首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Development of a novel mucosal vaccine against strangles by supercritical enhanced atomization spray-drying of Streptococcus equi extracts and evaluation in a mouse model
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Development of a novel mucosal vaccine against strangles by supercritical enhanced atomization spray-drying of Streptococcus equi extracts and evaluation in a mouse model

机译:马链球菌提取物超临界增强雾化喷雾干燥技术开发的新型抗勒死性粘膜疫苗及小鼠模型评价

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摘要

Strangles is an extremely contagious and sometimes deadly disease of the Equidae. The development of an effective vaccine should constitute an important asset to eradicate this worldwide infectious disease. In this work, we address the development of a mucosal vaccine by using a Supercritical Enhanced Atomization (SEA) spray-drying technique. Aqueous solutions containing the Streptococcus equi extracts and chitosan were converted into nanospheres with no use of organic solvents. The immune response in a mouse model showed that the nanospheres induced a well-balanced Th1 and Th2 response characterized by a unitary ratio between the concentrations of IgG2a and IgG1, together with IgA production. This strategy revealed to be an effective alternative for immunization against S. equi, and therefore, it may constitute a feasible option for production of a strangles vaccine.
机译:勒死是马科的一种极具传染性,有时甚至是致命的疾病。开发有效的疫苗应该是根除这种全球性传染病的重要资产。在这项工作中,我们通过使用超临界增强雾化(SEA)喷雾干燥技术来解决粘膜疫苗的开发问题。不用有机溶剂将含有马链球菌提取物和壳聚糖的水溶液转化为纳米球。小鼠模型中的免疫反应表明,纳米球诱导了均衡的Th1和Th2反应,其特征在于IgG2a和IgG1浓度之间的单一比率以及IgA的产生。该策略显示是针对马链球菌免疫的有效替代方法,因此,它可能构成生产勒死疫苗的可行选择。

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