CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Neoantigen vaccine and neoantigen-specific cell adoptive transfer therapy in solid tumors: Challenges and future directions.
Neoantigen vaccine and neoantigen-specific cell adoptive transfer therapy in solid tumors: Challenges and future directions.
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肿瘤层级现象和遗传不稳定性可通过“二次打击理论”解释,并导致许多体细胞突变的发生。非同义突变的表达导致肿瘤细胞产生突变蛋白,即称为新抗原的肿瘤特异性抗原。由于新抗原不存在于健康细胞中,它们有可能通过CD4+和CD8+ T细胞激活来刺激抗肿瘤免疫反应,而不危及正常组织。近几十年来,随着免疫检查点阻断疗法和转基因T细胞受体/CAR-T 细胞的引入,免疫疗法重塑了癌症治疗范式。
然而,由于调节性T细胞和其他抑制细胞引起的免疫抑制微环境的障碍,这些策略在实体瘤中表现不佳。因此,其他免疫治疗策略正在开发中,例如个性化疫苗,以触发针对新抗原的从头T细胞反应,并导致肿瘤特异性T细胞亚克隆的扩增。由于下一代测序和癌症生物信息学的快速发展,新抗原表位预测算法使得能够检测新抗原并创建定制的新抗原疫苗。
在此,我们概述了当前的新抗原癌症疫苗和采用新抗原特异性淋巴细胞的过继性T细胞转移疗法。我们还讨论了开发针对癌症的新抗原靶向免疫治疗策略所面临的挑战。
The phenomenon of tumor hierarchy and genetic instability can be explained by the "two-hits theory" and results in the occurrence of many somatic mutations. The expression of nonsynonymous mutations results in the production of mutant proteins from tumor cells, namely tumor-specific antigens called neoantigens.
Because neoantigens do not exist in healthy cells, they have the potential to stimulate antitumor immune responses by CD4+ and CD8+ T-cell activation without jeopardizing normal tissues. Immunotherapy has reshaped the cancer treatment paradigm in recent decades with the introduction of immune-checkpoint blockade therapy and transgenic T-cell receptor/chimeric antigen receptor T cells.
However, these strategies performed poorly in solid tumors because of the obstacles of the immunosuppressive microenvironment caused by regulatory T cells and other suppressor cells.
Therefore, other immunotherapeutic strategies are under development, such as personalized vaccines, to trigger de novo T-cell responses against neoantigens and lead to the amplification of tumor-specific T-cell subclones. Neoantigen epitope prediction algorithms have enabled the detection of neoantigens and the creation of tailored neoantigen vaccines as a result of the fast development of next-generation sequencing and cancer bioinformatics.
Here we provide an overview of the current neoantigen cancer vaccines and adoptive T-cell transfer therapy with neoantigen-specific lymphocytes.
We also discuss the challenges in developing neoantigen-targeted immunotherapeutic strategies for cancer.
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