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Modulation of tumor microenvironment using a TLR-7/8 agonist-loaded nanoparticle system that exerts low-temperature hyperthermia and immunotherapy for in situ cancer vaccination

机译:使用TLR-7/8激动剂负载纳米粒子系统调节肿瘤微环境,施加低温热疗和免疫治疗原位癌症疫苗接种

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摘要

Most cancer vaccines under development are associated with defined tumor antigens rather than with all antigens of whole tumor cells, limiting the anti-tumor immune responses that they elicit. This work proposes an immunomodulator (R848)-loaded nanoparticle system (R848@NPs) that can absorb near-infrared light (+ NIR) to cause low-temperature hyperthermia that interacts synergistically with its loaded R848 to relieve the tumor-mediated immunosuppressive microenvironment, generating robust anti-tumor memory immunity. In vitro results reveal that the R848@NPs could be effectively internalized by dendritic cells, causing their maturation and the subsequent regulation of their anti-tumor immune responses. Post-treatment observations in mice in which tumors were heat-treated at high temperatures reveal that tumor growth was significantly inhibited initially but not in the longer term, while low-temperature hyperthermia or immunotherapy alone simply delayed tumor growth. In contrast, a combined therapy that involved low-temperature hyperthermia and immunotherapy using R848@NPs/ + NIR induced a long-lasting immunologic memory and consequently inhibited tumor growth and prevented cancer recurrence and metastasis. These results suggest that the method that is proposed herein is promising for generating cancer vaccines in situ, by using the tumor itself as the antigen source and the introduced R848@NPs/ + NIR to generate a long-term anti-tumor immunity, for personalized immunotherapy.
机译:大多数正在开发的癌症疫苗与定义的肿瘤抗原相关,而不是全肿瘤细胞的所有抗原,限制了他们引起的抗肿瘤免疫应答。这项工作提出了一种免疫调节剂(R848) - 可以吸收近红外光(+ NIR)的纳米颗粒系统(R848 @ NPS),以引起低温热疗,其与其加载的R848协同相互作用以缓解肿瘤介导的免疫抑制微环境,产生强大的抗肿瘤记忆免疫力。体外结果表明,R848 @ NPS可以通过树突细胞有效内化,导致其成熟和随后的抗肿瘤免疫应答调节。在高温下肿瘤热处理肿瘤的小鼠后治疗观察结果显示肿瘤生长最初但不在长期内显着抑制,而单独的低温热疗或免疫治疗仅仅延迟肿瘤生长。相比之下,使用R848 @ NPS / + NIR涉及低温热疗和免疫疗法的组合治疗诱导持久的免疫记忆力,从而抑制肿瘤生长并预防癌症复发和转移。这些结果表明,本文提出的方法是对原地产生癌症疫苗的方法,通过使用肿瘤本身作为抗原来源和介绍的R848 @ NPS / + NIR产生长期的抗肿瘤免疫力,用于个性化免疫疗法。

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