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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Reversion of P-Glycoprotein-Mediated Multidrug Resistance in Human Leukemic Cell Line by Diallyl Trisulfide
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Reversion of P-Glycoprotein-Mediated Multidrug Resistance in Human Leukemic Cell Line by Diallyl Trisulfide

机译:用二烯丙基三硫醚逆转人白血病细胞中的多药抗性的逆转

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摘要

Multidrug resistance (MDR) is the major obstacle in chemotherapy, which involves multiple signaling pathways. Diallyl trisulfide (DATS) is the main sulfuric compound in garlic. In the present study, we aimed to explore whether DATS could overcome P-glycoprotein-(P-gp-)mediated MDR in K562/A02 cells, and to investigate whether NF-kB suppression is involved in DATS-induced reversal of MDR. MTT assay revealed that cotreatment with DATS increased the response of K562/A02 cells to adriamycin (the resistance reversal fold was 3.79) without toxic side effects. DATS could enhance the intracellular concentration of adriamycin by inhibiting the function and expression of P-gp, as shown by flow cytometry, RT-PCR, and western blot. In addition, DATS resulted in more K562/A02 cell apoptosis, accompanied by increased expression of caspase-3. The expression of NF-/cB/p65 (downregulation) was significantly linked to the drug-resistance mechanism of DATS, whereas the expression of I/cBa was not affected by DATS. Our findings demonstrated that DATS can serve as a novel, nontoxic modulator of MDR, and can reverse the MDR of K562/A02 cells in vitro by increasing intracellular adriamycin concentration and inducing apoptosis. More importantly, we proved for the first time that the suppression of NF-kB possibly involves the molecular mechanism in the course of reversion by DATS.
机译:多药耐药性(MDR)是化疗中的主要障碍,涉及多个信号通路。二烯丙基三硫化物(DATS)是大蒜中的主要硫化合物。在本研究中,我们旨在探讨DATS是否可以克服K562 / AO 2细胞中的介导的糖蛋白(P-GP-)介导的MDR,并研究NF-KB抑制是否参与MDR的DATS诱导的逆转。 MTT测定揭示了与DATS的加元提高了K562 / A02细胞对亚霉素(抗性反转折叠为3.79)的响应,而无毒性副作用。通过抑制P-GP的功能和表达,可以通过抑制P-GP的表达来增强adriamycin的细胞内浓度,如流式细胞术,RT-PCR和Western印迹所示。此外,DATS导致更多K562 / A02细胞凋亡,伴随着Caspase-3的表达增加。 NF-/ CB / P65(下调)的表达与DAT的耐药机制显着相关,而I / CBA的表达不受DATS的影响。我们的研究结果表明,DATS可以作为MDR的新型无毒调节剂,并且可以通过增加细胞内亚霉素浓度和诱导细胞凋亡来逆转K562 / A02细胞的MDR。更重要的是,我们首次证明了NF-KB的抑制可能涉及DATS逆转过程中的分子机制。

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