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基于肿瘤细胞裂解物的多功能纳米颗粒促进黑色素瘤基因治疗中 mRNA 的递释和免疫刺激增强。

Tumor Cell Lysate-Based Multifunctional Nanoparticles Facilitate Enhanced mRNA Delivery and Immune Stimulation for Melanoma Gene Therapy.

机构信息

Department of Pharmacy, Personalized Drug Therapy Key Laboratory of Sichuan Province Sichuan Academy of Medical Sciences & Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, Chengdu 610072, China.

State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, Sichuan University, Chengdu 610041, People's Republic of China.

出版信息

Mol Pharm. 2024 Jan 1;21(1):267-282. doi: 10.1021/acs.molpharmaceut.3c00826. Epub 2023 Dec 11.

Abstract

Messenger ribonucleic acid (mRNA)-based gene therapy has great potential for cancer gene therapy. However, the effectiveness of mRNA in cancer therapy needs to be further improved, and the delivery efficiency and instability of mRNA limit the application of mRNA-based products. Both the delivery efficiency can be elevated by cell-penetrating peptide modification, and the immune response can be enhanced by tumor cell lysate stimulation, representing an advantageous strategy to expand the effectiveness of mRNA gene therapy. Therefore, it is vital to exploit a vector that can deliver high-efficiency mRNA with codelivery of tumor cell lysate to induce specific immune responses. We previously reported that DMP cationic nanoparticles, formed by the self-assembly of DOTAP and mPEG-PCL, can deliver different types of nucleic acids. DMP has been successfully applied in gene therapy research for various tumor types. Here, we encapsulated tumor cell lysates with DMP nanoparticles and then modified them with a fused cell-penetrating peptide (TAT-iRGD) to form an MLSV system. The MLSV system was loaded with encoded Bim mRNA, forming the MLSV/Bim complex. The average size of the synthesized MLSV was 191.4 nm, with a potential of 47.8 mV. The MLSV/mRNA complex promotes mRNA absorption through caveolin-mediated endocytosis, with a transfection rate of up to 68.6% in B16 cells. The MLSV system could also induce the maturation and activation of dendritic cells, obviously promoting the expression of CD80, CD86, and MHC-II both and . By loading the encoding Bim mRNA, the MLSV/Bim complex can inhibit cell proliferation and tumor growth, with inhibition rates of up to 87.3% . Similarly, the MLSV/Bim complex can inhibit tumor growth , with inhibition rates of up to 78.7% in the B16 subcutaneous tumor model and 63.3% in the B16 pulmonary metastatic tumor model. Our results suggest that the MLSV system is an advanced candidate for mRNA-based immunogene therapy.

摘要

基于信使核糖核酸(mRNA)的基因治疗在癌症基因治疗方面具有巨大潜力。然而,mRNA 在癌症治疗中的有效性需要进一步提高,并且 mRNA 的递送效率和不稳定性限制了 mRNA 产品的应用。通过细胞穿透肽修饰可以提高递送效率,通过肿瘤细胞裂解物刺激可以增强免疫反应,这代表了扩大 mRNA 基因治疗效果的有利策略。因此,开发能够递送高效 mRNA 并共递送肿瘤细胞裂解物以诱导特异性免疫反应的载体至关重要。我们之前报道过,由 DOTAP 和 mPEG-PCL 自组装形成的 DMP 阳离子纳米粒可以递送不同类型的核酸。DMP 已成功应用于各种肿瘤类型的基因治疗研究。在这里,我们将肿瘤细胞裂解物包裹在 DMP 纳米粒中,然后用融合的细胞穿透肽(TAT-iRGD)对其进行修饰,形成 MLSV 系统。MLSV 系统负载编码的 Bim mRNA,形成 MLSV/Bim 复合物。合成的 MLSV 的平均粒径为 191.4nm,具有 47.8mV 的电位。MLSV/mRNA 复合物通过网格蛋白介导的内吞作用促进 mRNA 吸收,在 B16 细胞中的转染率高达 68.6%。MLSV 系统还可以诱导树突状细胞的成熟和激活,明显促进 CD80、CD86 和 MHC-II 的表达。通过负载编码的 Bim mRNA,MLSV/Bim 复合物可以抑制细胞增殖和肿瘤生长,抑制率高达 87.3%。同样,MLSV/Bim 复合物可以抑制肿瘤生长,在 B16 皮下肿瘤模型中的抑制率高达 78.7%,在 B16 肺转移瘤模型中的抑制率高达 63.3%。我们的研究结果表明,MLSV 系统是一种先进的基于 mRNA 的免疫基因治疗候选物。

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