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Indomethacin Analogues that Enhance Doxorubicin Cytotoxicity in Multidrug Resistant Cells without Cox Inhibitory Activity

机译:吲哚美辛类似物可增强多药耐药细胞中的阿霉素细胞毒性而无Cox抑制活性

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Conformationally restricted indomethacin analogues were designed and prepared from the corresponding 2-substituted indoles, which were synthesized by a one-pot isomerization/enamide-ene metathesis as the key reaction. Conformational analysis by calculations, NMR studies, and X-ray crystallography suggested that these analogues were conformationally restricted in the s-cis or the s-trans form due to the 2-substituent as expected. Their biological activities on cyclooxygenase-1 (COX-1) inhibition, cyclooxygenase-2 (COX-2) inhibition, and modulation of MRP-1-mediated multidrug resistance (MDR) are described. Some of these indomethacin analogues enhanced doxorubicin cytotoxicity, although they do not have any COX inhibitory activity, which suggests that the MDR-modulating effect of an NSAID can be unassociated with its COX-inhibitory activity. This may be an entry into the combination chemotherapy of doxorubicin with a MDR modulator.
机译:由相应的2-取代的吲哚设计并制备了构象受限的吲哚美辛类似物,所述吲哚美辛类似物通过一锅异构化/酰胺-烯复分解为关键反应而合成。通过计算,NMR研究和X射线晶体学进行的构象分析表明,由于预期的2-取代基,这些类似物在s-顺式或s-反式形式上构象受限。描述了它们对环氧合酶-1(COX-1)抑制,环氧合酶-2(COX-2)抑制以及MRP-1介导的多药耐药性(MDR)调节的生物学活性。这些消炎痛类似物虽然不具有任何COX抑制活性,但其中的一些增强了阿霉素的细胞毒性,这表明NSAID的MDR调节作用可能与其COX抑制活性无关。这可能是阿霉素与MDR调节剂联合化疗的一个起点。

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