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树突状细胞来源外泌体(Dex)作为抗肿瘤纳米疫苗的最新进展

英文原题:Recent progress of dendritic cell-derived exosomes (Dex) as an anti-cancer nanovaccine.

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Recent progress of dendritic cell-derived exosomes (Dex) as an anti-cancer nanovaccine.

PubMed 2022/06/13(内容时间) Biomed Pharmacother

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中文摘要

尽管近几十年来,诸如树突状细胞(DC)疫苗和肽疫苗等癌症疫苗已成为颇具吸引力和前景的抗癌免疫治疗选择,但一些障碍阻碍了它们在临床环境中的成功应用。DC制备成本高昂、DC疫苗的储存、肿瘤介导的免疫抑制环境、特异性肿瘤抗原的鉴定以及抗原肽在体内的高降解等困难,限制了这些癌症疫苗的临床应用并影响了其疗效。近年来,纳米载体被认为是疫苗递送的一种新方法。作为生物源性纳米载体,外泌体是细胞分泌的小膜囊泡,携带多种蛋白质、RNAs和脂质。更重要的是,DC来源的外泌体(Dex)在其表面表达肿瘤抗原、MHC分子和共刺激分子,从而触发抗原特异性CD4+和CD8+T细胞的释放。凭借其膜结构,Dex可以避免高降解,同时在体内确保良好的生物相容性和生物安全性。

此外,Dex可以在体外储存更长时间,这有助于显著降低生产成本。此外,与DC疫苗相比,由于其更高的免疫原性和更强的免疫抑制效应抵抗能力,Dex在临床前研究中显示出更好的抗肿瘤疗效。

然而,Dex疫苗的临床疗效仍然有限。在这篇综述中,我们旨在评估Dex作为一种抗癌纳米疫苗的疗效。

展开英文摘要原文

Although cancer vaccines such as dendritic cell (DC) vaccines and peptide vaccines have become appealing and attractive anticancer immunotherapy options in recent decades, some obstacles have hindered their successful application in the clinical setting. The difficulties associated with the high cost of DC preparation, storage of DC vaccines, tumor-mediated immunosuppressive environment, identification of specific tumor antigens, and high degradation of antigen peptides in vivo limit the clinical application and affect the outcomes of these cancer vaccines.

Recently, nanocarriers have been considered as a new approach for vaccine delivery. As biogenic nanocarriers, exosomes are small membrane vesicles secreted by cells that carry various proteins, RNAs, and lipids. More importantly, DC-derived exosomes (Dex) express tumor antigens, MHC molecules, and co-stimulatory molecules on their surface, which trigger the release of antigen-specific CD4 + and CD8 + T cells. With their membrane structure, Dex can avoid high degradation while ensuring favorable biocompatibility and biosafety in vivo.

In addition, Dex can be stored in vitro for a longer period, which facilitates a significant reduction in production costs.

Furthermore, they have shown better antitumor efficacy in preclinical studies compared with DC vaccines owing to their higher immunogenicity and stronger resistance to immunosuppressive effects.

However, the clinical efficacy of Dex vaccines remains limited. In this review, we aimed to evaluate the efficacy of Dex as an anticancer nanovaccine.

论文信息

作者
Xia J、Miao Y、Wang X、Huang X、Dai J
第一作者单位
Department of Hematology, Sichuan Academy of Medical Sciences & Sichuan Provincial People's Hospital, School of Medicine of University of Electronic Science and Technology of China, No. 32, West Section 2, First Ring Road, Qingyang District, Chengdu 610000, China. Electronic address: 211659502@qq.com.China
通讯作者单位
Department of Hematology, Sichuan Academy of Medical Sciences & Sichuan Provincial People's Hospital, School of Medicine of University of Electronic Science and Technology of China, No. 32, West Section 2, First Ring Road, Qingyang District, Chengdu 610000, China. Electronic address: 741107213@qq.com.China
文献类型
综述
期刊
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie2022 Aug
原文标识
PubMed 35700679 · DOI 10.1016/j.biopha.2022.113250