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Rational design of Polymeric Hybrid Micelles to Overcome Lymphatic and Intracellular Delivery Barriers in Cancer Immunotherapy

机译:聚合物杂化胶束克服癌症免疫治疗中淋巴和细胞内传递障碍的合理设计

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Poor distribution of antigen/adjuvant to target sites and inadequate induction of T cell responses remain major challenges in cancer immunotherapy because of the lack of appropriate delivery systems. Nanocarrier-based antigen delivery systems have emerged as an innovative strategy to improve vaccine efficacy. Here we present polymeric hybrid micelles (PHMs) as a simple and potent antigen/adjuvant co-delivery system with highly tunable properties. PHMs consist of two amphiphilic diblock copolymers, polycaprolactone-polyethylenimine (PCL-PEI) and polycaprolactone-polyethyleneglycol (PCL-PEG). PHMs with different proportions of cationic PCL-PEI were prepared and loaded with tyrosinase-related protein 2 (Trp2) peptide and adjuvant CpG oligodeoxynucleotide to generate the Trp2/PHM/CpG co-delivery system. Lymphatic and intracellular antigen delivery as a function of PCL-PEI proportion was evaluated in vitro and in vivo . PHMs containing 10% (w/w) PCL-PEI (Trp2/PHM10/CpG) showed the optimal balance of good distribution to lymph nodes, strong immunization effect after subcutaneous administration, and low toxicity to dendritic cells. In a mouse model of B16F10 melanoma, Trp2/PHM10/CpG showed significantly higher antigen-specific cytotoxic T lymphocyte activity and greater anticancer efficacy than Trp2/PHM0/CpG without PCL-PEI or a mixture of free Trp2 and CpG. These results provide new insights into how cationic segments affect the efficiency of antigen delivery by cationic nanocarriers. They also suggest that PHMs can serve as a structurally simple and highly tunable platform for co-delivery of antigen and adjuvant in cancer immunotherapy.
机译:由于缺乏合适的递送系统,抗原/佐剂到靶位点的不良分布和T细胞应答的诱导不足仍然是癌症免疫治疗中的主要挑战。基于纳米载体的抗原递送系统已经成为提高疫苗效力的创新策略。在这里,我们介绍聚合物杂化胶束(PHMs)作为具有高度可调特性的简单有效的抗原/佐剂共递送系统。 PHM由两种两亲性的二嵌段共聚物组成:聚己内酯-聚乙烯亚胺(PCL-PEI)和聚己内酯-聚乙二醇(PCL-PEG)。制备具有不同比例的阳离子PCL-PEI的PHM,并装载酪氨酸酶相关蛋白2(Trp2)肽和辅助CpG寡脱氧核苷酸,以生成Trp2 / PHM / CpG共递送系统。体内和体外评估了淋巴和细胞内抗原传递与PCL-PEI比例的关系。含10%(w / w)PCL-PEI(Trp2 / PHM10 / CpG)的PHM表现出最佳的平衡:良好的淋巴结分布,皮下给药后的强免疫效果以及对树突状细胞的低毒性。在B16F10黑色素瘤的小鼠模型中,与没有PCL-PEI或游离Trp2和CpG的混合物的Trp2 / PHM0 / CpG相比,Trp2 / PHM10 / CpG显示出明显更高的抗原特异性细胞毒性T淋巴细胞活性和更高的抗癌效力。这些结果为阳离子片段如何影响阳离子纳米载体的抗原递送效率提供了新见解。他们还建议,PHM可以作为结构简单且高度可调的平台,用于癌症免疫治疗中抗原和佐剂的共同递送。

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