肿瘤细胞治疗研究
英文原题:Checkpoint blockade meets gene therapy: Opportunities to improve response and reduce toxicity.
Checkpoint blockade meets gene therapy: Opportunities to improve response and reduce toxicity.
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基于单克隆抗体的免疫检查点抑制剂(ICIs)代表了癌症治疗的突破。然而,其疗效因肿瘤类型和患者而异,并且由于它们以高剂量全身给药,可能因靶向/脱靶活性而导致不良反应。一种替代且有吸引力的ICIs递送方法是使用能够在体内表达它们的基因治疗载体。本综述聚焦于最近使用能够在癌症临床前模型中局部或全身表达ICIs的病毒载体的研究。这些载体包括非复制型病毒、能够在肿瘤细胞中特异性增殖并破坏它们的溶瘤病毒,以及携带不同形式抗免疫检查点抗体的自扩增RNA载体。非复制型载体通常导致长期的ICI表达,可能消除重复给药的需要。具有复制能力的载体,尽管表达窗口较短,但可以诱导炎症,从而增强抗肿瘤效果。最后,这些工程化载体可以与其他免疫刺激分子或与CAR-T 细胞联合使用,进一步增强抗肿瘤免疫反应。
Immune checkpoint inhibitors (ICIs) based on monoclonal antibodies represent a breakthrough for the treatment of cancer.
However, their efficacy varies among tumor types and patients, and they can lead to adverse effects due to on-target/off-tumor activity, since they are administered systemically at high doses. An alternative and attractive approach for the delivery of ICIs is the use of gene therapy vectors able to express them in vivo. This review focuses on the most recent studies using viral vectors able to express ICIs locally or systemically in preclinical models of cancer.
These vectors include non-replicating viruses, oncolytic viruses able to propagate specifically in tumor cells and destroy them, and self-amplifying RNA vectors, armed with different formats of antibodies against immune checkpoints. Non-replicating vectors usually lead to long-term ICI expression, potentially eliminating the need for repeated administration. Vectors with replication capacity, although they have a shorter window of expression, can induce inflammation which enhances the antitumor effect.
Finally, these engineered vectors can be used in combination with other immunostimulatory molecules or with CAR-T cells, further boosting the antitumor immune responses.
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