CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Developing neoantigen cancer vaccines: where are we now?
Developing neoantigen cancer vaccines: where are we now?
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免疫检查点阻断和工程化T细胞等免疫疗法的成功,已证明免疫系统具有抗癌潜力。尽管针对人乳头瘤病毒等致癌病毒的预防性疫苗可通过阻断感染来预防癌症,但靶向肿瘤相关抗原或肿瘤特异性抗原(TAAs/TSAs)的治疗性疫苗尚未能可靠地产生有意义的肿瘤消退。DNA测序和用于预测个体化、MHC限制性新抗原的计算流程的进步,如今使个性化癌症疫苗(PCVs)成为可能。通过靶向由体细胞突变产生的新抗原,PCVs可避开限制抗TAA疫苗的中枢耐受。多项临床试验已显示出前景,但PCV的设计、递送和最佳疾病应用场景仍需进一步完善。
The success of immunotherapies such as immune checkpoint blockade and engineered T-cells has demonstrated the immune system's anticancer potential. Although prophylactic vaccines against oncogenic viruses such as human papillomavirus prevent cancer by blocking infection, therapeutic vaccines targeting tumour-associated or tumour-specific antigens (TAAs/TSAs) have not reliably produced meaningful tumour regressions.
Advances in DNA sequencing and computational pipelines for predicting individual, MHC-restricted neoantigens now enable personalized cancer vaccines (PCVs). By targeting neoantigens arising from somatic mutations, PCVs escape the central tolerance that limits anti-TAA vaccines. Multiple clinical trials have shown promise, but PCV design, delivery, and optimal disease settings require further refinement.
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