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Extended Polysaccharide Analysis within the Liposomal Encapsulation of Polysaccharides System

机译:多糖体系脂质体包封内的扩展多糖分析

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摘要

The Liposomal Encapsulation of Polysaccharides (LEPS) dual antigen vaccine carrier system was assessed across two distinct polysaccharides for encapsulation efficiency, subsequent liposomal surface adornment with protein, adjuvant addition, and size and charge metrics. The polysaccharides derive from two different serotypes of and have traditionally served as the active ingredients of vaccines against pneumococcal disease. The LEPS system was designed to mimic glycoconjugate vaccines that covalently couple polysaccharides to protein carriers; however, the LEPS system uses a noncovalent co-localization mechanism through protein liposomal surface attachment. In an effort to more thoroughly characterize the LEPS system across individual vaccine components and thus support broader future utility, polysaccharides from serotypes 3 and 4 were systematically compared within the LEPS framework both pre- and post-surface protein attachment. For both polysaccharides, ≥85% encapsulation efficiency was achieved prior to protein surface attachment. Upon protein attachment with either a model protein (GFP) or a pneumococcal disease antigen (PncO), polysaccharide encapsulation was maintained at ≥61% encapsulation efficiency. Final LEPS carriers were also evaluated with and without alum as an included adjuvant, with encapsulation efficiency maintained at ≥30%, while protein surface attachment efficiency was maintained at ≥~50%. Finally, similar trends and distributions were observed across the different polysaccharides when assessed for liposomal zeta potential and size.
机译:在两种不同的多糖中评估了多糖的脂质体包封,用于封装效率的两个不同多糖,随后的脂质体表面装饰,蛋白质,佐剂加成和尺寸和电荷度量。多糖衍生出两种不同的血清型,传统上用作疫苗疫苗的疫苗的活性成分。 LEPS系统被设计为模拟糖凝果疫苗,使与蛋白质携带者共价耦合多糖;然而,LEPS系统通过蛋白质脂质体表面附着使用非共价协增机制。为了更彻底地描述各个疫苗组件的LEPS系统,因此支持更广泛的未来实用性,在表面上和后表面蛋白质附着的LEPS框架内系统地系统地进行了来自血清型3和4的多糖。对于多糖,在蛋白质表面附着之前达到≥85%的封装效率。在蛋白质附着在模型蛋白(GFP)或肺炎球菌疾病抗原(PNCO)上,维持多糖包封以≥61%的封装效率。最终的LEPS载体也被评估,并且没有明矾作为包括佐剂,包封效率保持≥30%,而蛋白质表面附着效率保持在≥〜50%。最后,当评估脂质体Zeta电位和大小时,在不同的多糖中观察到类似的趋势和分布。

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