威尼斯人
医学
髓系白血病
离体
肿瘤科
耐火材料(行星科学)
内科学
低甲基化剂
体内
抗药性
白血病
药理学
阿扎胞苷
髓样
化疗
淋巴瘤
临床试验
癌症研究
免疫学
药品
阿糖胞苷
毒性
癸他滨
作者
Ida Vänttinen,Joseph Saad,Tanja Ruokoranta,Sari Kytölä,Guangrong Qin,Bahar Tercan,Pia Ettala,Anu Partanen,Marja Pyörälä,Johanna Rimpiläinen,Timo Siitonen,Mikko Manninen,Peter J. M. Valk,GA Huls,Vésteinn Thórsson,C. A. Heckman,Mika Kontro,Heikki Kuusanmäki
出处
期刊:HemaSphere
[Wolters Kluwer]
日期:2026-01-01
卷期号:10 (1): e70282-e70282
被引量:1
摘要
ABSTRACT The B‐cell lymphoma 2 (BCL‐2) inhibitor venetoclax (VEN) in combination with hypomethylating agents (HMAs) has improved treatment outcomes for acute myeloid leukemia (AML) patients unfit for intensive chemotherapy and is increasingly used in the relapsed/refractory setting. However, primary resistance remains a significant challenge, affecting 20%–35% of treatment‐naïve and around 50% of previously treated AML patients. To investigate the mechanisms driving primary resistance to VEN–HMA therapy, we analyzed genetic, transcriptomic, BCL‐2 family protein expression, and ex vivo drug sensitivity data from 101 AML patients and correlated these profiles with clinical outcomes to VEN–HMA. Our study found that blasts from refractory patients exhibit an elevated BCL‐XL/BCL‐2 protein expression ratio, an immature CD34 + CD38 − phenotype, and frequent TP53 mutations. Consistent with the high ratio of BCL‐XL/BCL‐2, resistant samples showed increased ex vivo sensitivity to the dual BCL‐2/BCL‐XL inhibitor navitoclax. In addition, SMAC mimetics were effective in refractory blasts, which correlated with high TNF gene expression in these cells. Ex vivo treatment with the combination of navitoclax and SMAC mimetics further enhanced the eradication of VEN–HMA refractory blasts, although toxicity was also observed in healthy CD34 + cells. In conclusion, our integrative analysis identifies molecular signatures associated with primary VEN–HMA resistance and highlights BCL‐2/BCL‐XL inhibition and SMAC mimetics as therapeutic strategies to target resistance.
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