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Vaccine. 2013 Jul 25;31(34):3392-5. doi: 10.1016/j.vaccine.2012.11.021. Epub 2012 Nov 20.
There is a wide range of methods and technologies aimed at improving human vaccine products and the way they are delivered. Some of these have the potential to increase vaccine effectiveness in specific populations and may furthermore help to increase vaccine access, reduce costs, and ease the logistical burdens of immunization programs, especially in low-resource settings. One strategy under evaluation is the use of intradermal (ID) delivery of vaccines, which has been shown to result in dose sparing with some vaccines. Novel ID delivery devices could enable needle-free and therefore safer and more reliable ID administration than current ID injection methods, facilitating ID delivery and dose sparing with existing or new vaccines. There are promising clinical data with some vaccines that highlight the potential of reduced-dose immunization via the ID route. And more studies are under way. However, a number of clinical and technical research as well as operational challenges exist, including establishing the optimal doses for different vaccines, reformulating to adjust antigen concentration or add preservatives, matching vaccine vial volume to session size, working with vaccine manufacturers to achieve regulatory clearance for ID delivery, and developing ID delivery devices suitable for the varying scenarios of use of different vaccines. These will need to be addressed before the benefits of ID delivery and the impact of novel ID delivery technologies on human health are fully realized.
有许多旨在改进人类疫苗产品及其接种方式的方法和技术。其中一些方法可能具有提高特定人群疫苗效果的潜力,此外还有助于增加疫苗可及性、降低成本,并减轻免疫规划的后勤负担,特别是在资源匮乏的环境中。正在评估的一项策略是使用疫苗皮内(ID)接种,已证明这种方法可以节省某些疫苗的剂量。新型 ID 接种装置可以实现无针接种,从而比当前 ID 注射方法更安全、更可靠,有助于使用现有或新型疫苗进行 ID 接种和节省剂量。一些疫苗的临床数据前景可观,突出了通过 ID 途径进行减剂量免疫的潜力。而且,更多的研究正在进行中。但是,仍存在许多临床和技术研究以及操作方面的挑战,包括确定不同疫苗的最佳剂量、调整抗原浓度或添加防腐剂进行配方改革、使疫苗瓶体积与接种次数匹配、与疫苗制造商合作以获得 ID 接种的监管批准,以及开发适合不同疫苗使用情况变化的 ID 接种装置。在充分实现 ID 接种的益处和新型 ID 接种技术对人类健康的影响之前,这些问题都需要得到解决。