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首页> 外文期刊>International Journal of Pharmaceutics >Thermostability of the coating, antigen and immunostimulator in an adjuvanted oral capsule vaccine formulation
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Thermostability of the coating, antigen and immunostimulator in an adjuvanted oral capsule vaccine formulation

机译:涂料,抗原和免疫刺激剂在佐剂口腔胶囊疫苗制剂中的热稳定性

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摘要

Graphical abstract Display Omitted Abstract Oral vaccines present an attractive alternative to injectable vaccines for enteric diseases due to ease of delivery and the induction of intestinal immunity at the site of infection. However, susceptibility to gastrointestinal proteolysis, limited transepithelial uptake and a lack of clinically acceptable adjuvants present significant challenges. A further challenge to mass vaccination in developing countries is the very expensive requirement to maintain the cold chain. We recently described the effectiveness of a Single Multiple Pill ? (SmPill ? ) adjuvanted capsule approach to enhance the effectiveness of a candidate enterotoxigenic Escherichia coli (ETEC) oral vaccine. Here it was demonstrated that this delivery system maintains the antigenicity of ETEC colonisation factor antigen I (CFA/I) and the immunostimulatory activity of the orally active α-Galactosylceramide (α-GalCer) adjuvant after storage of SmPill ? minispheres under room temperature and extreme storage conditions for several months. In addition, the internal structure of the cores of SmPill ? minispheres and antigen release features at intestinal pH were found to be preserved under all these conditions. However, changes in the surface morphology of SmPill ? minispheres leading to the antigen release at gastric pH were observed after a few weeks of storage under extreme conditions. Those modifications were prevented by the introduction of an Opadry ? White film coating layer between the core of SmPill ? minispheres and the enteric coating. Under these conditions, protection against antigen release at gastric pH was maintained even under high temperature and humidity conditions. These results support the potential of the SmPill ? minisphere approach to maintain the stability of an adjuvanted whole cell killed oral vaccine formulation.
机译:图形摘要显示省略摘要口腔疫苗为肠疾病提供了一种有吸引力的替代疫苗,因为易于递送和感染部位肠梗阻诱导肠梗阻。然而,对胃肠道蛋白水解,有限的TransepeLelial摄取和缺乏临床上可接受的佐剂的易感性具有显着的挑战。在发展中国家的大规模疫苗接种的进一步挑战是维持冷链的非常昂贵的要求。我们最近描述了单一多药丸的有效性? (SMPILL?)佐剂胶囊方法,提升候选肠肠毒性大肠杆菌(ETEC)口腔疫苗的有效性。在这里,证明该递送系统保持ETEC定植因子抗原I(CFA / I)的抗原性以及在SMPILL储存后口服活性α-半乳糖基胺(α-高分子)佐剂的免疫刺激活性?在室温下的小球和极端的储存条件下几个月。另外,SMPILL内核的内部结构?在所有这些条件下,发现肠道pH下的抗原释放特征在所有这些条件下保存。但是,SMPILL表面形态的变化?在极端条件下储存几周后,观察到胃pH下抗原释放的抗原释放的小泳穴。通过引入OPADRY来防止这些修改? Smpill核心之间的白色薄膜涂层?小球和肠溶涂层。在这些条件下,即使在高温和湿度条件下也保持胃pH下的抗原释放的保护。这些结果支持SMPILL的潜力?小型方法以维持佐剂全细胞杀死口腔疫苗配方的稳定性。

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