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仿生含铜纳米凝胶用于影像引导的肿瘤化学-化学动力学-免疫治疗。

Biomimetic copper-containing nanogels for imaging-guided tumor chemo-chemodynamic-immunotherapy.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai Engineering Research Center of Nano-Biomaterials and Regenerative Medicine, College of Biological Science and Medical Engineering, Donghua University, Shanghai 201620, China.

Department of Radiology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200080, China.

出版信息

Acta Biomater. 2024 Nov;189:491-504. doi: 10.1016/j.actbio.2024.09.030. Epub 2024 Sep 24.

DOI:10.1016/j.actbio.2024.09.030
PMID:39322041
Abstract

Developing multifunctional nanoplatforms to comprehensively modulate the tumor microenvironment and enhance diagnostic and therapeutic outcomes still remains a great challenge. Here, we report the facile construction of a multivariate nanoplatform based on cancer cell membrane (CM)-encapsulated redox-responsive poly(N-vinylcaprolactam) (PVCL) nanogels (NGs) co-loaded with Cu(II) and chemotherapeutic drug toyocamycin (Toy) for magnetic resonance (MR) imaging-guided combination tumor chemodynamic therapy/chemoimmunotherapy. We show that redox-responsive PVCL NGs formed through precipitation polymerization can be aminated, conjugated with 3,4-dihydroxyhydrocinnamic acid for Cu(II) complexation, physically loaded with Toy, and finally camouflaged with CMs. The created ADCT@CM NGs with an average size of 113.0 nm are stable under physiological conditions and can efficiently release Cu(II) and Toy under tumor microenvironment with a high level of glutathione. Meanwhile, the developed NGs are able to enhance cancer cell oxidative stress and endoplasmic reticulum stress by synergizing the effects of chemodynamic therapy mediated by Cu-based Fenton-like reaction and Toy-mediated chemotherapy, thereby triggering significant immunogenic cell death (ICD). In a melanoma mouse model, the NGs show potent immune activation effects to reinforce tumor therapeutic efficacy through ICD induction and immune modulation including high levels of immune cytokine secretion, increased tumor infiltration of CD8 cytotoxic T cells, and reduced tumor infiltration of regulatory T cells. With the CM coating and Cu(II) loading, the developed NG platform demonstrates homologous tumor targeting and T-weighted MR imaging, hence providing a general biomimetic NG platform for ICD-facilitated tumor theranostic nanoplatform. STATEMENT OF SIGNIFICANCE: Developing multifunctional nanoplatforms to comprehensively modulate the tumor microenvironment (TME) and enhance theranostic outcomes remains a challenge. Here, a cancer cell membrane (CM)-camouflaged nanoplatform based on aminated poly(N-vinylcaprolactam) nanogels (NGs) co-loaded with Cu(II) and toyocamycin (Toy) was prepared for magnetic resonance (MR) imaging-guided combination tumor chemodynamic therapy/chemoimmunotherapy. The tumor targeting specificity and efficient TME-triggered release of Cu(II) and Toy could enhance tumor cell oxidative stress and endoplasmic reticulum stress by synergizing the effects of chemodynamic therapy mediated by Cu-based Fenton-like reaction and Toy-mediated chemotherapy, respectively, thereby leading to significant immunogenic cell death (ICD) and immune response. With the CM coating and Cu(II) loading, the developed NG platform also demonstrates good T-weighted tumor MR imaging performance. Hence, this study provides a general biomimetic NG platform for ICD-facilitated tumor theranostics.

摘要

构建多功能纳米平台以全面调节肿瘤微环境并增强诊断和治疗效果仍然是一个巨大的挑战。在这里,我们报告了一种基于癌症细胞膜(CM)包裹的氧化还原响应性聚(N-乙烯基己内酰胺)(PVCL)纳米凝胶(NG)的多元纳米平台的简便构建,该纳米平台共载有 Cu(II)和化疗药物土霉素(Toy),用于磁共振(MR)成像引导的联合肿瘤化学动力学治疗/化学免疫治疗。我们表明,通过沉淀聚合形成的氧化还原响应性 PVCL NG 可以进行氨化,与 3,4-二羟基肉桂酸缀合以进行 Cu(II)络合,通过物理方式装载 Toy,最后用 CM 伪装。具有平均尺寸为 113.0nm 的所创建的 ADCT@CM NG 在生理条件下稳定,并且可以在具有高谷胱甘肽水平的肿瘤微环境中有效释放 Cu(II)和 Toy。同时,所开发的 NG 能够通过协同由基于 Cu 的类 Fenton 反应介导的化学动力学治疗和 Toy 介导的化学疗法的作用,增强癌细胞的氧化应激和内质网应激,从而引发显著的免疫原性细胞死亡(ICD)。在黑色素瘤小鼠模型中,NG 通过 ICD 诱导和免疫调节显示出强大的免疫激活作用,从而通过免疫细胞因子的高分泌、增加肿瘤浸润的 CD8 细胞毒性 T 细胞和减少肿瘤浸润的调节性 T 细胞来增强肿瘤治疗效果。通过 CM 涂层和 Cu(II)负载,所开发的 NG 平台表现出同源性肿瘤靶向和 T 加权磁共振成像,因此为 ICD 促进的肿瘤治疗性纳米平台提供了一种通用的仿生 NG 平台。

意义声明

开发多功能纳米平台以全面调节肿瘤微环境(TME)并增强治疗效果仍然是一个挑战。在这里,制备了基于载有 Cu(II)和土霉素(Toy)的氨基化聚(N-乙烯基己内酰胺)纳米凝胶(NG)的癌症细胞膜(CM)伪装纳米平台,用于磁共振(MR)成像引导的联合肿瘤化学动力学治疗/化学免疫治疗。肿瘤靶向特异性和高效的 TME 触发 Cu(II)和 Toy 的释放,通过协同基于 Cu 的类 Fenton 反应介导的化学动力学治疗和 Toy 介导的化疗的作用,分别增强肿瘤细胞的氧化应激和内质网应激,从而导致显著的免疫原性细胞死亡(ICD)和免疫反应。通过 CM 涂层和 Cu(II)负载,所开发的 NG 平台还具有良好的 T 加权肿瘤 MR 成像性能。因此,本研究为 ICD 促进的肿瘤治疗提供了一种通用的仿生 NG 平台。

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