Regulation of bioenergetics through dual inhibition of aldehyde dehydrogenase and mitochondrial complex I suppresses glioblastoma tumorspheres

被引:58
|
作者
Park, Junseong [1 ]
Shim, Jin-Kyoung [1 ]
Kang, Joon Hee [2 ]
Choi, Junjeong [3 ]
Chang, Jong Hee [1 ]
Kim, Soo-Youl [2 ]
Kang, Seok-Gu [1 ]
机构
[1] Yonsei Univ, Coll Med, Severance Hosp, Dept Neurosurg,Brain Tumor Ctr, 50-1 Yonsei Ro, Seoul 120752, South Korea
[2] Natl Canc Ctr, Res Inst, Canc Cell & Mol Biol Branch, Goyang, South Korea
[3] Yonsei Univ, Yonsei Inst Pharmaceut Sci, Coll Pharm, Incheon, South Korea
基金
新加坡国家研究基金会;
关键词
aldehyde dehydrogenase; bioenergetics; glioblastoma; oxidative phosphorylation; tumorsphere; CANCER METABOLISM; ADJUVANT TEMOZOLOMIDE; STEM-CELLS; METFORMIN; RADIOTHERAPY; CONCOMITANT; RECURRENCE; BIGUANIDES; GOSSYPOL; TARGET;
D O I
10.1093/neuonc/nox243
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: Targeted approaches for treating glioblastoma (GBM) attempted to date have consistently failed, highlighting the imperative for treatment strategies that operate on different mechanistic principles. Bioenergetics deprivation has emerged as an effective therapeutic approach for various tumors. We have previously found that cancer cells preferentially utilize cytosolic NADH supplied by aldehyde dehydrogenase (ALDH) for ATP production through oxidative phosphorylation (OxPhos). This study is aimed at examining therapeutic responses and underlying mechanisms of dual inhibition of ALDH and OxPhos against GBM. Methods: For inhibition of ALDH and OxPhos, the corresponding inhibitors, gossypol and phenformin were used. Biological functions, including ATP levels, stemness, invasiveness, and viability, were evaluated in GBM tumor-spheres (TSs). Gene expression profiles were analyzed using microarray data. In vivo anticancer efficacy was examined in a mouse orthotopic xenograft model. Results: Combined treatment of GBM TSs with gossypol and phenformin significantly reduced ATP levels, stemness, invasiveness, and cell viability. Consistently, this therapy substantially decreased expression of genes associated with stemness, mesenchymal transition, and invasion in GBM TSs. Supplementation of ATP using malate abrogated these effects, whereas knockdown of ALDH1L1 mimicked them, suggesting that disruption of ALDH-mediated ATP production is a key mechanism of this therapeutic combination. In vivo efficacy confirmed remarkable therapeutic responses to combined treatment with gossypol and phenformin. Conclusion. Our findings suggest that dual inhibition of tumor bioenergetics is a novel and effective strategy for the treatment of GBM.
引用
收藏
页码:954 / 965
页数:12
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