再分化使能的 TSHRCART 细胞克服侵袭性甲状腺癌中的抗原丢失
Redifferentiation-enabled TSHRCART cells overcome antigen loss in aggressive thyroid cancers.
这些发现确立了肿瘤再分化作为一种可推广的策略,用于克服抗原丢失并增强CART细胞疗法在甲状腺癌以及可能其他实体瘤中的疗效。
英文原题:BRAF-AXL-PD-L1 Signaling Axis as a Possible Biological Marker for RAI Treatment in the Thyroid Cancer ATA Intermediate Risk Category.
这些数据提示,BRAF 突变和 AXL 表达参与 DTC 患者的 LER 以及 PD-L1 和 CD8 的更高表达,可能成为 ATA 中危组 RIT 个体化的新生物标志物,也可用于指导使用更高活度的放射性碘或其他可能的疗法。
中危分化型甲状腺癌(DTC)患者是否应接受放射性碘治疗(RIT)仍有争议。了解DTC发病机制中的分子机制,有助于优化RIT患者选择。本研究分析46名按统一方案接受手术和RIT的ATA中危患者肿瘤组织中的BRAF、RAS、TERT、PIK3和RET突变状态,以及PD-L1(CPS评分)、NIS和AXL基因表达及TIL(肿瘤浸润淋巴细胞)(TIL,以CD4/CD8比值表示)。BRAF突变与RIT后未达到优异疗效反应(LER,按2015年ATA分类)显著相关(P=0.001),并与AXL表达较高(P=0.007)、NIS表达较低(P=0.045)和PD-L1表达较高(P=0.004)相关。与疗效优异者相比,LER患者AXL水平显著较高(P=0.0003)、NIS水平较低(P=0.0004)、PD-L1水平较高(P=0.0001)。AXL水平与PD-L1表达呈显著正相关(P<0.0001);AXL与NIS表达及TIL则呈显著负相关(分别为P=0.0009和P=0.028)。这些数据提示,BRAF突变和AXL表达与DTC患者LER及PD-L1、CD8表达升高有关,可能成为ATA中危患者个体化RIT的候选生物标志物,并有助于考虑提高放射性碘活度或采用其他治疗。
The use of radioiodine therapy (RIT) is debated in intermediate-risk differentiated thyroid cancer (DTC) patients. The understanding of the molecular mechanisms involved in the pathogenesis of DTC can be useful to refine patient selection for RIT. We analyzed the mutational status of BRAF, RAS, TERT, PIK3 and RET, and the expression of PD-L1 (as a CPS score), the NIS and AXL genes and the tumor-infiltrating lymphocytes (TIL, as the CD4/CD8 ratio), in the tumor tissue in a cohort of forty-six ATA intermediate-risk patients, homogeneously treated with surgery and RIT. We found a significant correlation between BRAF mutations and a less than excellent (LER, according to 2015 ATA classification) response to RIT treatment ( p = 0.001), higher expression of the AXL gene ( p = 0.007), lower expression of NIS ( p = 0.045) and higher expression of PD-L1 ( p = 0.004). Moreover, the LER patient group had a significantly higher level of AXL ( p = 0.0003), a lower level of NIS ( p = 0.0004) and a higher PD-L1 level ( p = 0.0001) in comparison to patients having an excellent response to RIT. We also found a significant direct correlation between the AXL level and PD-L1 expression ( p < 0.0001) and a significant inverse correlation between AXL and NIS expression and TILs ( p = 0.0009 and p = 0.028, respectively). These data suggest that BRAF mutations and AXL expression are involved in LER among DTC patients and in the higher expression of PD-L1 and CD8, becoming new possible biomarkers to personalize RIT in the ATA intermediate-risk group, as well as the use of higher radioiodine activity or other possible therapies.
MEMBER ACCOUNT
登录成功会直接打开下一页。