首页> 外文会议>Conference on vaccine technology VI >SAFETY AND BIODISTRIBUTION OF SULFATED ARCHAEAL GLYCOLIPID ARCHAEOSOMES AS VACCINE ADJUVANTS
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SAFETY AND BIODISTRIBUTION OF SULFATED ARCHAEAL GLYCOLIPID ARCHAEOSOMES AS VACCINE ADJUVANTS

机译:硫酸化古菌糖脂类古生物作为疫苗佐剂的安全性和生物分布

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Archaeosomes are liposomes comprised of ether lipids derived from various archaea which, as adjuvants, can induce robust, long-lasting humoral and cell-mediated immune responses to entrapped antigens. Traditional total polar lipid (TPL) archaeosome formulations are relatively complex and semi-synthetic archaeosomes involve many synthetic steps to arrive at the final desired glycolipid composition. We have developed a novel archaeosome formulation comprising a sulfated saccharide group covalently linked to the free sn-1 hydroxyl backbone of an archaeal core lipid (sulfated S-lactosylarchaeol, SLA) mixed with uncharged glycolipid (lactosylarchaeol, LA). This new class of adjuvants can be easily synthesized and retains strong immunostimulatory activity for induction of cell-mediated immunity following systemic immunization. Herein, we demonstrate the safety of SLA/LA archaeosomes following intramuscular injection to mice and evaluate the immunogenicity, in vivo distribution and cellular uptake of antigen (ovalbumin) encapsulated into SLA/LA archaeosomes. Overall, we have found that semi-synthetic sulfated glycolipid archaeosomes are a safe and effective novel class of adjuvants capable of inducing strong antigen-specific immune responses in mice and protection against subsequent B16 melanoma tumor challenge. A key step in their mechanism of action appears to be the recruitment of immune cells to the injection site and the subsequent trafficking of antigen to local draining lymph nodes. A better understanding of the safety and mechanism of action of novel adjuvants such as archaeosomes is a key step in their advancement into clinical use.
机译:考古小体是由衍生自各种古细菌的醚脂质组成的脂质体,作为佐剂,它们可以诱导对被包埋的抗原的强大,持久的体液和细胞介导的免疫应答。传统的总极性脂质(TPL)古菌体制剂相对复杂,半合成古菌体涉及许多合成步骤,以达到最终所需的糖脂成分。我们已经开发了一种新颖的古细菌制剂,其包含与古细菌核心脂质的游离sn-1羟基主链共价连接的硫酸化糖基团(硫酸化的S-乳糖基古生物酚,SLA)与不带电荷的糖脂(乳糖基古细菌,LA)混合。这种新型的佐剂可以很容易地合成,并保留了强大的免疫刺激活性,可在全身免疫后诱导细胞介导的免疫。在这里,我们证明了肌肉注射给小鼠后SLA / LA考古小体的安全性,并评估了封装在SLA / LA考古小体中的抗原(卵清蛋白)的免疫原性,体内分布和细胞摄取。总的来说,我们发现半合成的硫酸糖脂古细菌是一种安全有效的新型佐剂,能够在小鼠中诱导强烈的抗原特异性免疫反应,并能抵抗随后的B16黑色素瘤肿瘤攻击。其作用机制的关键步骤似乎是免疫细胞募集到注射部位,以及随后的抗原运输到局部引流淋巴结。更好地了解新型佐剂(如古生物)的安全性和作用机理是其进入临床应用的关键一步。

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