RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Investigation of the anticancer efficacy and impact on energy metabolism of dual-core gold(i) complex BGC2a.
Investigation of the anticancer efficacy and impact on energy metabolism of dual-core gold(i) complex BGC2a.
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双核金(i)配合物BGC2a在体外和体内非小细胞肺癌细胞中已显示出优于临床候选药物金诺芬(AF)的抗癌潜力。在本工作中,我们进一步研究了BGC2a在一组不同癌细胞系中作为抗癌候选药物的潜力,以及其在正常细胞中的安全性。BGC2a (IC 50 范围为0.33至0.78 μM)在六种癌细胞系中持续显示出高于AF (IC 50 范围为0.56至1.41 μM)的细胞毒性,且未增加对正常HS-5和自然杀伤T (NKT)细胞的毒性作用。BGC2a优先杀伤KRAS-on细胞而非KRAS-off细胞,并且其在抑制癌症干细胞样细胞方面高度有效,因为其单独或与塞来昔布联合使用均以剂量依赖性方式减少DLD1、PANC1和A549细胞的集落形成。在胶质瘤干细胞GSC11和GSC23中也发现了类似的集落抑制效果。BGC2a (1 μM,24 h)预处理可显著抑制体内肿瘤形成。机制研究表明,BGC2a优先抑制线粒体中的TrxR活性,并减少乳酸生成,这部分是通过抑制GAPDH介导的。BGC2a通过线粒体介导的机制诱导HCT116细胞凋亡,并减少HCT116异种移植模型的肿瘤生长,且未改变治疗小鼠的体重。这些发现进一步支持BGC2a作为一种有前景的新型癌症治疗药物。
Dual-core gold(i) complex BGC2a has been shown to have superior anticancer potential to the clinical candidate auranofin (AF) in non-small lung cancer cells in vitro and in vivo . In this work, we further investigate BGC2a's potential as an anticancer candidate in a set of different cancer cell lines as well as its safety profile in normal cells. BGC2a (IC 50 ranging from 0. 33 to 0. 78 μM) consistently showed higher cytotoxicity in six cancer cell lines than AF (IC 50 ranging from 0. 56 to 1. 41 μM), without increasing its toxic effects in normal HS-5 and natural killer T (NKT) cells.
BGC2a preferably killed KRAS-on cells over KRAS-off cells, and it was highly potent in inhibiting cancer stem-like cells, as it alone or combined with celecoxib reduced the colony formations of DLD1, PANC1, and A549 cells in a dose-dependent manner. Similar colony-suppressing effects were also identified in glioma stem cells GSC11 and GSC23. Pretreatment of BGC2a (1 μM, 24 h) could significantly inhibit the tumor formation in vivo .
The mechanistic study indicated that BGC2a preferably inhibited the TrxR activity in mitochondria, and it reduced lactate production, which was mediated partially by inhibiting GAPDH. BGC2a induced apoptosis of HCT116 cells via a mitochondria-mediated mechanism and reduced the tumor growth of the HCT116 xenograft model without altering the body weight of treated mice.
These findings further support BGC2a as a promising novel therapy for cancer treatment.
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