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具有工程化表面的可生物降解MnO基纳米颗粒用于肿瘤治疗:同时实现类芬顿离子递送和免疫激活

Biodegradable MnO-Based Nanoparticles with Engineering Surface for Tumor Therapy: Simultaneous Fenton-Like Ion Delivery and Immune Activation.

作者信息

Sun Zhaoli, Wang Zhiyi, Wang Tao, Wang Jingjing, Zhang Hongtao, Li Ziyuan, Wang Shuren, Sheng Fugeng, Yu Jing, Hou Yanglong

机构信息

Peking University-Tsinghua University-National Institute of Biological Sciences Joint Graduate Program, School of Life Sciences, Peking University, Beijing 100871, China.

Beijing Key Laboratory for Magnetoelectric Materials and Devices, School of Materials Science and Engineering, Peking University, Beijing 100871, China.

出版信息

ACS Nano. 2022 Aug 23;16(8):11862-11875. doi: 10.1021/acsnano.2c00969. Epub 2022 Aug 4.

Abstract

Immune checkpoint inhibitors have achieved significant clinical success but are still suffering from inadequate immune activation. It is worth noting that manganese as a nutritional inorganic trace element is closely associated with immune activation to fight against tumor growth and metastasis the cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway. Herein, we designed hollow mesoporous silica-coated MnO nanoparticles (NPs), followed by conjugation of tumor homing peptide iRGD (CRGDKGPD). The obtained NPs (MnO@mSiO-iRGD NPs) were applied to magnetic resonance imaging (MRI)-guided tumor immune-chemodynamic combination therapy, in which MnO NPs can be harnessed for cGAS-STING pathway-activated immunotherapy, Fenton-like reaction-induced reactive oxygen species upregulation, and T-weighted MRI. The rough surface and large cavities of the mSiO shell promote cellular uptake and MnO NPs delivery. Meanwhile, it was found that MnO@mSiO-iRGD NPs would dissociate under an acid environment, resulting in tumor specificity of MRI and exogenous Mn release. Our results revealed that these pH-responsive biodegradable MnO@mSiO-iRGD NPs synergized with α-PD-1 (PD-1 = programmed cell death-1) blocking antibody to highly elicit cytotoxic T lymphocyte infiltration and restrict melanoma progression and metastasis, which were envisioned as a promising candidate for tumor theranostics.

摘要

免疫检查点抑制剂已取得显著的临床成功,但仍存在免疫激活不足的问题。值得注意的是,锰作为一种营养性无机微量元素,与通过环磷酸鸟苷-腺苷酸合成酶-干扰素基因刺激因子(cGAS-STING)途径对抗肿瘤生长和转移的免疫激活密切相关。在此,我们设计了中空介孔二氧化硅包覆的MnO纳米颗粒(NPs),随后偶联肿瘤归巢肽iRGD(CRGDKGPD)。将所得的NPs(MnO@mSiO-iRGD NPs)应用于磁共振成像(MRI)引导的肿瘤免疫化学动力学联合治疗,其中MnO NPs可用于cGAS-STING途径激活的免疫治疗、类芬顿反应诱导的活性氧上调以及T加权MRI。mSiO壳的粗糙表面和大空腔促进了细胞摄取和MnO NPs的递送。同时,发现MnO@mSiO-iRGD NPs在酸性环境下会解离,从而实现MRI的肿瘤特异性和外源性Mn的释放。我们的结果表明,这些pH响应性可生物降解的MnO@mSiO-iRGD NPs与α-PD-1(PD-1 = 程序性细胞死亡蛋白1)阻断抗体协同作用,可高度诱导细胞毒性T淋巴细胞浸润并限制黑色素瘤的进展和转移,有望成为肿瘤诊疗的候选药物。

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