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Multifunctional Nanoregulator Reshapes Immune Microenvironment and Enhances Immune Memory for Tumor Immunotherapy

机译:多功能纳米调节剂可重塑免疫微环境并增强肿瘤免疫治疗的免疫记忆。

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摘要

Hypoxia leads to up‐regulation of PD‐L1 and decreases T lymphocyte infiltration, thus boosting immunotherapeutic resistance of tumors. Moreover, tumor‐infiltrating myeloid cells such as myeloid‐derived suppressor cells (MDSCs) correlate with potent immune suppressive activity and resistance to the immune checkpoint blocking (ICB) in tumor sites. Here, a multifunctional nanoregulator incorporating MnO2 particles and small molecular IPI549 is developed, which can reshape the tumor immune microenvironment (TIME) to unleash the immune system. The intravenously administered nanoregulator effectively accumulates in tumor sites to alleviate hypoxia via oxygen‐generating reduction of MnO2 and to inhibit PI3Kγ on MDSCs via IPI549 release in the tumor microenvironment (TME), which results in concurrent downregulation of PD‐L1 expression, polarization of tumor associated macrophages (TAMs) toward pro‐inflammatory M1‐like phenotype (tumor‐suppressive), enhanced infiltration of CD4+ helper T lymphocytes (Th cells), and cytotoxic CD8+ T lymphocytes (Tc cells), and suppressed infiltration of regulatory T lymphocytes (Treg cells) for effective tumor immunotherapy. Furthermore, the local generation of Mn2+ in TME allows tumor‐specific magnetic resonance imaging (MRI). More excitingly, the nanoregulator‐reshaped TIME is effectively reserved due to the synergistic effect of hypoxia alleviation and MDSC PI3Kγ inhibition, leading to remarkable post‐medication inhibition of tumor re‐growth and metastasis in an animal study.
机译:缺氧会导致PD-L1上调并减少T淋巴细胞浸润,从而增强肿瘤的免疫治疗抵抗力。此外,肿瘤浸润的髓样细胞,例如髓样来源的抑制细胞(MDSC),与有效的免疫抑制活性和对肿瘤部位免疫检查点阻断(ICB)的抗性相关。在这里,开发了一种包含MnO2颗粒和小分子IPI549的多功能纳米调节剂,它可以重塑肿瘤免疫微环境(TIME)以释放免疫系统。静脉内施用的纳米调节剂可通过在氧气中产生的MnO2还原而有效地聚集在肿瘤部位,从而减轻缺氧,并通过在肿瘤微环境(TME)中释放IPI549抑制MDSC上的PI3Kγ,从而导致PD-L1表达的同时下调,肿瘤的极化相关的巨噬细胞(TAM)趋向于促炎性M1样表型(肿瘤抑制),CD4 + 辅助T淋巴细胞(Th细胞)的浸润增强以及细胞毒性CD8 + T淋巴细胞(Tc细胞),并抑制调节性T淋巴细胞(Treg细胞)的浸润,以进行有效的肿瘤免疫治疗。此外,TME中局部生成Mn 2 + 可以进行肿瘤特异性磁共振成像(MRI)。更令人兴奋的是,由于缺氧缓解和MDSCPI3Kγ抑制的协同作用,纳米调节器重塑的TIME被有效保留,从而在动物研究中显着地抑制了药物在治疗后的肿瘤生长和转移。

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