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:mRNA-Based Cancer Vaccines: A Review of the Current Scenario and Future Prospects.
mRNA-Based Cancer Vaccines: A Review of the Current Scenario and Future Prospects.
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信使RNA(mRNA)作为一种治疗各种人类疾病,尤其是恶性肿瘤的有价值工具,已受到越来越多的关注。这种日益增长的兴趣很大程度上是由利用脂质纳米颗粒(LNP)技术开发的mRNA疫苗在对抗COVID-19方面取得的显著临床成功所引发的。mRNA可以通过多种不同方式用于产生癌症免疫疗法,包括用于诱导或增强对肿瘤特异性抗原(TSAs)或肿瘤相关抗原(TAAs)免疫力的癌症疫苗。mRNA还可用于过继转移T细胞以表达抗原受体,如嵌合抗原受体(CARs)、治疗性抗体和免疫调节蛋白,从而重新改造肿瘤微环境。
然而,由于一些局限性,如mRNA不稳定性、免疫原性的产生以及缺乏高效的体内递送方法,基于mRNA的癌症免疫疗法的治疗潜力尚未得到充分利用。本综述概述了基于mRNA的癌症疗法的当前进展和未来方向,包括各种递送途径和治疗平台。它阐述了mRNA癌症疫苗、非复制型和自扩增型mRNA的机制基础,以及它们的临床开发、个性化疫苗,以及mRNA在编码抗原受体、抗体和免疫调节蛋白方面的应用。
此外,本综述还讨论了基于纳米颗粒的平台,如脂质纳米颗粒(LNPs)、聚合物纳米颗粒和基于肽的纳米颗粒,这些平台均用于通过改善mRNA药物向组织的靶向递送来提高其治疗效果。本综述旨在为基于mRNA的最先进癌症免疫疗法的应用提供见解。
Messenger RNA (mRNA) has gained increasing attention as a valuable tool to cure various human diseases, particularly malignant tumors. Such growing interest has been triggered largely by the phenomenal clinical success of mRNA vaccines developed using lipid nanoparticle (LNP) technology against COVID-19.
mRNA may be used to produce cancer immunotherapies in numerous different ways, including cancer vaccines to induce or enhance immunity to tumor-specific antigens (TSAs) or tumor-associated antigens (TAAs). mRNA can also be used to adoptively transfer T-cells for the expression of antigen receptors, such as chimeric antigen receptors (CARs), therapeutic antibodies, and immunomodulatory proteins to re-engineer the tumor microenvironment.
However, the therapeutic potential of mRNA-based cancer immunotherapy is not fully utilized due to a few limitations, such as mRNA instability, production of immunogenicity, and a lack of efficient in-vivo delivery methods. This review provides an overview of the current advancements and future directions of mRNA-based cancer therapies, including various delivery routes and therapeutic platforms.
It addresses the mechanistic basis of mRNA cancer vaccines, non-replicating and self-amplifying mRNA, as well as their clinical development, personalized vaccines, and applications of mRNA for encoding antigen receptors, antibodies, and immunomodulatory proteins.
Moreover, the review addresses nanoparticle-based platforms, such as lipid nanoparticles (LNPs), polymeric nanoparticles, and peptide-based nanoparticles, all used to improve the therapeutic effectiveness of mRNA-based drugs by improving their targeted delivery to tissues. This review aims to provide insights into the use of state-of-the-art mRNA-based cancer immunotherapy.
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