Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 5998531, Japan.
J Mater Chem B. 2021 Sep 29;9(37):7713-7724. doi: 10.1039/d1tb00786f.
Induction of cellular immunity is important for effective cancer immunotherapy. Although various antigen carriers for cancer immunotherapy have been developed to date, balancing efficient antigen delivery to antigen presenting cells (APCs) and their activation innate immune receptors, both of which are crucially important for the induction of strong cellular immunity, remains challenging. For this study, branched β-glucan was selected as an intrinsically immunity-stimulating and biocompatible material. It was engineered to develop multifunctional liposomal cancer vaccines capable of efficient interactions with APCs and subsequent activation of the cells. Hydroxy groups of branched β-glucan (Aquaβ) were modified with 3-methylglutaric acid ester and decyl groups, respectively, to provide pH-sensitivity and anchoring capability to the liposomal membrane. The modification efficiency of Aquaβ derivatives to the liposomes was significantly high compared with linear β-glucan (curdlan) derivatives. Aquaβ derivative-modified liposomes released their contents in response to weakly acidic pH. As a model antigenic protein, ovalbumin (OVA)-loaded liposomes modified with Aquaβ derivatives interacted efficiently with dendritic cells, and induced inflammatory cytokine secretion from the cells. Subcutaneous administration of Aquaβ derivative-modified liposomes suppressed the growth of the E.G7-OVA tumor significantly compared with curdlan derivative-modified liposomes. Aquaβ derivative-modified liposomes induced the increase of CD8 T cells, and polarized macrophages to the antitumor M1-phenotype within the tumor microenvironment. Therefore, pH-sensitive Aquaβ derivatives can be promising materials for liposomal antigen delivery systems to induce antitumor immune responses efficiently.
诱导细胞免疫对于有效的癌症免疫治疗至关重要。尽管迄今为止已经开发出了各种用于癌症免疫治疗的抗原载体,但平衡高效地向抗原提呈细胞(APCs)传递抗原及其激活先天免疫受体,这两者对于诱导强烈的细胞免疫都非常重要,这仍然是一个挑战。在这项研究中,支链β-葡聚糖被选为一种固有免疫刺激和生物相容的材料。它被设计成能够与 APC 高效相互作用并随后激活细胞的多功能脂质体癌症疫苗。支链 β-葡聚糖(Aquaβ)的羟基分别用 3-甲基戊二酸酯和癸基进行修饰,以赋予脂质体膜 pH 敏感性和锚定能力。与线性 β-葡聚糖(几丁质)衍生物相比,Aquaβ 衍生物对脂质体的修饰效率显著提高。Aquaβ 衍生物修饰的脂质体在弱酸性 pH 下释放其内容物。作为模型抗原蛋白,载有卵清蛋白(OVA)的用 Aquaβ 衍生物修饰的脂质体与树突状细胞高效相互作用,并诱导细胞分泌炎症细胞因子。与几丁质衍生物修饰的脂质体相比,皮下给予 Aquaβ 衍生物修饰的脂质体可显著抑制 E.G7-OVA 肿瘤的生长。Aquaβ 衍生物修饰的脂质体在肿瘤微环境中诱导 CD8 T 细胞的增加,并将巨噬细胞极化至抗肿瘤 M1 表型。因此,pH 敏感的 Aquaβ 衍生物可能是用于有效诱导抗肿瘤免疫反应的脂质体抗原递送系统的有前途的材料。