Zheng Cuixia, Liu Xinxin, Kong Yueyue, Zhang Lei, Song Qingling, Zhao Hongjuan, Han Lu, Jiao Jiannan, Feng Qianhua, Wang Lei
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou 450001, China.
Luoyang Central Hospital Affiliated to Zhengzhou University, Luoyang 471009, China.
Acta Pharm Sin B. 2022 Aug;12(8):3398-3409. doi: 10.1016/j.apsb.2022.02.026. Epub 2022 Feb 26.
The continuing challenges that limit effectiveness of tumor therapeutic vaccines were high heterogeneity of tumor immunogenicity, low bioactivity of antigens, as well as insufficient lymph nodes (LNs) drainage of antigens and adjuvants. Transportation of neoantigens and adjuvants to LNs may be an effective approach to solve the abovementioned problems. Therefore, an FA-TSL/AuNCs/SV nanoplatform was constructed by integrating simvastatin (SV) adjuvant loaded Au nanocages (AuNCs) as cores (AuNCs/SV) and folic acid modified thermal-sensitive liposomes (FA-TSL) as shells to enhance antitumor immunity. After accumulation in tumor guided by FA, AuNCs mediated photothermal therapy (PTT) induced the release of tumor-derived protein antigens (TDPAs) and the shedding of FA-TSL. Exposed AuNCs/SV soon captured TDPAs to form recombinant vaccine (AuNCs/SV/TDPAs). Subsequently, AuNCs/SV/TDPAs could efficiently transport to draining LNs owing to the hyperthermia induced vasodilation effect and small particle size, achieving co-delivery of antigens and adjuvant for initiation of specific T cell response. In melanoma bearing mice, FA-TSL/AuNCs/SV and laser irradiation effectively ablated primary tumor, against metastatic tumors and induced immunological memory. This approach served a hyperthermia enhanced platform drainage to enable robust personalized cancer vaccination.
限制肿瘤治疗性疫苗有效性的持续挑战包括肿瘤免疫原性的高度异质性、抗原的低生物活性以及抗原和佐剂的淋巴结引流不足。将新抗原和佐剂运输到淋巴结可能是解决上述问题的有效方法。因此,构建了一种FA-TSL/AuNCs/SV纳米平台,该平台以负载辛伐他汀(SV)佐剂的金纳米笼(AuNCs)为核心(AuNCs/SV),以叶酸修饰的热敏脂质体(FA-TSL)为外壳,以增强抗肿瘤免疫力。在FA引导下在肿瘤中积聚后,AuNCs介导的光热疗法(PTT)诱导肿瘤衍生蛋白抗原(TDPAs)的释放和FA-TSL的脱落。暴露的AuNCs/SV很快捕获TDPAs以形成重组疫苗(AuNCs/SV/TDPAs)。随后,由于热诱导的血管舒张效应和小粒径,AuNCs/SV/TDPAs可以有效地运输到引流淋巴结,实现抗原和佐剂的共递送,以启动特异性T细胞反应。在荷黑素瘤小鼠中,FA-TSL/AuNCs/SV和激光照射有效地消融了原发性肿瘤,对抗转移性肿瘤并诱导了免疫记忆。这种方法提供了一个热增强的平台引流,以实现强大的个性化癌症疫苗接种。