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仿生双靶治疗性纳米疫苗实现脑胶质瘤的磁共振成像及化疗/化学动力学/免疫治疗

Biomimetic Dual-Target Theranostic Nanovaccine Enables Magnetic Resonance Imaging and Chemo/Chemodynamic/Immune Therapy of Glioma.

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, P. R. China.

College of Chemistry and Chemical Engineering, Donghua University, Shanghai 201620, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 May 29;16(21):27187-27201. doi: 10.1021/acsami.4c05831. Epub 2024 May 15.

Abstract

Development of theranostic nanomedicines to tackle glioma remains to be challenging. Here, we present an advanced blood-brain barrier (BBB)-crossing nanovaccine based on cancer cell membrane-camouflaged poly(-vinylcaprolactam) (PVCL) nanogels (NGs) incorporated with MnO and doxorubicin (DOX). We show that the disulfide bond-cross-linked redox-responsive PVCL NGs can be functionalized with dermorphin and imiquimod R837 through cell membrane functionalization. The formed functionalized PVCL NGs having a size of 220 nm are stable, can deplete glutathione, and responsively release both Mn and DOX under the simulated tumor microenvironment to exert the chemo/chemodynamic therapy mediated by DOX and Mn, respectively. The combined therapy induces tumor immunogenic cell death to maturate dendritic cells (DCs) and activate tumor-killing T cells. Further, the nanovaccine composed of cancer cell membranes as tumor antigens, R837 as an adjuvant with abilities of DC maturation and macrophages M1 repolarization, and MnO with Mn-mediated stimulator of interferon gene activation of tumor cells can effectively act on both targets of tumor cells and immune cells. With the dermorphin-mediated BBB crossing, cell membrane-mediated homologous tumor targeting, and Mn-facilitated magnetic resonance (MR) imaging property, the designed NG-based theranostic nanovaccine enables MR imaging and combination chemo-, chemodynamic-, and imnune therapy of orthotopic glioma with a significantly decreased recurrence rate.

摘要

开发用于治疗神经胶质瘤的治疗诊断纳米药物仍然具有挑战性。在这里,我们提出了一种基于癌细胞膜伪装的聚(己内酯)(PVCL)纳米凝胶(NG)的先进血脑屏障(BBB)穿透纳米疫苗,该纳米凝胶结合了 MnO 和阿霉素(DOX)。我们表明,二硫键交联的氧化还原响应性 PVCL NG 可以通过细胞膜功能化与促肾上腺皮质素释放肽和咪喹莫特 R837 功能化。形成的具有 220nm 尺寸的功能化 PVCL NG 是稳定的,可以耗竭谷胱甘肽,并在模拟肿瘤微环境下响应性地释放 Mn 和 DOX,以分别发挥 DOX 和 Mn 介导的化学/动力治疗作用。联合治疗诱导肿瘤免疫原性细胞死亡,使树突状细胞(DC)成熟并激活杀伤肿瘤的 T 细胞。此外,由癌细胞膜作为肿瘤抗原、R837 作为具有 DC 成熟和巨噬细胞 M1 重极化能力的佐剂以及 MnO 与 Mn 介导的肿瘤细胞干扰素基因激活组成的纳米疫苗可以有效地针对肿瘤细胞和免疫细胞的两个靶点。通过促肾上腺皮质素释放肽介导的 BBB 穿透、细胞膜介导的同源肿瘤靶向以及 Mn 促进的磁共振(MR)成像特性,基于 NG 的治疗诊断纳米疫苗能够对原位神经胶质瘤进行 MR 成像以及联合化疗、化学动力学和免疫治疗,显著降低复发率。

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