Bepridil enhances adriamycin-induced DNA biosynthesis inhibition in human myeloid leukemia cells.

H Parekh, S Advani, M Chitnis
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引用次数: 1

Abstract

The utilization of drug response modulators, based on their physico-chemical properties to augment the cytotoxic response of anticancer drugs is now gaining importance. We present in this communication, investigations performed to assess the antitumor activity of Adriamycin (ADR), on chronic myeloid leukemia (CML) cells, and the effect of bepridil, a calcium channel blocker on the ADR cytotoxicity. Inhibition of 3H-thymidine incorporation into DNA was used as an index of the cytotoxic effects of drugs when utilised alone or in combination. The combination of bepridil (1 and 5 micrograms/ml) and ADR (5 and 10 micrograms/ml) indicated a significant (P less than 0.001) enhancement in the DNA biosynthesis inhibition in CML cells, as compared to those samples exposed to ADR alone. The observed inhibition of DNA biosynthesis was found to be totally reversible, partially reversible and completely irreversible when the CML cells were exposed to bepridil alone, ADR alone and ADR plus bepridil, respectively. Bepridil was found to be highly lipid soluble at physiological pH, and this property could be responsible for the modulation of the ADR activity observed in this study. Results obtained, though preliminary due to the small sample size, clearly indicate a necessity for a detailed evaluation of bepridil effects, which would lead to higher therapeutic gains in anticancer chemotherapy in the clinic.

贝必地尔增强阿霉素诱导的人髓性白血病细胞DNA生物合成抑制作用。
利用药物反应调节剂,基于其物理化学性质来增强抗癌药物的细胞毒性反应,现在变得越来越重要。我们在这篇文章中介绍了评估阿霉素(ADR)对慢性髓性白血病(CML)细胞抗肿瘤活性的研究,以及钙通道阻滞剂贝普利地尔对ADR细胞毒性的影响。当单独使用或联合使用时,3h -胸腺嘧啶并入DNA的抑制作用被用作药物细胞毒性作用的指标。与单独暴露于ADR的样品相比,bepridil(1和5微克/ml)和ADR(5和10微克/ml)联合使用对CML细胞DNA生物合成的抑制作用显著增强(P < 0.001)。结果表明,贝普地尔单独、ADR单独和ADR加贝普地尔对CML细胞DNA生物合成的抑制作用分别为完全可逆、部分可逆和完全不可逆。贝必地尔在生理pH值下具有高脂溶性,这一特性可能是本研究中观察到的ADR活性调节的原因。虽然由于样本量小,所获得的结果是初步的,但清楚地表明有必要详细评估贝比地尔的作用,这将导致临床抗癌化疗中更高的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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