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A potential disruptive technology in vaccine development: gene-based vaccines and their application to infectious diseases.

机译:疫苗开发中的潜在破坏性技术:基于基因的疫苗及其在传染病中的应用。

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Vaccine development requires an amalgamation of disparate disciplines and has unique economic and regulatory drivers. Non-viral gene-based delivery systems, such as formulated plasmid DNA, are new and potentially disruptive technologies capable of providing 'cheaper, simpler, and more convenient-to-use' vaccines. Typically and somewhat ironically, disruptive technologies have poorer product performance, at least in the near-term, compared with the existing conventional technologies. Because successful product development requires that the product's performance must meet or exceed the efficacy threshold for a desired application, the appropriate selection of the initial product applications for a disruptive technology is critical for its successful evolution. In this regard, the near-term successes of gene-based vaccines will likely be for protection against bacterial toxins and acute viral and bacterial infections. Recent breakthroughs, however, herald increasing rather than languishing performance improvements in the efficacy of gene-based vaccines. Whether gene-based vaccines ultimately succeed in eliciting protective immunity in humans to persistent intracellular pathogens, such as HIV, malaria and tuberculosis, for which the conventional vaccine technologies have failed, remains to be determined. A success against any one of the persistent intracellular pathogens would be sufficient proof that gene-based vaccines represent a disruptive technology against which future vaccine technologies will be measured.
机译:疫苗的开发需要将不同学科融合在一起,并具有独特的经济和法规驱动力。非基于病毒基因的传递系统,例如配制的质粒DNA,是能够提供“更便宜,更简单,更易于使用”疫苗的新型且具有潜在破坏性的技术。具有讽刺意味的是,与现有的常规技术相比,破坏性技术至少在短期内具有较差的产品性能,这通常具有一定讽刺意味。因为成功的产品开发要求产品的性能必须达到或超过所需应用程序的功效阈值,所以对于颠覆性技术的正确选择初始产品应用程序对于其成功发展至关重要。在这方面,基于基因的疫苗的近期成功可能是为了防止细菌毒素以及急性病毒和细菌感染。然而,最近的突破预示着基于基因的疫苗效力的提高而不是削弱的性能提高。基于基因的疫苗是否最终能够成功引发人类对持久性细胞内病原体(如HIV,疟疾和结核病)的保护性免疫,而传统的疫苗技术对此未能奏效。对任何一种持久性细胞内病原体的成功治疗都将充分证明基于基因的疫苗代表了一种破坏性技术,可以用来衡量未来的疫苗技术。

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