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Adjuvants for Clostridium tetani and Clostridium diphtheriae vaccines updating

机译:破伤风梭菌和白喉梭菌疫苗的佐剂更新

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摘要

It's known that diphtheria and tetanus are a contagious lethal diseases over the years, they caused by pathogenic microbes corynebacterium diphtheria and Clostridium tetani, respectively. The diseases result from the production of bacterial toxin. Vaccination with bacterial toxoid vaccines adsorbed on particulates adjuvants still are the best way to prevent this epidemic diseases from spread. The particulate vaccines have been shown to be more efficient than soluble one for the induction of the immune responses. Nanoparticles can be engineered to enhance the immune responses. As well known the immune response to inactivate killed and subunit vaccine enhances by alum adjuvants. The adjuvants examined and tested after reducing its size to particle size, thus mimic size of viruses which is considered smallest units can derive the immune system. The major issue is minimizing the adjuvant particles, to gain insight of resulting immunity types and impact on immune response. The adjuvant effect of micro/nanoparticles appears to largely be a consequence of their uptake into antigen presenting cells.
机译:众所周知,白喉和破伤风是多年来传染性致死的疾病,它们分别由致病微生物白喉棒状杆菌和破伤风梭菌引起。这些疾病是由细菌毒素的产生引起的。接种吸附在颗粒物佐剂上的细菌类毒素疫苗仍然是防止这种流行病传播的最佳方法。颗粒疫苗已被证明比可溶性疫苗更有效地诱导免疫反应。纳米颗粒可以被设计成增强免疫反应。众所周知,明矾佐剂增强了对灭活灭活疫苗和亚单位疫苗的免疫反应。佐剂在将其大小减小到颗粒大小后进行检查和测试,从而模拟被认为是最小单位的病毒大小,可以衍生免疫系统。主要问题是尽量减少佐剂颗粒,以深入了解由此产生的免疫类型和对免疫反应的影响。微/纳米颗粒的佐剂作用似乎很大程度上是它们被摄取到抗原呈递细胞的结果。

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