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首页> 外文期刊>Clinical and vaccine immunology: CVI >Needleless vaccine delivery using micro-shock waves.
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Needleless vaccine delivery using micro-shock waves.

机译:针头疫苗交付使用微冲击波。

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Shock waves are one of the most efficient mechanisms of energy dissipation observed in nature. In this study, utilizing the instantaneous mechanical impulse generated behind a micro-shock wave during a controlled explosion, a novel nonintrusive needleless vaccine delivery system has been developed. It is well-known that antigens in the epidermis are efficiently presented by resident Langerhans cells, eliciting the requisite immune response, making them a good target for vaccine delivery. Unfortunately, needle-free devices for epidermal delivery have inherent problems from the perspective of the safety and comfort of the patient. The penetration depth of less than 100 mum in the skin can elicit higher immune response without any pain. Here we show the efficient utilization of our needleless device (that uses micro-shock waves) for vaccination. The production of liquid jet was confirmed by high-speed microscopy, and the penetration in acrylamide gel and mouse skin was observed by confocal microscopy. Salmonella enterica serovar Typhimurium vaccine strain pmrG-HM-D (DV-STM-07) was delivered using our device in the murine salmonellosis model, and the effectiveness of the delivery system for vaccination was compared with other routes of vaccination. Vaccination using our device elicits better protection and an IgG response even at a lower vaccine dose (10-fold less) compared to other routes of vaccination. We anticipate that our novel method can be utilized for effective, cheap, and safe vaccination in the near future.
机译:冲击波是一种最有效的之一观察到的能量耗散机制大自然。瞬时机械脉冲生成的背后微冲击波在控制爆炸,小说不可插入针头疫苗交付系统开发。抗原的表皮是有效的居民提出的朗格汉斯细胞,诱发必要的免疫反应,使他们很好的疫苗交付的目标。针头表皮交付设备从的角度固有问题病人的安全和舒适。少于100妈妈的穿透深度皮肤可以引起更高的免疫反应任何痛苦。我们的针头设备(使用微冲击波)接种疫苗。证实了飞机高速显微镜丙烯酰胺凝胶和小鼠皮肤的渗透被共焦显微镜观察。血清型鼠伤寒疫苗株pmrG-HM-D (DV-STM-07)是使用我们的交付设备在沙门氏菌病小鼠模型,交付系统的有效性疫苗接种是相对于其他路线接种疫苗。即使在更好的保护和一个免疫球蛋白反应较低的疫苗剂量相比(10倍少)接种疫苗的其他路线。我们的方法可以用于有效,便宜,而且安全的疫苗接种在不久的将来。

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