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首页> 外文期刊>Journal of liposome research >Liposomes containing glucosyl ceramide specifically bind T4 bacteriophage: a self-assembling nanocarrier formulation.
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Liposomes containing glucosyl ceramide specifically bind T4 bacteriophage: a self-assembling nanocarrier formulation.

机译:含有葡萄糖基神经酰胺的脂质体可特异性结合T4噬菌体:一种自组装的纳米载体制剂。

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摘要

A unique formulation is described comprising liposomes containing glucosyl ceramide (GluCer) in the lipid bilayer to which bacteriophage T4 was attached. Binding of the phage T4 did not occur to glycolipids, such as galactosyl ceramide, containing an aldose in which the C-2 or C-4 conformations were not identical to glucose. These results strongly support previous proposals that glucose is a major receptor moiety for T4 binding to Escherichia coli. By using the binding of T4 to liposomal GluCer, we further describe a formulation that can be used as a self-assembling combined antigen and adjuvant carrier. A peptide antigen derived from C-trimer (Ct) of HIV-1 gp41 was fused to the highly antigenic outer capsid protein (Hoc), a nonessential protein of T4 that spontaneously binds to the T4 capsid. This resulted in display of the Ct-Hoc construct on the T4 capsid, and specific binding of a human monoclonal antibody that recognizes a peptide sequence of Ct was demonstrated. Liposomes containing monophosphoryl lipid A (MPLA) have been demonstrated to have potent adjuvant activities for experimental vaccines both in humans and animals, and because of this, mice were immunized with the Ct-Hoc-T4 construct that was bound to liposomes containing both GluCer and MPLA, resulting in the induction of high titers of Ct-specific antibodies. We conclude that liposomes containing both GluCer and MPLA can spontaneously bind to a construct of T4 that displays antigens that spontaneously binds to the capsid of T4 bacteriophage. This formulation could be utilized as an easily manufactured self-assembling antigen and adjuvant carrier.
机译:描述了一种独特的制剂,其包含在脂质双分子层中包含葡糖基神经酰胺(GluCer)的脂质体,噬菌体T4附着在脂质双分子层上。噬菌体T4不与糖脂(例如半乳糖基神经酰胺)结合,所述糖脂含有醛糖,其中C-2或C-4构象与葡萄糖不同。这些结果有力地支持了以前的建议,即葡萄糖是T4与大肠杆菌结合的主要受体部分。通过使用T4与脂质体GluCer的结合,我们进一步描述了可用作自组装组合抗原和佐剂载体的制剂。将来自HIV-1 gp41的C-三聚体(Ct)的肽抗原与高抗原性外衣壳蛋白(Hoc)融合,该蛋白是自发地与T4衣壳结合的T4的非必需蛋白。这导致在T4衣壳上展示Ct-Hoc构建体,并且证明了识别Ct的肽序列的人单克隆抗体的特异性结合。含单磷酰脂质A(MPLA)的脂质体已被证明对人和动物实验疫苗均具有有效的佐剂活性,因此,小鼠用Ct-Hoc-T4构建体免疫,该构建体与含有GluCer和GluCer MPLA,导致高滴度的Ct特异性抗体的诱导。我们得出的结论是,同时含有GluCer和MPLA的脂质体可以自发地结合到T4的构建体,该构建体显示出可自发地结合T4噬菌体衣壳的抗原。该制剂可以用作容易制造的自组装抗原和佐剂载体。

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