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癌症疫苗和纳米疫苗的最新进展。

Recent progress in cancer vaccines and nanovaccines.

机构信息

Wellman Center for Photomedicine and Department of Dermatology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

College of Pharmacy, Yeungnam University, Gyeongsan, 38541, Republic of Korea.

出版信息

Biomaterials. 2025 Mar;314:122856. doi: 10.1016/j.biomaterials.2024.122856. Epub 2024 Sep 27.

Abstract

Vaccine science, nanotechnology, and immunotherapy are at the forefront of cancer treatment strategies, each offering significant potential for enhancing tumor-specific immunity and establishing long-lasting immune memory to prevent tumor recurrence. Despite the promise of these personalized and precision-based anti-cancer approaches, challenges such as immunosuppression, suboptimal immune activation, and T-cell exhaustion continue to hinder their effectiveness. The limited clinical success of cancer vaccines often stems from difficulties in identifying effective antigens, efficiently targeting immune cells, lymphoid organs, and the tumor microenvironment, overcoming immune evasion, enhancing immunogenicity, and avoiding lysosomal degradation. However, numerous studies have demonstrated that integrating nanotechnology with immunotherapeutic strategies in vaccine development can overcome these challenges, leading to potent antitumor immune responses and significant progress in the field. This review highlights the critical components of cancer vaccine and nanovaccine strategies for immunomodulatory antitumor therapy. It covers general vaccine strategies, types of vaccines, antigen forms, nanovaccine platforms, challenges faced, potential solutions, and key findings from preclinical and clinical studies, along with future perspectives. To fully unlock the potential of cancer vaccines and nanovaccines, precise immunological monitoring during early-phase trials is essential. This approach will help identify and address obstacles, ultimately expanding the available options for patients who are resistant to conventional cancer immunotherapies.

摘要

疫苗科学、纳米技术和免疫疗法是癌症治疗策略的前沿领域,每种方法都为增强肿瘤特异性免疫和建立持久的免疫记忆以预防肿瘤复发提供了巨大的潜力。尽管这些个性化和基于精准的抗癌方法前景广阔,但免疫抑制、免疫激活不足和 T 细胞衰竭等挑战仍然阻碍着它们的有效性。癌症疫苗的临床疗效有限往往源于难以识别有效的抗原,难以有效地靶向免疫细胞、淋巴器官和肿瘤微环境,难以克服免疫逃逸,提高免疫原性,避免溶酶体降解。然而,许多研究表明,将纳米技术与免疫治疗策略相结合应用于疫苗开发可以克服这些挑战,从而引发强烈的抗肿瘤免疫反应,并在该领域取得重大进展。本综述重点介绍了癌症疫苗和纳米疫苗策略在免疫调节抗肿瘤治疗中的关键组成部分。内容涵盖了一般疫苗策略、疫苗类型、抗原形式、纳米疫苗平台、面临的挑战、潜在的解决方案、临床前和临床试验的重要发现,以及未来展望。为了充分挖掘癌症疫苗和纳米疫苗的潜力,在早期临床试验中进行精确的免疫监测至关重要。这种方法将有助于识别和解决障碍,最终为那些对传统癌症免疫疗法有抗性的患者提供更多的选择。

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