Kashkin K P, Kulikov V I, Golovanova G A, Dmitrieva L N, Shepshelevich L V
Ukr Biokhim Zh (1978). 1987 Jul-Aug;59(4):100-7.
Liposomes are promising carriers for construction of the up-to-date chemical vaccinal preparations. The immunogenic and immunomodulating properties of liposomes may be varied by incorporation of the natural or synthetic immunomodulators into the inner water volume or into the lipid bilayer parallel with antigens as well as by introduction of the receptor-specific vector to definite types of immunocompetent cells into liposomes. The pronounced immunobiological properties of the liposomal carrier are shown in studies of liposomes conjugated with haptens or model protein antigens. The application of liposomes as carriers of bacterial antigens induces a delayed catabolism of the antigen and formation of its depot. The immunomodulating properties of antigen-containing liposomes rise after introduction of such immunomodulators as lipid A, muramyldipeptide or interleukin-1 into the liposome composition.
脂质体是构建新型化学疫苗制剂的理想载体。通过将天然或合成免疫调节剂与抗原一起掺入内部水相或脂质双层中,以及将受体特异性载体引入脂质体中特定类型的免疫活性细胞,可以改变脂质体的免疫原性和免疫调节特性。脂质体载体显著的免疫生物学特性在与半抗原或模型蛋白抗原偶联的脂质体研究中得到了体现。脂质体作为细菌抗原载体的应用可诱导抗原的延迟分解代谢并形成其储存库。在脂质体组合物中引入脂质A、胞壁酰二肽或白细胞介素-1等免疫调节剂后,含抗原脂质体的免疫调节特性会增强。