免疫系统
佐剂
癌症疫苗
医学
免疫增强剂
癌症
癌症研究
免疫疗法
接种疫苗
免疫学
结直肠癌
免疫
内科学
作者
Minghui Li,Anna Jiang,Huize Han,Mei‐Fang Chen,Bing Wang,Yuxi Cheng,Hua Zhang,Xueqing Wang,Wenbing Dai,Wei Yang,Qiang Zhang,Bing He
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-12-04
被引量:4
标识
DOI:10.1021/acsnano.3c03352
摘要
Cancer vaccine gains great attention with the advances in tumor immunology and nanotechnology, but its long-term efficacy is restricted by the unsustainable immune activity after vaccination. Here, we demonstrate the vaccine efficacy is negatively correlated with the tumor burden. To maximum the vaccine-induced immunity and prolong the time-effectiveness, we design a priming–boosting vaccination strategy by combining with radiofrequency ablation (RFA), and construct a bisphosphonate nanovaccine (BNV) system. BNV system consists of nanoparticulated bisphosphonates with dual electric potentials (BNV(+&−)), where bisphosphonates act as the immune adjuvant by blocking mevalonate metabolism. BNV(+&−) exhibits the spatial and temporal heterogeneity in lymphatic delivery and immune activity. As the independent components of BNV(+&−), BNV(−) is drained to the lymph nodes, and BNV(+) is retained at the injection site. The alternately induced immune responses extend the time-effectiveness of antitumor immunity and suppress the recurrence and metastasis of colorectal cancer liver metastases after RFA. As a result, this trinity system integrated with RFA therapy, bisphosphonate adjuvant, and spatiotemporal immune effect provides an orientation for the sustainable regulation and precise delivery of cancer vaccines.
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