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含腺相关病毒的外泌体作为一种新型载体用于改善肺癌细胞的基因递送

AAV-Containing Exosomes as a Novel Vector for Improved Gene Delivery to Lung Cancer Cells.

作者信息

Liu Bin, Li Zhiqing, Huang Shi, Yan Biying, He Shan, Chen Fengyuan, Liang Yaxuan

机构信息

Center for Biological Science and Technology, Advanced Institute of Natural Sciences, Beijing Normal University at Zhuhai, Zhuhai, China.

Department of Cellular and Molecular Biology, Beijing Chest Hospital, Capital Medical University/Beijing Tuberculosis and Thoracic Tumor Research Institute, Beijing, China.

出版信息

Front Cell Dev Biol. 2021 Aug 13;9:707607. doi: 10.3389/fcell.2021.707607. eCollection 2021.

Abstract

Lung carcinoma is the most common type of cancer and the leading cause of cancer-related death worldwide. Among the numerous therapeutic strategies for the treatment of lung cancer, adeno-associated virus (AAV)-mediated gene transfer has been demonstrated to have the potential to effectively suppress tumor growth or reverse the progression of the disease in a number of preclinical studies. AAV vector has a safety profile; however, the relatively low delivery efficacy to particular subtypes of lung carcinoma has limited its prospective clinical translation. Exosomes are nanosized extracellular vesicles secreted from nearly all known cell types. Exosomes have a membrane-enclosed structure carrying a range of cargo molecules for efficient intercellular transfer of functional entities, thus are considered as a superior vector for drug delivery. In the present study, we developed a novel strategy to produce and purify AAV-containing exosomes (AAVExo) from AAV-packaging HEK 293T cells. The cellular uptake capacity of exosomes assisted and enhanced AAV entry into cells and protected AAV from antibody neutralization, which was a serious challenge for AAV application. We tested a list of lung cancer cell lines representing non-small-cell lung cancer and small-cell lung cancer and found that AAVExo apparently improved the gene transfer efficiency compared to conventional AAV vector. Our results were supported in a lung cancer xenograft rodent model. Additionally, we evaluated the gene delivery efficiency in the presence of neutralizing antibody on lung cancer cells. The results demonstrated that AAVExo-mediated gene transfer was not impacted, while the AAV vectors were significantly blocked by the neutralizing antibody. Taken together, we established an efficient methodology for AAVExo purification, and the purified AAVExo largely enhanced gene delivery to lung cancer cells with remarkable resistance to antibody neutralization.

摘要

肺癌是最常见的癌症类型,也是全球癌症相关死亡的主要原因。在众多肺癌治疗策略中,腺相关病毒(AAV)介导的基因转移在多项临床前研究中已被证明有潜力有效抑制肿瘤生长或逆转疾病进展。AAV载体具有安全特性;然而,其对特定亚型肺癌的递送效率相对较低,限制了其临床应用前景。外泌体是几乎所有已知细胞类型分泌的纳米级细胞外囊泡。外泌体具有膜包裹结构,携带一系列货物分子以实现功能实体的高效细胞间转移,因此被认为是一种优越的药物递送载体。在本研究中,我们开发了一种从AAV包装的HEK 293T细胞中生产和纯化含AAV外泌体(AAVExo)的新策略。外泌体的细胞摄取能力辅助并增强了AAV进入细胞,并保护AAV免受抗体中和,这是AAV应用面临的一个严峻挑战。我们测试了一系列代表非小细胞肺癌和小细胞肺癌的肺癌细胞系,发现与传统AAV载体相比,AAVExo明显提高了基因转移效率。我们的结果在肺癌异种移植啮齿动物模型中得到了验证。此外,我们评估了在存在中和抗体的情况下肺癌细胞的基因递送效率。结果表明,AAVExo介导的基因转移不受影响,而AAV载体则被中和抗体显著阻断。综上所述,我们建立了一种高效的AAVExo纯化方法,纯化的AAVExo大大增强了对肺癌细胞的基因递送,且对抗体中和具有显著抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afc1/8414974/8a86b7861e10/fcell-09-707607-g001.jpg

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