药物和疫苗开发中,并取得了巨大的成果。流感病毒极易发生抗原漂移和抗原转变,这给抗流感病毒药物和疫苗的研制提出很大的挑战。RNAi技术的出现给流感的防治提供了新的思路。对近年来国内外利用RNAi技术开发抗流感病毒药物和新型流感疫苗研究现状及前景进行综述,以期为流感的综合防治研究提供参考。 The RNAi technology has been widely used in drug and vaccine development of the prevention and treatment of various kinds of human diseases pathogeny,and has made great achievements.Antigenic drift and antigenic shift extremely easily occurred in influenza virus, which had put forward a bigchallenge for the development of anti-influenza virus drugs and vaccines.The appearance of RNAi technology gived good ideas for the prevention and control of influenza.This paper summarized the research status and prospects of using RNAi technology to develop anti-influenza virus drugs and new influenza vaccine at home and abroad in recent years, in order to provide references for the research for the prevention and control of influenza.
出处 《生物技术通报》 CAS CSCD 北大核心 2014年第12期55-60,共6页 Biotechnology Bulletin
基金 河南省科技厅基础与前沿技术(122300410135)
关键词 流感病毒 RNA干扰 SIRNA MIRNA 复制 疫苗 Influenza virus RNA interference siRNA miRNA Replication Vaccine
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  • 1Knossow M, Skehel JJ. Variation and infectivity neutralization in influenza [ J ] . Immunology, 2006, 119 ( 1 ) : 1-7.
  • 2杨帅,朱闻斐,舒跃龙.猪流感病毒概述[J].病毒学报,2013,29(3):330-336. 被引量:23
  • 3张宏伟.H7N9禽流感的病毒特征及其对人类健康的潜在威胁[J].第二军医大学学报,2013,34(6):591-594. 被引量:9
  • 4张宝,黄克勇,郭劲松,吴娴波,李凌,朱利,万成松,赵卫.H7N9病毒的来源和重组模式[J].南方医科大学学报,2013,33(7):1017-1021. 被引量:40
  • 5Beuikovt T, Svanarovi P. Role and application of RNA interference in replication of influenza viruses [ J ] . Acta Virol, 2013, 57 ( 2 ) : 97-104.
  • 6Ge Q, McManus MT, Nguyen T, et al. RNA interference of influenza virus production by directly targeting mRNA for degradation and indirectly inhibiting all viral RNA transcription [ J ] . Proc Natl Acad Sci USA, 2003, 100 ( 5 ) : 2718-2723.
  • 7Raza A, Shareef H, Salim H, et al. Selection of predicted siRNA as potential antiviral therapeutic agent against influenza virus [ J ] . Bioinformation, 2011, 6 ( 9 ) : 340-343.
  • 8EIHefnawi M, Alaidi O, Mohamed N, et al. Identification of novel conserved functional motifs across most influenza A viral strains [ J ] . Virol J, 2011, 8 : 44.
  • 9E1Hefnawi M, Hassan N, Kamar M, et al. The design of optimal therapeutic small interfering RNA molecules targeting diverse strains of influenza A virus [ J ] . Bioinformatics, 2011, 27 ( 24 ) : 3364- 3370.
  • 10Perez JT, Varble A, Sachidanandam R, et aL Influenza A virus- generated small RNAs regulate the switch from transcription to replication [ J ] . Proc Natl Acad Sci USA, 2010, 107 ( 25 ) : 11525-11530.

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  • 1Goss RJ. Deer Antlers. Regeneration, function and evolution [ M ] . New York, NY : Academic Press, 1983, 290-291.
  • 2Kierdorf U, Kierdorf H, Szuwart T. Deer antler regeneration : cells, concepts, and contro- versies [ J ] . Journal of Morphology, 2007, 268 ( 8 ) : 726-738.
  • 3Li C. Histogenetic aspects of deer antler development [ J ] . Front Biosci ( Elite Ed ) , 2013, 5 : 479-489.
  • 4P6rez-Gonzlez A, Pazo A, Navajas R, et al. hCLE/C14orf166 associates with DDX1-HSP C117-FAM98B in a novel transcription- dependent shuttling RNA-transporting complex [ J ] . PLoS One, 2014, 9 ( 3 ) : e90957.
  • 5Li C, Suttie J. Morphogenetic aspects of deer antler development [ J ] . Front Biosci ( Elite Ed ) , 2012, 4 : 1836-1842.
  • 6Guo J, Wang W, Liao P, et al. Identification of serum biomarkers for pancreatic adenocarcinoma by proteomic analysis [ J ] . Cancer Science, 2009, 100 ( 12 ) : 2292-2301.
  • 7Rodriguez A, P6rez-Gonzilez A, Nieto A. Cellular human CLE/ C14orf166 protein interacts with influenza virus polymerase and is required for viral replication [ J ] . Journal of Virology, 2011, 85 ( 22 ) : 12062-12066.
  • 8Mateos J, Landeira-Abia A, Fafiin-Labora JA, et al. iTRAQ- based analysis of progerin expression reveals mitochondrial dysfunction, reactive oxygen species accumulation and altered proteostasis [ J ] . Stem Cell Research & Therapy, 2015, 6 ( 1 ) : 119-135.
  • 9Waldera-Lupa DM, Kalfalah F, Florea AM, et al. Proteome-wide analysis reveals an age-associated cellular phenotype of in situ aged human fibroblasts [ J ]. Aging ( Albany NY ), 2014, 6 ( 10 ): 856-872.
  • 10Huarte M, Sanz-Ezquerro J J, Roneal F, et al. PA subunit from influenza virus polymerase complex interacts with a cellular protein with homology to a family of transcriptional activators [J ] . J Virol, 2001, 75 ( 18 ) : 8597-8604.

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