Combination effects of sorafenib with PI3K inhibitors under hypoxia in colorectal cancer

Dimple R. Bhatia, P. Thiagarajan
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引用次数: 2

Abstract

Aim This study reports the influence of hypoxia on response of colorectal cancer cells to anticancer effects of sorafenib in combination with PI3K inhibitors GDC-0941 and BEZ-235. Materials and methods All hypoxic exposures were carried out at 1% O2/5% CO2. Antiproliferation activity was evaluated by 48 hours propidium iodide and 14 days clonogenic assay. Protein levels were evaluated by fluorescence ELISA. Metabolites lactate and glucose were evaluated biochemically. Results In the 48-hour proliferation assay, sorafenib acted synergistically with GDC-0941 but not with BEZ-235. In long-term colony-forming assays, both GDC-0941 and BEZ-235 were shown to potentiate the antiproliferative activity of sorafenib. At the molecular level, the synergism is mediated through inhibition of pAKT, pS6, p4EBP1, pERK, cyclin D1, and Bcl-2. No change in hypoxia-inducible factor-1α (HIF-1α) levels was observed in cells treated with the combination of compounds under hypoxia. A significant reduction in glucose uptake and lactate release was observed in cells treated with the combination of compounds under normoxia and hypoxia. Conclusion Combinations of sorafenib with PI3K inhibitors BEZ-235 and GDC-0941 are efficacious under hypoxia. Thus, these anticancer combinations have a potential to overcome the hypoxia-mediated resistance mechanisms to antiproliferative agents in cancer therapy.
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索拉非尼联合PI3K抑制剂治疗结直肠癌缺氧的疗效
目的研究缺氧对索拉非尼联合PI3K抑制剂GDC-0941和BEZ-235对结直肠癌细胞抗癌作用的影响。材料和方法所有低氧暴露均在1% O2/5% CO2下进行。采用48 h碘化丙啶和14 d克隆生成试验评价其抗增殖活性。荧光酶联免疫吸附测定蛋白水平。代谢产物乳酸和葡萄糖进行生化评价。结果在48小时增殖实验中,索拉非尼与GDC-0941有协同作用,而与BEZ-235无协同作用。在长期的菌落形成实验中,GDC-0941和BEZ-235都显示出增强索拉非尼的抗增殖活性。在分子水平上,这种协同作用是通过抑制pAKT、pS6、p4EBP1、pERK、cyclin D1和Bcl-2介导的。缺氧诱导因子-1α (HIF-1α)水平在低氧条件下未见明显变化。在常氧和缺氧条件下,用化合物组合处理的细胞中,葡萄糖摄取和乳酸释放显著减少。结论索拉非尼联合PI3K抑制剂BEZ-235和GDC-0941在缺氧条件下是有效的。因此,在癌症治疗中,这些抗癌组合有可能克服缺氧介导的抗增生性药物耐药性机制。
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Abstract IA-015: Hypoxia-induced SETX links replication stress with the unfolded protein response Abstract PO-033: Papaverine derivative smv-32 alleviates tumor hypoxia and radiosensitizes tumors by inhibiting mitochondrial metabolism Abstract PO-034: Changes in cancer associated fibroblast subsets following angiotensin II type I receptor blocker (ARB) treatment reduces transient hypoxia and radiation resistance Abstract IA-017: Chromatin and gene transcription in hypoxia Abstract IA-016: Metabolic deregulation drives a redox vulnerability in pancreatic cancer
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