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铁(III)-阿霉素和铁(III)-柔红霉素复合物:物理化学特性、与DNA的相互作用及抗肿瘤活性。

Iron(III)-adriamycin and Iron(III)-daunorubicin complexes: physicochemical characteristics, interaction with DNA, and antitumor activity.

作者信息

Beraldo H, Garnier-Suillerot A, Tosi L, Lavelle F

出版信息

Biochemistry. 1985 Jan 15;24(2):284-9. doi: 10.1021/bi00323a007.

Abstract

Fe(III) complexes of two anthracyclines, adriamycin and daunorubicin, have been studied. Using potentiometric and spectroscopic measurements, we have shown that adriamycin and daunorubicin form two well-defined species with Fe(III), which can be formulated as respectively Fe(HAd)3 and Fe(HDr)3. In these formulas, HAd and HDr stand for adriamycin and daunorubicin in which the 1,4-dihydroxy-anthraquinone moiety is half-deprotonated. Both complexes are six-membered chelates. The stability constant is beta = (2.5 +/- 0.5) X 10(28) for both complexes. Interaction with DNA has been studied showing that, despite strong coordination to Fe(III), anthracyclines are able to intercalate between DNA bases pairs, releasing the metal. These complexes display antitumor activity against P 388 leukemia that compares with that of the free drug. Fe(HAd)3, unlike adriamycin, does not catalyze the flow of electrons from NADH to molecular oxygen through NADH dehydrogenase. Moreover, it is shown that the triferric adriamycin compound so called "quelamycin" is in fact a mixture of Fe(HAd)3 and polymeric ferric hydroxide.

摘要

对两种蒽环类抗生素阿霉素和柔红霉素的铁(III)配合物进行了研究。通过电位滴定和光谱测量,我们发现阿霉素和柔红霉素与铁(III)形成了两种明确的物种,可分别表示为Fe(HAd)3和Fe(HDr)3。在这些化学式中,HAd和HDr分别代表1,4 - 二羟基蒽醌部分半去质子化的阿霉素和柔红霉素。两种配合物均为六元螯合物。两种配合物的稳定常数β =(2.5±0.5)×10²⁸。对与DNA的相互作用进行了研究,结果表明,尽管蒽环类抗生素与铁(III)有很强的配位作用,但它们仍能够插入DNA碱基对之间,释放出金属。这些配合物对P 388白血病显示出抗肿瘤活性,与游离药物相当。与阿霉素不同,Fe(HAd)3不会催化电子从NADH通过NADH脱氢酶流向分子氧。此外,研究表明所谓的“喹来霉素”这种三价铁阿霉素化合物实际上是Fe(HAd)3和聚合氢氧化铁的混合物。

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