CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Circular RNA cancer vaccines drive immunity in hard-to-treat malignancies.
Circular RNA cancer vaccines drive immunity in hard-to-treat malignancies.
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在此,我们首先测试了一种新型环状RNA(circRNA)平台用于蛋白质表达的可能性,并比较其与线性RNA的持续时间。然后,我们开发了一种用于体外和体内circRNA递送的脂质纳米颗粒(LNP)系统。接下来,在体内评估了circRNA-LNP复合物的先天性和适应性免疫应答。circRNA-LNP的抗肿瘤疗效在三种肿瘤模型中得到进一步证实。最后,在晚期肿瘤模型中进一步研究了circRNA-LNP与过继性细胞转移疗法联合治疗的可能性。
我们通过将线性RNA分子环化形成高度稳定的circRNA分子,成功提高了RNA疫苗的稳定性,其表现出持久的蛋白质表达 ability。通过将编码抗原的circRNA封装在LNP中实现体内表达,我们建立了一种新型circRNA疫苗平台,该平台能够触发强大的先天性和适应性免疫激活,并在多种小鼠肿瘤模型中显示出优越的抗肿瘤疗效。
总体而言,我们的circRNA疫苗平台为在广泛难治性恶性肿瘤中开发癌症RNA疫苗提供了新的前景。
Rationale: Messenger RNA (mRNA) vaccine outperforms other kinds of cancer immunotherapy due to its high response rates, easy preparation, and wide applicability, which is considered as one of the most promising forms of next-generation cancer therapies.
However, the inherent instability and insufficient protein expression duration of mRNA limit the efficacy and widespread application of the vaccine. Methods: Here, we first tested the possibility of a novel circular RNA (circRNA) platform for protein expression and compare its duration with linear RNA.
Then, we developed a lipid nanoparticle (LNP) system for circRNA delivery in vitro and in vivo . Next, the innate and adaptive immune response of circRNA-LNP complex was evaluated in vivo . The anti-tumor efficacy of circRNA-LNP was further confirmed in three tumor models.
Finally, the possibility of combination therapy with circRNA-LNP and adoptive cell transfer therapy was further investigated in a late-stage tumor model. Results: We successfully increased the stability of the RNA vaccine by circularizing the linear RNA molecules to form highly stable circRNA molecules which exhibited durable protein expression ability.
By encapsulating the antigen-coding circRNA in LNP enabling in vivo expression, we established a novel circRNA vaccine platform, which was capable of triggering robust innate and adaptive immune activation and showed superior anti-tumor efficacy in multiple mouse tumor models. Conclusions: Overall, our circRNA vaccine platform provides a novel prospect for the development of cancer RNA vaccines in a wide range of hard-to-treat malignancies.
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