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Status of vaccine research and development of vaccines for HIV-1

机译:HIV-1疫苗研究和疫苗疫苗的现状

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Human immunodeficiency virus (HIV) is the cause of one of the most lethal pandemics in human history, although in recent years access to highly effective anti-retroviral therapy has provided new hope worldwide. Transmission of HIV by sexual contact, childbirth and injection drug use has been reduced, but 2 million are newly infected each year, and much of the transmission is from people who do not know their status. In addition to known methods, a preventive vaccine is needed to end the pandemic. The extraordinary mutability and genetic diversity of HIV is an enormous challenge, but vaccines are being designed for broad coverage. Computer-aided design of mosaic immunogens, incorporating many epitopes from the entire genome or from conserved regions aim to induce CD8+ T cells to kill virus-infected cells or inhibit virus replication, while trimeric envelope proteins or synthetic mimics aim to induce broadly reactive neutralizing antibodies similar to those cloned from some infected patients. Induction of more potent and durable responses may require new adjuvants or replicating chimeric vectors chimeras that bear HIV genes. Passive or genetic delivery of broadly neutralizing antibodies may provide broad protection and/or lead to insights for vaccine designers. Proof-of-concept trials in non-human primates and in one human efficacy trial have provided scientific clues for a vaccine that could provide broad and durable protection against HIV. The use of vaccines to destroy HIV reservoirs as part of therapy or cure is now also being explored. (C) 2016 World Health Organization; licensee Elsevier Ltd.
机译:人类免疫缺陷病毒(HIV)是人类历史上最致命的流行病之一的原因,虽然近年来获得高效抗逆转录病毒治疗提供了新的希望的全球性。通过性接触传播,分娩和注射吸毒传播艾滋病病毒的已经减少,但200万,每年新感染,并且大部分传输的是人谁不知道他们的状态。除了公知的方法,需要一种预防性疫苗,以结束流行病。艾滋病毒非凡的可变性和遗传多样性是一个巨大的挑战,但疫苗被设计为覆盖面广。计算机辅助镶嵌免疫原的设计,从整个基因组或从保守的区域掺入许多表位的目标是诱导CD8 + T细胞杀死病毒感染的细胞或抑制病毒的复制,而三聚体包膜蛋白或合成模拟物的目的是诱导广泛反应性的中和抗体类似的一些感染患者克隆。的更有效和持久应答的诱导可能需要新的辅料或复制该承担HIV基因嵌合载体嵌合体。被动或广谱中和抗体的基因递送可用于疫苗研究人员提供广泛的保护和/或导致的见解。证明了概念试验的非人类灵长类动物和人类的一个药效试验已经提供了一种疫苗,可以提供广泛而针对HIV耐用保护的科学线索。使用疫苗的破坏HIV水库作为治疗或治愈的一部分,现在也正在探索。 (c)2016年世界卫生组织;被许可人elsevier有限公司

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