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The ABCG2 transporter is a key molecular determinant of the efficacy of sonodynamic therapy with Photofrin in glioma stem-like cells

机译:ABCG2转运蛋白是胶质瘤干细胞样细胞中声光疗法声光疗法疗效的关键分子决定因素

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We aimed to investigate the role of the ABCG2 transporter in the efficacy of sonodynamic therapy (SDT) with Photofrin in the glioma stem-like cells (GSCs) isolated and cultured from U251 glioma cells. Immunocytochemistry and flow cytometry analyses showed that ABCG2 was overexpressed in GSCs, and the percentage of ABCG2-positive GSCs was approximately 100%. The effect of ABCG2 on Photofrin extrusion in the absence or presence of a specific inhibitor of ABCG2 (fumitremorgin C; FTC) was investigated by determining the intracellular concentration of Photofrin in GSCs incubated with 20 μg/ml Photofrin. Extrusion of Photofrin by ABCG2 was inhibited by 10 μM FTC, which significantly increased the intracellular Photofrin concentration (p < 0.05) from 0.32 ± 0.11 μg/10 ~6 cells to 0.89 ± 0.13 μg/10 ~6 cells. MTT and TUNEL assays showed that the antitumor effect of SDT (incubation of GSCs with 20 μg/ml Photofrin for 6 h in the dark and ultrasonic activation at 1.0 MHz and 0.5 W/cm ~2 for 2 min) was significantly improved by FTC pretreatment (p < 0.05). Moreover, incubation of GSCs with FTC significantly increased the relative production of ROS in response to SDT. The overexpression of ABCG2 in GSCs results in efflux of Photofrin, indicating that the antitumor effect of SDT with Photofrin may be reduced in GSCs overexpressing ABCG2. However, since FTC improves the efficacy of SDT in GSCs by inhibiting ABCG2-mediated efflux of Photofrin, FTC may be useful in SDT treatment of ABCG2-expressing cancer cells.
机译:我们旨在研究ABCG2转运蛋白在Photofrin超声动力疗法(SDT)的功效中的作用,该疗法由U251胶质瘤细胞分离和培养而成的神经胶质瘤干样细胞(GSC)。免疫细胞化学和流式细胞仪分析表明,ABCG2在GSC中过表达,ABCG2阳性GSC的百分比约为100%。通过测定在20μg/ ml Photofrin孵育的GSC中Photofrin的细胞内浓度,研究了在没有或存在ABCG2特异性抑制剂(fumitremorgin C; FTC)的情况下ABCG2对Photofrin挤出的影响。 ABCG2挤压Photofrin受到10μMFTC的抑制,这将使细胞内Photofrin浓度(p <0.05)从0.32±0.11μg/ 10〜6细胞增加到0.89±0.13μg/ 10〜6细胞。 MTT和TUNEL分析表明STC的抗肿瘤作用(FTC预处理显着改善了SDT(在黑暗中将GSC与20μg/ ml Photofrin孵育6 h,并在1.0 MHz和0.5 W / cm〜2的超声激活下2分钟的超声激活)的抗肿瘤作用。 (p <0.05)。此外,将GSC与FTC一起孵育可显着提高响应SDT的ROS的相对产量。 GSC中ABCG2的过表达导致Photofrin外排,这表明在过量表达ABCG2的GSC中,SDT与Photofrin的抗肿瘤作用可能降低。但是,由于FTC通过抑制ABCG2介导的Photofrin的流出而提高了SSC在GSC中的功效,因此FTC可用于SDT治疗表达ABCG2的癌细胞。

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