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首页> 外文期刊>Bioorganic and medicinal chemistry >Self-assembly of trimethyl chitosan and poly(anionic amino acid)-peptide antigen conjugate to produce a potent self-adjuvanting nanovaccine delivery system
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Self-assembly of trimethyl chitosan and poly(anionic amino acid)-peptide antigen conjugate to produce a potent self-adjuvanting nanovaccine delivery system

机译:三甲基壳聚糖和聚(阴离子氨基酸) - 肽抗原缀合物的自组装以产生效率的自佐剂纳米宫递送系统

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摘要

Short peptides derived from virulent pathogen proteins are promising antigens for the development of vaccines against infectious diseases. However, in order to mimic the danger signals associated with natural infection and stimulate an adaptive immune response, peptide antigens must be co-delivered with immune adjuvants. In this study, a group A streptococcus (GAS) M-protein derived B-cell epitope: J8, and universal T-helper epitope P25 containing peptides, were chemically coupled with different anionic amino acid-based polymers. The poly(anionic amino acid)-peptide antigen conjugates were mixed with trimethyl chitosan (TMC) to produce self-adjuvanting nanoparticulate vaccine candidates. TMC from two different sources were used to analyse their effect on immunogenicity. The nanoparticles produced from a peptide modified with 10 residues of polyglutamic acid and fungal TMC (NP5) stimulated production of the highest levels of serum antibodies in outbred mice. These antibodies were opsonic against all clinical GAS isolates tested.
机译:源自毒性病原体蛋白质的短肽是对传染病的疫苗发育的有前途的抗原。然而,为了模仿与自然感染相关的危险信号并刺激适应性免疫应答,必须用免疫佐剂共同递送肽抗原。在该研究中,一组链球菌(气体)M蛋白衍生的B细胞表位:J8和通用T辅助表位P25含有肽,与不同的阴离子氨基酸基聚合物化学偶联。将聚(阴离子氨基酸) - 份抗原缀合物与三甲基壳聚糖(TMC)混合以产生自佐剂纳米颗粒疫苗候选物。来自两种不同来源的TMC用于分析它们对免疫原性的影响。由用10个残留的聚谷氨酸和真菌TMC(NP5)改性的肽制备的纳米颗粒刺激了分区中的最高水平的血清抗体的产生。这些抗体对所有测试的临床气体分离株进行过滤。

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