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首页> 外文期刊>Steroids: An International Journal >Design, synthesis and biological evaluation of estradiol-PEG-linked platinum(II) hybrid molecules: comparative molecular modeling study of three distinct families of hybrids.
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Design, synthesis and biological evaluation of estradiol-PEG-linked platinum(II) hybrid molecules: comparative molecular modeling study of three distinct families of hybrids.

机译:雌二醇-PEG连接的铂(II)杂合分子的设计,合成和生物学评估:三个不同杂种家族的比较分子建模研究。

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摘要

The synthesis of a series of 17beta-estradiol-platinum(II) hybrid molecules is reported. The hybrids are made of a PEG linking chain of various length and a 2-(2'-aminoethyl)pyridine ligand. They are prepared from estrone in only 5 chemical steps with an overall yield of 22%. The length of the PEG chain does not influence the solubility of the compounds as it remains relatively constant throughout the series. MTT assays showed that the derivative with the longest PEG chain showed the best activity against two human breast cancer cell lines (MCF-7 and MDA-MB-231). The novel PEG-hybrids are also compared in terms of activities with two other families of 17beta-estradiol-platinum(II) hybrids that we reported in previous studies. Molecular modeling study performed on a representative member of each family of hybrids reveals distinct molecular interactions with the estrogen receptor alpha which further corroborates their notably contrasting cytocidal activities on breast cancer cell lines. This study also shows that lipophilicity and the orientation of the tether chain between the estrogenic portion and the platinum(II) core contribute markedly to the biological activity of the various families of hybrids. The most active hybrids are those possessing an alkyl tether chain at position 16beta of the steroid nucleus. For example, derivative 3 (p=6) is about 16 times more potent on MCF-7 breast cancer cells than the corresponding 16alpha-PEG-hybrids (2b) made in this study.
机译:报道了一系列17β-雌二醇-铂(II)杂合分子的合成。杂化物由各种长度的PEG连接链和2-(2'-氨基乙基)吡啶配体组成。它们仅用5个化学步骤就由雌酮制备,总收率为22%。 PEG链的长度不影响化合物的溶解度,因为它在整个系列中保持相对恒定。 MTT分析表明,具有最长PEG链的衍生物对两种人类乳腺癌细胞系(MCF-7和MDA-MB-231)表现出最佳的活性。还根据我们在先前研究中报道的与其他两个17beta-雌二醇-铂(II)杂种家族的活性比较了新型PEG杂种。在每个杂种家族的代表性成员上进行的分子建模研究揭示了与雌激素受体α的独特分子相互作用,这进一步证实了它们对乳腺癌细胞系的显着不同的杀细胞活性。这项研究还表明,亲脂性和雌激素部分与Platinum(II)核心之间的系链链的方向显着促进了各种杂种家族的生物活性。最活跃的杂种是在类固醇核的16beta位置具有烷基系链的杂种。例如,在本研究中,衍生物3(p = 6)在MCF-7乳腺癌细胞上的效力是相应的16α-PEG杂化物(2b)的约16倍。

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