黑色素瘤
纳米载体
癌症研究
免疫疗法
肿瘤微环境
联合疗法
光热治疗
化学
药物输送
癌症免疫疗法
体内
医学
免疫系统
药理学
免疫学
药品
材料科学
生物
纳米技术
有机化学
生物技术
作者
Ni Zhang,Jiao Song,Yi Liu,Mingzhu Liu,Liang Zhang,Danli Sheng,Liming Deng,Hengjing Yi,Meng Wu,Yuanyi Zheng,Zhigang Wang,Zhu Yang
标识
DOI:10.1016/j.jconrel.2019.05.036
摘要
Melanoma remains one of the most challenging malignant tumor related deaths worldwide and alternative approaches to efficiently treat melanoma are eagerly needed. Anti-PD1 antibody (aPD1) immunotherapy is the most significant and impactful therapy for melanoma by immune checkpoint inhibition and T cell stimulation to mediate tumor killing. But the clinical remission rate of aPD1 immunotherapy is limited in melanoma. Here we show a potent combination of aPD1 and photothermal therapy (PTT) by effective delivery of a multifunctional phase-transformation nanocarrier to melanoma tumor. We successfully synthesized multifunctional nanoparticles (NPs) encapsulated with aPD1, iron oxide and perfluoropentane (PFP) in lactic-co-glycolic acid (PLGA) shell modified with poly ethylene glycol (PEG) and Gly-Arg-Gly-Asp-Ser (GRGDS) peptides ([email protected]). In vitro, [email protected] NPs were characterized for particle size and drug-loading efficiency. The NPs were also tested for photothermal property, optical droplet vaporization (ODV) capacity and the ability of aPD1 release profile. In vivo, [email protected] NPs were systemically administered to melanoma-bearing mice demonstrated no toxicity and accumulation at tumor site. When mediated with PTT, this synergistic treatment achieved enhanced antitumor efficacy, due to combination of the effective aPD1 release and increased CD8+ T cell infiltration in tumor site. In conclusion, [email protected] NPs combined with PTT could potentiate the efficacy of aPD1 not only by tumor-targeted delivery of aPD1 but also by activating the immune system in the tumor microenvironment, which is a highly effective approach to treat melanoma.
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