髓系白血病
下调和上调
细胞
癌症研究
抗药性
转录组
药品
阿糖胞苷
医学
药理学
生物
基因表达
生物化学
基因
遗传学
作者
Yu Wang,Hao Jiang,Zhenwei Su,Ran Wang,Xinyuan Luo,Lingxiao Zhang,Zhi Ping Xu,Fenfang Li,Chao He
出处
期刊:Biophysics reviews
[American Institute of Physics]
日期:2025-06-01
卷期号:6 (2): 021402-021402
摘要
Acute myeloid leukemia (AML) is a hematologic cancer. Cytarabine-based chemotherapy is the primary treatment. However, drug resistance presents a significant challenge leading to treatment failure. Our study explores the underlying correlation between AML stiffness and its drug resistance feature. We employed microfluidic technology to measure AML cell deformability, demonstrating that drug-resistant cells exhibit increased stiffness compared to their drug-sensitive counterparts. Transcriptomic analysis revealed that enhanced stiffness in drug-resistant cells is associated with upregulated cytoskeletal protein expression and increased lipid metabolism, particularly the peroxisome proliferators-activated receptor (PPAR) signaling pathway. Mechanistically, we found that knocking down PLIN2 at the genetic level and increasing the cholesterol level promoted the deformation of drug-resistant cells, indicating that intracellular lipid levels are involved in the regulation of cell softness. Our findings suggest that AML cell stiffness could serve as a potential biomarker for drug resistance, providing new insights into the mechanisms underlying AML drug resistance and offering potential therapeutic targets.
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