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An alternative approach to combination vaccines: intradermal administration of isolated components for control of anthrax, botulism, plague and staphylococcal toxic shock

机译:组合疫苗的替代方法:皮内注射分离的成分,以控制炭疽,肉毒中毒,鼠疫和葡萄球菌中毒休克

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Background Combination vaccines reduce the total number of injections required for each component administered separately and generally provide the same level of disease protection. Yet, physical, chemical, and biological interactions between vaccine components are often detrimental to vaccine safety or efficacy. Methods As a possible alternative to combination vaccines, we used specially designed microneedles to inject rhesus macaques with four separate recombinant protein vaccines for anthrax, botulism, plague and staphylococcal toxic shock next to each other just below the surface of the skin, thus avoiding potentially incompatible vaccine mixtures. Results The intradermally-administered vaccines retained potent antibody responses and were well- tolerated by rhesus macaques. Based on tracking of the adjuvant, the vaccines were transported from the dermis to draining lymph nodes by antigen-presenting cells. Vaccinated primates were completely protected from an otherwise lethal aerosol challenge by Bacillus anthracis spores, botulinum neurotoxin A, or staphylococcal enterotoxin B. Conclusion Our results demonstrated that the physical separation of vaccines both in the syringe and at the site of administration did not adversely affect the biological activity of each component. The vaccination method we describe may be scalable to include a greater number of antigens, while avoiding the physical and chemical incompatibilities encountered by combining multiple vaccines together in one product.
机译:背景技术组合疫苗减少了分别给予每种成分所需的注射总数,并且通常提供相同水平的疾病保护。但是,疫苗成分之间的物理,化学和生物学相互作用通常不利于疫苗的安全性或有效性。方法作为组合疫苗的一种可能替代方法,我们使用了专门设计的微针,将恒河猴与四种单独的重组蛋白疫苗一起注射,用于炭疽,肉毒杆菌中毒,鼠疫和葡萄球菌毒性休克,紧挨着皮肤表面相邻,从而避免了潜在的不相容性疫苗混合物。结果皮内注射的疫苗保留了强效的抗体反应,并且被猕猴很好地耐受。基于佐剂的跟踪,抗原呈递细胞将疫苗从真皮运输到引流淋巴结。接种过的灵长类动物完全不受炭疽芽孢杆菌孢子,肉毒杆菌神经毒素A或葡萄球菌肠毒素B的致命气溶胶攻击。结论我们的结果表明,在注射器内和给药部位对疫苗的物理分离均不会对疫苗产生不利影响。每个成分的生物活性。我们描述的疫苗接种方法可以扩展,以包含更多数量的抗原,同时避免了将一种产品组合在一起的多种疫苗所遇到的物理和化学不相容性。

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