Wang Yang, Minko Tamara
Department of Pharmaceutics, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, 160 Frelinghuysen Road, Piscataway, NJ 08854-8020, USA.
Biochem Pharmacol. 2004 Nov 15;68(10):2031-42. doi: 10.1016/j.bcp.2004.07.017.
The combined influence of doxorubicin (DOX) and liposomal antisense oligonucleotides (ASOs) targeted to hypoxia-inducible factor 1 alpha (HIF1A) subunit on the apoptosis signaling pathways and cellular pump and nonpump resistance were investigated. Drug-sensitive A2780 and multidrug-resistant A2780/AD human ovarian carcinoma cells were used. Cells were incubated within 48h in normoxic (21% O(2), 5% CO(2) and 74% N(2)) or hypoxic (1% O(2), 5% CO(2) and 94% N(2)) conditions, with or without DOX in the concentration corresponding to the IC(50) dose, with or without liposomal ASO targeted to HIF1A mRNA. Apoptosis induction, lactic acid concentration, expression of genes and proteins involved in apoptosis signaling pathways, pump and nonpump cellular resistance were assessed. The results showed that overexpression of HIF1A protein induced by exposure to hypoxia and DOX activated both apoptotic cellular signal and cellular antiapoptotic defense. In addition, while hypoxia suppressed cellular pump resistance, due to multidrug resistance-associated protein family transporters, DOX activated pump resistance. A decrease in the expression of targeted protein (HIF1A) by liposomal HIF1A ASO effectively suppressed pump and nonpump cellular resistance and significantly enhanced apoptosis induction by hypoxia and DOX. Data obtained showed that ASO targeted to HIF1A mRNA that suppress cellular antihypoxic defense might be used as a powerful tool to improve the anticancer action of cytotoxic drug or even as an anticancer agent.
研究了阿霉素(DOX)和靶向缺氧诱导因子1α(HIF1A)亚基的脂质体反义寡核苷酸(ASO)对凋亡信号通路以及细胞泵耐药和非泵耐药的联合影响。使用了药敏性A2780和多药耐药性A2780/AD人卵巢癌细胞。细胞在常氧(21% O₂、5% CO₂和74% N₂)或低氧(1% O₂、5% CO₂和94% N₂)条件下培养48小时,添加或不添加对应IC₅₀剂量的DOX,添加或不添加靶向HIF1A mRNA的脂质体ASO。评估凋亡诱导、乳酸浓度、凋亡信号通路相关基因和蛋白的表达、细胞泵耐药和非泵耐药情况。结果显示,缺氧和DOX诱导的HIF1A蛋白过表达激活了细胞凋亡信号和细胞抗凋亡防御。此外,虽然缺氧由于多药耐药相关蛋白家族转运体抑制了细胞泵耐药,但DOX激活了泵耐药。脂质体HIF1A ASO使靶向蛋白(HIF1A)表达降低,有效抑制了细胞泵耐药和非泵耐药,并显著增强了缺氧和DOX诱导的凋亡。所得数据表明,靶向HIF1A mRNA且抑制细胞抗缺氧防御的ASO可能作为增强细胞毒性药物抗癌作用的有力工具,甚至可作为抗癌剂。