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Adenovirus vector induced Innate Immune responses: Impact upon efficacy and toxicity in gene therapy and vaccine applications

机译:腺病毒载体诱导的先天免疫反应:对基因治疗和疫苗应用中功效和毒性的影响

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摘要

Extensively characterized, modified, and employed for a variety of purposes, Adenovirus (Ad) vectors are generally regarded as having great potential by many applied virologists who wish to manipulate and use viral biology to achieve beneficial clinical outcomes. Despite widespread functional prominence and utility, (i.e.: Ad based clinical trials have begun to progress to critical Phase III levels, it has recently become apparent that investigations regarding the innate immune response to Ads may reveal not only reasons behind previous failures, but also reveal novel insights that will allow for safer, more efficacious uses of this important gene transfer platform. Insights gained by the exploration of Ad induced innate immune responses will likely be most important to the fields of vaccine development, since Ad based vaccines are highly acknowledged as one of the more promising vaccine platforms in development today.Adenovirus is currently known to interact with several different extracellular, intracellular, and membrane bound innate immune sensing systems. Past and recent studies involving manipulation of the Ad infectious cycle as well as use of different mutants have shed light on some of the initiation mechanisms underlying Ad induced immune responses. More recent studies using microarray based analyses, genetically modified cell lines and/or mouse mutants, and advanced generation Ad vectors have revealed important new insights into the scope and mechanism of this cellular defensive response. This review is an attempt to synthesize these studies, update Ad biologists to the current knowledge surrounding these increasingly important issues, as well point areas where future research should be directed. It should also serve as a sobering reality to researchers exploring the use of any gene transfer vector, as to the complexities potentially involved when contemplating use of such vectors for human applications.
机译:广泛表征,修饰并用于多种目的的腺病毒(Ad)载体通常被许多希望操纵和使用病毒生物学以实现有益的临床结果的应用病毒学家认为具有巨大潜力。尽管功能上的重要性和实用性得到广泛应用(例如:基于Ad的临床试验已经开始发展到关键的III期水平,但最近变得很明显,有关对Ad的固有免疫反应的研究不仅可以揭示先前失败的原因,而且可以揭示通过新颖的见解,可以更安全,更有效地利用这一重要的基因转移平台,探索Ad诱导的先天免疫应答获得的见解对于疫苗开发领域可能是最重要的,因为基于Ad的疫苗是公认的一种目前已知腺病毒可与几种不同的细胞外,细胞内和膜结合的先天免疫传感系统相互作用,过去和最近的研究涉及操纵Ad传染周期以及使用不同的突变体。阐明了Ad诱导的im背后的一些引发机制调整响应。使用基于微阵列的分析,基因修饰的细胞系和/或小鼠突变体以及先进的Ad载体的最新研究已经揭示了对这种细胞防御反应的范围和机制的重要新见解。本文旨在总结这些研究,使Ad生物学家了解有关这些日益重要的问题的最新知识,以及应指导未来研究的领域。对于研究使用任何基因转移载体的研究人员,以及考虑将此类载体用于人类应用时可能涉及的复杂性,这也应成为一个发人深省的现实。

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