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阿霉素高效转化为2-吡咯啉阿霉素,一种活性强500 - 1000倍的类似物:柔红霉素修饰的阿霉素衍生物的构效关系

High yield conversion of doxorubicin to 2-pyrrolinodoxorubicin, an analog 500-1000 times more potent: structure-activity relationship of daunosamine-modified derivatives of doxorubicin.

作者信息

Nagy A, Armatis P, Schally A V

机构信息

Endocrine, Polypeptide and Cancer Institute, Veterans Affairs Medical Center, New Orleans, Louisiana 70146, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Mar 19;93(6):2464-9. doi: 10.1073/pnas.93.6.2464.

Abstract

A convenient, high yield conversion of doxorubicin to 3'-deamino-3'-(2''-pyrroline-1''-yl)doxorubicin is described. This daunosamine-modified analog of doxorubicin is 500-1000 times more active in vitro than doxorubicin. The conversion is effected by using a 30-fold excess of 4-iodobutyraldehyde in anhydrous dimethylformamide. The yield is higher than 85%. A homolog of this compound, 3'-deamino-3'-(1'',3''-tetrahydropyridine-1''-yl)doxorubicin, was also synthesized by using 5-iodovaleraldehyde. In this homolog, the daunosamine nitrogen is incorporated into a six- instead of a five-membered ring. This analog was 30-50 times less active than its counterpart with a five-membered ring. A similar structure-activity relationship was found when 3'-deamino-3'-(3''-pyrrolidone-1''-yl)doxorubicin (containing a five-membered ring) and 3'-deamino-3'-(3''-piperidone-1''-yl)doxorubicin (with a six-membered ring) were tested in vitro, the former being 5 times more potent than the latter. To further elucidate structure-activity relationships, 3'-deamino-3'-(pyrrolidine-1''-yl)doxorubicin, 3'-deamino-3'-(isoindoline-2''-yl)doxorubicin, 3'-deamino-3'-(2''-methyl-2''-pyrroline-1''-yl)doxorubicin, and 3'-deamino-3'-(3''-pyrroline-1''-yl)doxorubicin were also synthesized and tested. All the analogs were prepared by using reactive halogen compounds for incorporating the daunosamine nitrogen of doxorubicin into a five- or six-membered ring. These highly active antineoplastic agents can be used for incorporation into targeted cytotoxic analogs of luteinizing hormone-releasing hormone intended for cancer therapy.

摘要

本文描述了一种将阿霉素方便地高产率转化为3'-脱氨基-3'-(2''-吡咯啉-1''-基)阿霉素的方法。这种柔红霉素修饰的阿霉素类似物在体外的活性比阿霉素高500 - 1000倍。该转化是通过在无水二甲基甲酰胺中使用30倍过量的4-碘丁醛来实现的。产率高于85%。还通过使用5-碘戊醛合成了该化合物的同系物3'-脱氨基-3'-(1'',3''-四氢吡啶-1''-基)阿霉素。在这个同系物中,柔红霉素氮原子被并入六元环而非五元环。该类似物的活性比其五元环对应物低30 - 50倍。当3'-脱氨基-3'-(3''-吡咯烷酮-1''-基)阿霉素(含五元环)和3'-脱氨基-3'-(3''-哌啶酮-1''-基)阿霉素(含六元环)在体外进行测试时,发现了类似的构效关系,前者的效力比后者高5倍。为了进一步阐明构效关系,还合成并测试了3'-脱氨基-3'-(吡咯烷-1''-基)阿霉素、3'-脱氨基-3'-(异吲哚啉-2''-基)阿霉素、3'-脱氨基-3'-(2''-甲基-2''-吡咯啉-1''-基)阿霉素和3'-脱氨基-3'-(3''-吡咯啉-1''-基)阿霉素。所有类似物都是通过使用活性卤素化合物将阿霉素的柔红霉素氮原子并入五元或六元环来制备的。这些高活性抗肿瘤药物可用于并入用于癌症治疗的促黄体激素释放激素的靶向细胞毒性类似物中。

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