髓系白血病
癌症研究
封锁
细胞凋亡
生物
外周血单个核细胞
白血病
髓样
医学
细胞周期
免疫学
阿糖胞苷
体外
调节器
车站3
靶向治疗
细胞
疾病
抗药性
髓系细胞
髓源性抑制细胞
骨髓
体内
细胞存活
化疗
细胞周期检查点
药理学
作者
Zhaoxing Wu,Shuwen Zheng,Man Li,Xuzhao Zhang,Wenxi Zheng,Ping Wang,Qinyuan Gong,Xianghua Wu,JS Wu,Yun Liang,Rongzhen Xu
标识
DOI:10.1093/jleuko/qiaf184
摘要
Relapse and therapy resistance remain major barriers to improving clinical outcomes in acute myeloid leukemia (AML), underscoring the need for actionable therapeutic targets. In this study, we identify CaMKIIδ as a novel vulnerability in AML. CaMKIIδ is aberrantly overactivated in primary and relapsed/refractory AML patient samples compared with healthy donor peripheral blood mononuclear cells, with elevated expression correlating with increased tumor burden and inferior survival. Mechanistically, CaMKIIδ inhibition induces rapid apoptosis in AML bulk and stem/progenitor cells by suppressing STAT3 phosphorylation, downregulating CDK6-mediated cell cycle progression, and reducing BCL-2-dependent survival. Strikingly, pharmacological blockade of CaMKIIδ using the small-molecule inhibitor hesperadin effectively eliminates AML cells in vitro and achieves sustained disease regression in AML xenograft mouse models. Our findings establish CaMKIIδ as a central regulator of AML cell survival and apoptosis, providing a preclinical rationale for targeting CaMKIIδ to overcome therapy resistance in AML.
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