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癌症免疫疗法的未来:DNA 疫苗引领潮流。

The future of cancer immunotherapy: DNA vaccines leading the way.

机构信息

Department of Pharmacology and Pharmacy Practice, L. M. College of Pharmacy, Opp. Gujarat University, Ahmedabad, Gujarat, 380009, India.

AV Pharma LLC, 1545 University Blvd N Ste A, Jacksonville, FL, 32211, USA.

出版信息

Med Oncol. 2023 Jun 9;40(7):200. doi: 10.1007/s12032-023-02060-3.

Abstract

Immuno-oncology has revolutionized cancer treatment and has opened up new opportunities for developing vaccination methods. DNA-based cancer vaccines have emerged as a promising approach to activating the bodily immune system against cancer. Plasmid DNA immunizations have shown a favorable safety profile and there occurs induction of generalized as well as tailored immune responses in preclinical and early-phase clinical experiments. However, these vaccines have notable limitations in immunogenicity and heterogeneity and these require refinements. DNA vaccine technology has been focusing on improving vaccine efficacy and delivery, with parallel developments in nanoparticle-based delivery systems and gene-editing technologies such as CRISPR/Cas9. This approach has showcased great promise in enhancing and tailoring the immune response to vaccination. Strategies to enhance the efficacy of DNA vaccines include the selection of appropriate antigens, optimizing insertion in a plasmid, and studying combinations of vaccines with conventional strategies and targeted therapies. Combination therapies have attenuated immunosuppressive activities in the tumor microenvironment and enhanced the capability of immune cells. This review provides an overview of the current framework of DNA vaccines in oncology and focuses on novel strategies, including established combination therapies and those still under development.The challenges that oncologists, scientists, and researchers need to overcome to establish DNA vaccines as an avant-garde approach to defeating cancer, are also emphasized. The clinical implications of the immunotherapeutic approaches and the need for predictive biomarkers have also been reviewed upon. We have also tried to extend the role of Neutrophil extracellular traps (NETs) to the DNA vaccines. The clinical implications of the immunotherapeutic approaches have also been reviewed upon. Ultimately, refining and optimizing DNA vaccines will enable harnessing the immune system's natural ability to recognize and eliminate cancer cells, leading the world towards a revolution in cancer cure.

摘要

免疫肿瘤学已经彻底改变了癌症治疗方法,并为开发疫苗方法开辟了新的机会。基于 DNA 的癌症疫苗已成为激活机体免疫系统对抗癌症的一种很有前途的方法。质粒 DNA 免疫接种显示出良好的安全性,并且在临床前和早期临床试验中诱导了全身性和针对性免疫反应。然而,这些疫苗在免疫原性和异质性方面存在显著的局限性,需要进一步改进。DNA 疫苗技术一直专注于提高疫苗的功效和递送,同时在基于纳米颗粒的递送系统和基因编辑技术(如 CRISPR/Cas9)方面也取得了进展。这种方法在增强和定制疫苗免疫反应方面展示出了巨大的潜力。增强 DNA 疫苗功效的策略包括选择合适的抗原、优化质粒插入以及研究疫苗与常规策略和靶向治疗的组合。组合疗法减弱了肿瘤微环境中的免疫抑制活性,并增强了免疫细胞的能力。本综述概述了 DNA 疫苗在肿瘤学中的当前框架,并重点介绍了新的策略,包括已建立的组合疗法和仍在开发中的疗法。强调了肿瘤学家、科学家和研究人员需要克服的挑战,以将 DNA 疫苗确立为战胜癌症的前沿方法。还对免疫治疗方法的临床意义和对预测性生物标志物的需求进行了回顾。我们还试图将中性粒细胞胞外陷阱 (NETs) 的作用扩展到 DNA 疫苗中。还对免疫治疗方法的临床意义进行了回顾。最终,改进和优化 DNA 疫苗将使我们能够利用免疫系统识别和消除癌细胞的自然能力,引领世界走向癌症治疗的革命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c71b/10251337/6abde5969c2c/12032_2023_2060_Fig1_HTML.jpg

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