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首页> 外文期刊>International Journal of Nanomedicine >Functionalization of immunostimulating complexes (ISCOMs) with lipid vinyl sulfones and their application in immunological techniques and therapy
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Functionalization of immunostimulating complexes (ISCOMs) with lipid vinyl sulfones and their application in immunological techniques and therapy

机译:脂质乙烯基砜对免疫刺激复合物(ISCOM)的功能化及其在免疫技术和治疗中的应用

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Background: Immunostimulating complexes (ISCOM)-type nanocapsules have been functionalized with lipid vinyl sulfones that anchor to them via the hydrophobic zone of their structure and can be charged with pharmacologically active molecules or macromolecules. These functionalized nanocapsules can incorporate protein A and bind to G immunoglobulins (IgGs) to make vehicles directed at the surface antigens of infectious agents, tumor cells, or receptor cells and deliver the encapsulated molecules in a highly specific way. They may be of particular use in pharmacological treatments with highly toxic molecules that should not be used in solution whenever it can be avoided. When bound to antibodies they can be used in biological processes that require the delivery or presentation of macromolecules to certain specific cells, in immunization processes for instance, or in diagnostic immunological techniques, as they are able to transport both the secondary antibodies and the reaction labels.Methods and results: We describe the preparation of ISCOMs, the binding to the ISCOMS of newly synthesized compounds composed of chain alkyl vinyl sulfone, and the subsequent binding of the vinyl-sulfone compounds to IgGs. Within this context, a compound deriving from cholesterol functionalized with vinyl sulfone and used together with cholesterol in varying proportions has been linked to the structure of the ISCOMs and bound to protein A–IgG. This functionalization in no way altered the form or structure of the ISCOMs and allowed the nanocapsules carrying the specific IgGs to bind to forms of Trypanosoma cruzi against which antibodies had been developed. The fact that functionalized ISCOMs containing antibodies could deliver actinomycin D directly to the parasite meant that the effective dose of the antibiotic could be reduced very significantly.Conclusion: We have developed ISCOM-type nanocapsules functionalized with lipid vinyl sulfone capable of anchoring to the surface of functional IgGs, which favors the recognition and transport of these nanocapsules precisely to certain kinds of cell.
机译:背景:免疫刺激复合物(ISCOM)型纳米胶囊已通过脂质乙烯基砜功能化,该脂质乙烯基砜通过其结构的疏水区锚定在其上,并可以填充有药理活性分子或大分子。这些功能化的纳米胶囊可以掺入蛋白A并与G免疫球蛋白(IgG)结合,以制造针对感染因子,肿瘤细胞或受体细胞表面抗原的媒介物,并以高度特异性的方式递送被包裹的分子。它们在具有剧毒分子的药物治疗中可能特别有用,只要可以避免,就不应在溶液中使用它们。当与抗体结合时,它们可用于需要将大分子递送或呈递到某些特定细胞的生物学过程中,例如在免疫过程中,或在诊断免疫学技术中使用,因为它们既可以转运第二抗体又可以反应标签方法与结果:我们描述了ISCOM的制备,由链烷基乙烯基砜组成的新合成化合物与ISCOMS的结合以及乙烯基砜化合物与IgG的后续结合。在这种情况下,一种由乙烯基砜官能化的胆固醇衍生的化合物与胆固醇以不同比例一起使用,该化合物已与ISCOM的结构相连并与A-IgG蛋白结合。这种功能化决不会改变ISCOM的形式或结构,并允许携带特定IgG的纳米胶囊与已针对其开发出抗体的克氏锥虫形式结合。含有抗体的功能化ISCOM可以将放线菌素D直接递送到寄生虫这一事实意味着可以有效降低抗生素的有效剂量。结论:我们已经开发了可以通过脂质乙烯基砜功能化的ISCOM型纳米胶囊,该纳米胶囊可以锚定在动物的表面。功能性IgG,有助于将这些纳米胶囊准确识别并运输到某些类型的细胞。

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