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:Cancer/Testis Antigens as Biomarker and Target for the Diagnosis, Prognosis, and Therapy of Lung Cancer.
Cancer/Testis Antigens as Biomarker and Target for the Diagnosis, Prognosis, and Therapy of Lung Cancer.
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肺癌是全球癌症相关死亡中最主要的恶性肿瘤类型之一,患者5年生存率仅为18%。肺癌中多种癌基因异常过表达,包括癌/睾丸抗原(CTA);这类抗原通常仅在男性睾丸中表达,在其他正常组织中几乎不表达。多种癌症中CTA异常过表达,且肺癌中异常过表达的CTA超过60种。致癌性CTA过表达可推动肺癌发生、转移和进展,并与患者不良预后密切相关。XAGE、SPAG9和AKAP4等CTA已被视为肺癌诊断及预后预测标志物。更值得关注的是,由于CTA在癌症中具有高度免疫原性和特异性,CT45、BCAP31和ACTL8等CTA已成为开发新型抗癌疗法的靶点。CTA疫苗、嵌合抗原受体修饰T细胞(CAR-T)和小分子药物已用于肺癌临床前研究及早期临床试验,并取得令人鼓舞的结果。
不过,这些疗法常规用于肺癌临床治疗前仍有许多障碍需要克服。本综述总结致癌性CTA领域的近期快速进展,重点讨论CTA作为肺癌诊断及预后标志物、作为新型抗癌药物发现和肺癌治疗靶点的应用,并指出CTA癌症诊断和治疗中的挑战与机遇。
最后,文章展望致癌性CTA参与肺癌发生发展的机制,并提出将CTA作为肺癌诊断、预后预测和新型抗癌药物开发的平台。
Lung cancer is the leading type of malignant tumour among cancer-caused death worldwide, and the 5-year survival rate of lung cancer patients is only 18%. Various oncogenes are abnormally overexpressed in lung cancer, including cancer/testis antigens (CTAs), which are restrictively expressed in the male testis but are hardly expressed in other normal tissues, if at all. CTAs are aberrantly overexpressed in various types of cancer, with more than 60 CTAs abnormally overexpressed in lung cancer. Overexpression of oncogenic CTAs drives the initiation, metastasis and progression of lung cancer, and is closely associated with poor prognosis in cancer patients.
Several CTAs, such as XAGE, SPAG9 and AKAP4, have been considered as biomarkers for the diagnosis and prognostic prediction of lung cancer. More interestingly, due to the high immunogenicity and specificity of CTAs in cancer, several CTAs, including CT45, BCAP31 and ACTL8, have been targeted for developing novel therapeutics against cancer. CTA-based vaccines, chimeric antigen receptor-modified T cells (CAR-T) and small molecules have been used in lung cancer treatment in pre-clinical and early clinical trials, with encouraging results being obtained.
However, there are still many hurdles to be overcome before these therapeutics can be routinely used in clinical lung cancer therapy. This review summarises the recent rapid progress in oncogenic CTAs, focusing on CTAs as biomarkers for lung cancer diagnosis and prognostic prediction, and as targets for novel anti-cancer drug discovery and lung cancer therapy.
We also identify challenges and opportunities in CTA-based cancer diagnosis and treatment.
Finally, we provide perspectives on the mechanisms of oncogenic CTAs in lung cancer development, and we also suggest CTAs as a new platform for lung cancer diagnosis, prognostic prediction, and novel anti-cancer drug discovery.
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