CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Bioengineering strategies to enhance the interleukin-18 bioactivity in the modern toolbox of cancer immunotherapy.
Bioengineering strategies to enhance the interleukin-18 bioactivity in the modern toolbox of cancer immunotherapy.
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细胞因子是现代最早用于激活免疫治疗的药物。过去三十年,白细胞介素18(IL-18)逐渐成为一种强效抗癌免疫刺激性细胞因子。IL-18结构稳定,在生物学剂量下毒性极低,可促进抗原呈递并增强先天和适应性免疫应答。IL-18还能诱导促炎细胞因子产生,增加效应免疫细胞向肿瘤浸润,从而逆转肿瘤免疫抑制环境;此外,还可减少肿瘤发生、抑制肿瘤血管生成并诱导肿瘤细胞凋亡。这些特征使IL-18成为有前景的癌症免疫治疗选择。尽管多项临床前研究报告了IL-18的免疫治疗潜力,其单药临床试验结果却令人失望,可能与IL-18自身的一些生物学特性有关。多种生物工程方法已成功用于修正其作为生物佐剂的缺陷。目前该抗癌免疫治疗药物的主要挑战,是如何在临床上合理利用其潜力开展联合治疗。
本研究讨论IL-18作为免疫治疗药物的优势和不足,并全面综述克服其缺陷的多种有前景生物工程策略。最后,文章重点介绍IL-18在现代联合治疗中的潜在应用,包括化疗、免疫检查点阻断、细胞免疫治疗和癌症疫苗,以指导未来研究、克服临床应用障碍,并推动IL-18成为强效癌症免疫治疗药物。
Cytokines are the first modern immunotherapeutic agents used for activation immunotherapy. Interleukin-18 (IL-18) has emerged as a potent anticancer immunostimulatory cytokine over the past three decades. IL-18, structurally is a stable protein with very low toxicity at biological doses.
IL-18 promotes the process of antigen presentation and also enhances innate and acquired immune responses. It can induce the production of proinflammatory cytokines and increase tumor infiltration of effector immune cells to revert the immunosuppressive milieu of tumors.
Furthermore, IL-18 can reduce tumorigenesis, suppress tumor angiogenesis, and induce tumor cell apoptosis. These characteristics present IL-18 as a promising option for cancer immunotherapy. Although several preclinical studies have reported the immunotherapeutic potential of IL-18, clinical trials using it as a monotherapy agent have reported disappointing results. These results may be due to some biological characteristics of IL-18.
Several bioengineering approaches have been successfully used to correct its defects as a bioadjuvant. Currently, the challenge with this anticancer immunotherapeutic agent is mainly how to use its capabilities in a rational combinatorial therapy for clinical applications. The present study discussed the strengths and weaknesses of IL-18 as an immunotherapeutic agent, followed by comprehensive review of various promising bioengineering approaches that have been used to overcome its disadvantages.
Finally, this study highlights the promising application of IL-18 in modern combinatorial therapies, such as chemotherapy, immune checkpoint blockade therapy, cell-based immunotherapy and cancer vaccines to guide future studies, circumventing the barriers to administration of IL-18 for clinical applications, and bring it to fruition as a potent immunotherapy agent in cancer treatment.
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