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己酮可可碱脂肪族侧链的延长对P-糖蛋白介导的L1210/VCR细胞系多药耐药性的逆转产生积极影响。

Prolongation of pentoxifylline aliphatic side chain positively affects the reversal of P-glycoprotein-mediated multidrug resistance in L1210/VCR line cells.

作者信息

Docolomanský P, Fialová I, Barancík M, Rybár A, Breier A

机构信息

Institute of Molecular Physiology and Genetics, Slovak Academy of Sciences, Vlárska 5, 833 34 Bratislava 37, Slovakia.

出版信息

Gen Physiol Biophys. 2005 Dec;24(4):461-6.

PMID:16474189
Abstract

We reported previously that derivatives of pentoxifylline (PTX) reverse multidrug resistance (MDR) in P-glycoprotein (P-gp) positive L1210/VCR cells. Based on the results of a recent study using 25 N-alkylated methylxanthines with carbohydrate side-chains of various lengths, we formulated the following design criteria for a methylxanthine molecule to effectively reverse P-gp mediated MDR: i) a massive substituent at the N1 position is crucial for MDR reversal potency; ii) elongation of the substituents at the N3 and N7 positions (from methyl to propyl) increases the efficacy of a xanthine to reverse MDR; iii) elongation of the substituent at the C8 position (from H to propyl) decreases the efficacy of a xanthine to reverse MDR. Based on these criteria, we synthesized and tested for potency to reverse MDR a new PTX derivative, 1-(10-undecylenyl)-3-heptyl-7-methyl xanthine (PTX-UHM), with prolonged substituents at the N1 and N3 positions. The derivative was obtained by alkylation of 3-heptyl-7-methyl xanthine with 1-methylsulfonyloxy-10-undecylenyl. NMR and IR structural analyses proved the identity of the product. Cytotoxicity study showed that PTX-UHM is only slightly more toxic to L1210/VCR cells than PTX. We found that both PTX-UHM and PTX were able to reverse vincristine resistance of L1210/VCR cells, yet PTX-UHM was significantly more efficient in the reversal than PTX.

摘要

我们之前报道过,己酮可可碱(PTX)衍生物可逆转P-糖蛋白(P-gp)阳性的L1210/VCR细胞中的多药耐药性(MDR)。基于最近一项对25种带有不同长度碳水化合物侧链的N-烷基化甲基黄嘌呤的研究结果,我们制定了以下甲基黄嘌呤分子有效逆转P-gp介导的MDR的设计标准:i)N1位上的大量取代基对于MDR逆转效力至关重要;ii)N3和N7位上取代基的延长(从甲基到丙基)会增加黄嘌呤逆转MDR的效力;iii)C8位上取代基的延长(从H到丙基)会降低黄嘌呤逆转MDR的效力。基于这些标准,我们合成并测试了一种新的PTX衍生物1-(10-十一碳烯基)-3-庚基-7-甲基黄嘌呤(PTX-UHM)逆转MDR的效力,该衍生物在N1和N3位上带有延长的取代基。该衍生物是通过3-庚基-7-甲基黄嘌呤与1-甲基磺酰氧基-10-十一碳烯基进行烷基化反应得到的。NMR和IR结构分析证实了产物的同一性。细胞毒性研究表明,PTX-UHM对L1210/VCR细胞的毒性仅比PTX略高。我们发现PTX-UHM和PTX都能够逆转L1210/VCR细胞对长春新碱的耐药性,但PTX-UHM在逆转方面明显比PTX更有效。

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