School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane 4072, Australia.
Institute for Molecular Bioscience, The University of Queensland, St Lucia, Queensland 4072, Australia.
Int J Pharm. 2022 Apr 5;617:121614. doi: 10.1016/j.ijpharm.2022.121614. Epub 2022 Mar 1.
Currently there is no approved vaccine to prevent and/or treat group A Streptococcus (GAS) infection. With increasing reports of GAS antibiotic resistance, vaccine adjuvants and targeted delivery systems which induce a strong immune response are a widely acknowledged unmet need. Through extensive structure-activity studies, we investigated a cyclic decapeptide physically mixed with a GAS B cell peptide epitope (J8), a universal T helper epitope (PADRE), and different synthetic lipidic moieties as a conceivable self-adjuvanting GAS vaccine. We explored the structure (orientation)-relationship of the chemically-conjugated B cell epitope and T helper epitope peptide as part of this physically-mixed vaccine. Following in vivo assessment in mice, these cyclic lipopeptide vaccines showed successful induction of J8-specific systemic IgG antibodies when administered subcutaneously without additional adjuvant. Interestingly, an exposed C-terminus of the GAS B cell epitope and a 16-carbon alpha-amino fatty acid lipid was required for strong immunoreactivity, capable of effectively opsonising multiple strains of clinically-isolated GAS bacteria. Physicochemical assessment proved the alpha helix structure of the GAS B cell epitope was retained, impacting particle self-assembly and vaccine immunoreactivity. This study showed the capability for a self-adjuvanting cyclic delivery system to act as a vehicle for the delivery of GAS peptide antigens to treat GAS infection.
目前尚无预防和/或治疗 A 组链球菌(GAS)感染的批准疫苗。随着 GAS 抗生素耐药性报告的增加,疫苗佐剂和靶向递送系统可诱导强烈的免疫反应,这是一种广泛认可的未满足的需求。通过广泛的结构-活性研究,我们研究了一种与 GAS B 细胞肽表位(J8)、通用 T 辅助表位(PADRE)物理混合的环十肽,以及不同的合成脂质部分,作为一种有前途的自佐剂 GAS 疫苗。我们探讨了化学偶联的 B 细胞表位和 T 辅助表位肽的结构(取向)关系,作为这种物理混合疫苗的一部分。在小鼠体内评估后,这些环脂肽疫苗在皮下给药时无需额外佐剂即可成功诱导 J8 特异性系统 IgG 抗体。有趣的是,GAS B 细胞表位的暴露 C 末端和 16 碳α-氨基脂肪酸脂质是强烈免疫反应所必需的,能够有效调理多种临床分离的 GAS 细菌。物理化学评估证明 GAS B 细胞表位的α螺旋结构得以保留,影响颗粒自组装和疫苗免疫原性。这项研究表明,自佐剂环递药系统有能力作为 GAS 肽抗原的递送载体,用于治疗 GAS 感染。