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Antitumor Agents 286. Design Synthesis and Structure-Activity Relationships of 3′R4′R-Disubstituted-2′2′-dimethyldihydropyrano23-fchromone (DSP) Analogs as Potent Chemosensitizers to Overcome Multidrug Resistance

机译:抗肿瘤剂的3R 286的设计合成和结构 - 活性关系4R二取代的22- dimethyldihydropyrano 23-F色酮(Dsp)类似物为有效的化学敏化剂克服多药耐药

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摘要

In this study, various 3′R,4′R-disubstituted-2′,2′-dimethydihydropyrano[2,3-f]chromone (DSP) derivatives were discovered as potent chemosensitizers in the treatment of multidrug resistant cancer cells. Twenty-four DSP analogs (>5–>28) were synthesized and evaluated against a multi-drug resistant (MDR) cell line (KB-Vin) with and without vincristine (VCR). All DSP analogs exhibited low intrinsic cytotoxicity. However, in combination treatment, most DSPs reversed resistance to VCR and lowered the GI50 value of VCR by 12–349-fold. At a concentration of 1μg/mL, three compounds, >11, >14 and >21, fully reversed resistance to VCR in KB-Vin cancer cells, a twofold increase compared to verapamil, a first generation chemosensitizer. Detailed structure-activity relationship (SAR) conclusions were established based on 3′ and 4′ substitutions. Moreover, a preliminary mechanism study indicated that the chemosensitizing activity of DSP analogs results from inhibition of P-glycoprotein (P-gp) over-expressed in MDR cancer cells.

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