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基于生物活性多糖的 pH 敏感聚合物用于细胞质内递抗原和激活抗原特异性免疫。

Bioactive polysaccharide-based pH-sensitive polymers for cytoplasmic delivery of antigen and activation of antigen-specific immunity.

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka, 599-8531, Japan.

Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka, 599-8531, Japan.

出版信息

Biomaterials. 2017 Mar;120:32-45. doi: 10.1016/j.biomaterials.2016.12.021. Epub 2016 Dec 22.

Abstract

For establishment of cancer immunotherapy, antigen carriers are needed which have functions not only to deliver antigen into cytosol of dendritic cells (DCs), which induces antigen-specific cellular immune responses, but also to activate DCs. We previously reported cytoplasmic delivery of antigen using liposomes modified with pH-sensitive polymers such as carboxylated poly(glycidol)s or dextran. Modification using these polymers provides stable liposomes with pH-sensitive fusogenic/membrane-disruptive ability. For this study, bioactive polysaccharide-based pH-sensitive polymers were constructed to achieve not only cytoplasmic delivery of antigen but also activation of DCs. Curdlan and mannan were used as bioactive polysaccharides because they are known to activate DCs via their respective interactions with Dectin-1 and Dectin-2. Carboxylated curdlan and mannan promoted Th1 cytokine production from DCs, indicating the activation of DCs by these polysaccharide derivatives. These polymer-modified liposomes released their contents at weakly acidic pH and delivered model antigenic proteins into cytosol of DCs. Subcutaneous administration of curdlan derivative-modified or mannan derivative-modified liposomes induced strong antigen-specific immune responses and stronger antitumor effects than those of liposomes modified with dextran derivative. Therefore, bioactive polysaccharide-modified liposomes that achieve both cytoplasmic delivery of antigen and activation of DCs are promising for cancer immunotherapy.

摘要

为了建立癌症免疫疗法,需要抗原载体,这些载体不仅具有将抗原递送至树突状细胞(DCs)细胞质中以诱导抗原特异性细胞免疫应答的功能,而且还具有激活 DCs 的功能。我们之前报道了使用 pH 敏感聚合物(如羧基聚(缩水甘油)或葡聚糖)修饰的脂质体进行抗原的细胞质递送。使用这些聚合物进行修饰可提供具有 pH 敏感融合/膜破坏能力的稳定脂质体。在这项研究中,构建了基于生物活性多糖的 pH 敏感聚合物,以实现不仅抗原的细胞质递送,而且 DCs 的激活。角叉菜聚糖和甘露聚糖被用作生物活性多糖,因为已知它们通过与 Dectin-1 和 Dectin-2 的各自相互作用来激活 DCs。羧基化角叉菜聚糖和甘露聚糖促进了 DCs 中 Th1 细胞因子的产生,表明这些多糖衍生物激活了 DCs。这些聚合物修饰的脂质体在弱酸性 pH 下释放其内容物,并将模型抗原蛋白递送至 DCs 的细胞质中。角叉菜聚糖衍生物修饰或甘露聚糖衍生物修饰的脂质体的皮下给药诱导了强烈的抗原特异性免疫应答,并比葡聚糖衍生物修饰的脂质体具有更强的抗肿瘤作用。因此,既能实现抗原的细胞质递送又能激活 DCs 的生物活性多糖修饰的脂质体有望用于癌症免疫治疗。

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