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Esters of bendamustine are by far more potent cytotoxic agents than the parent compound against human sarcoma and carcinoma cells

机译:苯达莫司汀酯比母体化合物对人肉瘤和癌细胞的作用更强

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摘要

The alkylating agent bendamustine is approved for the treatment of hematopoietic malignancies such as non-Hodgkin lymphoma, chronic lymphocytic leukemia and multiple myeloma. As preliminary data on recently disclosed bendamustine esters suggested increased cytotoxicity, we investigated representative derivatives in more detail. Especially basic esters, which are positively charged under physiological conditions, were in the crystal violet and the MTT assay up to approximately 100 times more effective than bendamustine, paralleled by a higher fraction of early apoptotic cancer cells and increased expression of p53. Analytical studies performed with bendamustine and representative esters revealed pronounced cellular accumulation of the derivatives compared to the parent compound. In particular, the pyrrolidinoethyl ester showed a high enrichment in tumor cells and inhibition of OCT1- and OCT3-mediated transport processes, suggesting organic cation transporters to be involved. However, this hypothesis was not supported by the differential expression of OCT1 (SLC22A1) and OCT3 (SLC22A3), comparing a panel of human cancer cells. Bendamustine esters proved to be considerably more potent cytotoxic agents than the parent compound against a broad panel of human cancer cell types, including hematologic and solid malignancies (e.g. malignant melanoma, colorectal carcinoma and lung cancer), which are resistant to bendamustine. Interestingly, spontaneously immortalized human keratinocytes, as a model of “normal” cells, were by far less sensitive than tumor cells against the most potent bendamustine esters.
机译:烷基化剂苯达莫司汀被批准用于治疗造血系统恶性肿瘤,例如非霍奇金淋巴瘤,慢性淋巴细胞性白血病和多发性骨髓瘤。由于最近公开的苯达莫司汀酯的初步数据表明细胞毒性增加,因此我们更详细地研究了代表性衍生物。尤其是在生理条件下带正电荷的碱性酯,在结晶紫中和MTT分析中的有效性比苯达莫司汀高约100倍,同时还有较高比例的早期凋亡癌细胞和p53表达增加。用苯达莫司汀和代表性酯进行的分析研究表明,与母体化合物相比,衍生物具有明显的细胞蓄积作用。特别是,吡咯烷基乙基酯在肿瘤细胞中显示出高度富集,并抑制了OCT1和OCT3介导的转运过程,表明涉及有机阳离子转运蛋白。但是,通过比较一组人类癌细胞,OCT1(SLC22A1)和OCT3(SLC22A3)的差异表达不支持该假设。事实证明,苯达莫司汀酯比母体化合物对多种人类癌细胞具有更强的细胞毒性作用,这些人类癌细胞类型包括对苯达莫司汀具有抗性的血液和实体恶性肿瘤(例如恶性黑色素瘤,结肠直肠癌和肺癌)。有趣的是,作为“正常”细胞的模型,自发永生化的人类角质形成细胞对最有效的苯达莫司汀酯的敏感性远远低于肿瘤细胞。

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