Thews Oliver, Gassner Birgit, Kelleher Debra K, Schwerdt Gerald, Gekle Michael
Institute of Physiology and Pathophysiology, University of Mainz, H-55099 Mainz, Germany.
Neoplasia. 2006 Feb;8(2):143-52. doi: 10.1593/neo.05697.
The expression and activity of P-glycoprotein (pGP) play a role in the multidrug resistance of tumors. Because solid-growing tumors often show pronounced hypoxia or extracellular acidosis, this study attempted to analyze the impact of an acidic environment on the expression and activity of pGP and on the cytotoxicity of chemotherapeutic agents. For this, prostate carcinoma cells were exposed to an acidic extracellular environment (pH 6.6) for up to 24 hours. pGP activity was more than doubled after 3 to 6 hours of incubation in acidic medium, whereas cellular pGP expression remained constant, indicating that increased transport rate is the result of functional modulation. In parallel, the cytotoxic efficacy of daunorubicin showed pronounced reduction at low pH, an effect that was reversible on coincubation with a pGP inhibitor. A reduction of intracellular Ca2+ concentration by 35% under acidic conditions induced a higher transport rate of pGP, an effect comparable to that found on inhibition of protein kinase C (PKC). These data indicate that pGP activity is increased by low extracellular pH presumably as a result of lowered intracellular calcium levels and inhibition of PKC. These findings may explain the reduced cytotoxicity of chemotherapeutic agents in hypoxic/acidic tumors.
P-糖蛋白(pGP)的表达和活性在肿瘤的多药耐药中起作用。由于实体生长的肿瘤常表现出明显的缺氧或细胞外酸中毒,本研究试图分析酸性环境对pGP表达和活性以及化疗药物细胞毒性的影响。为此,将前列腺癌细胞暴露于酸性细胞外环境(pH 6.6)长达24小时。在酸性培养基中孵育3至6小时后,pGP活性增加了一倍多,而细胞pGP表达保持不变,这表明转运速率增加是功能调节的结果。同时,柔红霉素的细胞毒性在低pH值时明显降低,与pGP抑制剂共同孵育后这种效应是可逆的。在酸性条件下细胞内Ca2+浓度降低35%会诱导pGP的转运速率升高,这一效应与抑制蛋白激酶C(PKC)时的效应相当。这些数据表明,细胞外低pH可能通过降低细胞内钙水平和抑制PKC来增加pGP活性。这些发现可能解释了化疗药物在缺氧/酸性肿瘤中细胞毒性降低的原因。