基于脂质纳米颗粒的多尺度系统性免疫编程用于癌症治疗
Lipid nanoparticle-based multi-scale systemic immune programming for cancer therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:From structural design to delivery: mRNA therapeutics for cancer immunotherapy.
From structural design to delivery: mRNA therapeutics for cancer immunotherapy.
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mRNA 疗法已成为癌症免疫治疗的有力工具,其优势在于可在体内表达所有序列已知的蛋白质。尤其是,少量递送的 mRNA 即可使抗原呈递细胞(APC)合成突变新抗原和多种抗原,并将表位呈递给 T 淋巴细胞,从而诱导抗肿瘤作用。
此外,在特定细胞中表达嵌合抗原受体(CAR)、T 细胞受体(TCR)、CD134 等受体,以及细胞因子、干扰素和抗体等免疫调节因子,可增强抗肿瘤免疫反应。随着体外转录(IVT)技术日益成熟,可快速合成编码特定蛋白质的大规模、高纯度 mRNA。
然而,mRNA 癌症治疗策略的临床转化受到 mRNA 向靶器官或靶细胞递送困难,以及 mRNA 内体逃逸效率不足的限制。近期 mRNA 癌症免疫治疗取得了一些进展,大致可分为 mRNA 结构修饰和递送系统开发,尤其是脂质纳米颗粒平台。本综述总结克服 mRNA 癌症免疫治疗局限的最新策略,以及将 mRNA 递送至特定器官和细胞的最新进展,并讨论其临床应用面临的挑战和机遇。
mRNA therapeutics have emerged as powerful tools for cancer immunotherapy in accordance with their superiority in expressing all sequence-known proteins in vivo. In particular, with a small dosage of delivered mRNA, antigen-presenting cells (APCs) can synthesize mutant neo-antigens and multi-antigens and present epitopes to T lymphocytes to elicit antitumor effects.
In addition, expressing receptors like chimeric antigen receptor (CAR), T-cell receptor (TCR), CD134, and immune-modulating factors including cytokines, interferons, and antibodies in specific cells can enhance immunological response against tumors. With the maturation of in vitro transcription (IVT) technology, large-scale and pure mRNA encoding specific proteins can be synthesized quickly.
However, the clinical translation of mRNA-based anticancer strategies is restricted by delivering mRNA into target organs or cells and the inadequate endosomal escape efficiency of mRNA. Recently, there have been some advances in mRNA-based cancer immunotherapy, which can be roughly classified as modifications of the mRNA structure and the development of delivery systems, especially the lipid nanoparticle platforms.
In this review, the latest strategies for overcoming the limitations of mRNA-based cancer immunotherapies and the recent advances in delivering mRNA into specific organs and cells are summarized. Challenges and opportunities for clinical applications of mRNA-based cancer immunotherapy are also discussed.
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