摘要
人甲型流感病毒(IAV)是对人类一个相对较新的威胁,其变得不可战胜是由于没有可用的合适的抗病毒药物或持久有效的疫苗来防治。当前所有控制这种A型流感病毒(IAV)的措施都被其表现出的遗传漂移和漂移现象所制服。世界各地的研究人员正在探索抗转录技术的治疗潜力(AST),用以对抗这种基因多变病毒。抗转录技术指的是实验室操作和/或修饰DNA或RNA,使其成分(核苷酸)与靶核酸或mRNA或蛋白质本身杂交以抑制蛋白最后的编码。RNA抑制(RNAi)机制(特别是siRNA)似乎是抗转录技术不同的药物之间的最有前途的。然而,其他药物如寡核苷酸,核酶和脱氧核酶也显示巨大的潜力。诱饵和适配子,单用或与其他药物合用,也被作为病毒复制的抑制剂被开发。目前,大多数这些药物已经通过了初步的体外实验和体内实验,通过不同程度的临床试验,但至今为止没有一个被批准用于人类。本综述将整合世界各地研究人员在该领域作出的努力,讨论发展这一技术的未来前景,驯服这个臭名昭著的病毒。,每天这项技术的各个领域都正在被探索,这个化学物质将实现从“实验室到临床”,这一天不远了。
关键词: 抗转录技术;寡核苷酸适配子,诱饵,脱氧核酶,寡核苷酸,核糖酶,核糖核酸干扰.
Current Molecular Medicine
Title:Taming Influenza Virus: Role of Antisense Technology
Volume: 15 Issue: 5
关键词: 抗转录技术;寡核苷酸适配子,诱饵,脱氧核酶,寡核苷酸,核糖酶,核糖核酸干扰.
摘要: Human Influenza A virus (IAV), a relatively newer threat to mankind, is becoming invincible due to non availability of proper antiviral drug or effective long lasting vaccine against it. All existing measures to control this virus are overpowered by the phenomena of genetic shift and drift shown by Influenza A virus (IAV). Throughout the world, researchers are exploring the therapeutic potential of antisense technology (AST) to fight against this genetically variable virus. Antisense technology refers to the laboratory manipulation and/or modification of DNA or RNA so that its components (nucleotides) hybridize with target nucleic acid or mRNA or protein itself to inhibit the protein finally encoded. RNA inhibitory (RNAi) mechanism (particularly siRNA) seems to be the most promising among the different agents of AST. However, other agents like oligonucleotides, ribozymes and DNAzymes also show great potential. Decoys and aptamers, alone or in conjunction with other agents, are also being explored to inhibit the replication of virus. Presently, most of these agents have passed initial level of in vitro and in vivo experiments, passing through various levels of clinical trials but none of them has been approved for human purpose till date. Present review consolidates the efforts of researchers worldwide in this particular field and discusses the future perspectives this technology holds, to tame this notorious virus. Day by day, various areas of this technology are being explored and the day is not far when this chemical entity will reach from “bench to bedside”.
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Cite this article as:
Taming Influenza Virus: Role of Antisense Technology, Current Molecular Medicine 2015; 15 (5) . https://dx.doi.org/10.2174/1566524015666150630124300
DOI https://dx.doi.org/10.2174/1566524015666150630124300 |
Print ISSN 1566-5240 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5666 |
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