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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis, DNA binding, and cytotoxicity of 1,4-bis(2-amino-ethylamino)anthraquinone-amino acid conjugates.
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Synthesis, DNA binding, and cytotoxicity of 1,4-bis(2-amino-ethylamino)anthraquinone-amino acid conjugates.

机译:1,4-双(2-氨基-乙基氨基)蒽醌-氨基酸缀合物的合成,DNA结合和细胞毒性。

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摘要

Two series of 1,4-bis(2-amino-ethylamino)anthraquinone-amino acid conjugates (BACs), ametantrone (AT)-amino acid conjugates (AACs) and mitoxantrone (MX)-amino acid conjugates (MACs), were designed and synthesized. The DNA binding of BACs was evaluated by DNA thermal denaturation experiment. In the series, the methionine-substituted BACs had the weakest DNA binding, while the lysine-substituted BACs had the highest T(m) values. The abilities of BACs to inhibit the growth of MCF-7, NCI-H460, SF-268, and PC-3 cell lines were determined. l-Met-MAC 16 and l-Lys-MAC 20 were the most potent growth inhibitors. MAC 16 was more cytotoxic than MX, whereas the T(m) of MAC 16 was much lower than that of MX. In contrast to MAC 16, l-Lys-MAC 20 demonstrated higher T(m) than MX. These data suggested that Met-BACs possessed a different pharmacological profile, in which the ability to stabilize DNA is not parallel to the ability to kill cancer cells, from that of AT and MX. The primary mechanism of cytotoxicity for MAC 16 was most likely through TOP2 poisoning. Therefore, MAC 16 may provide a lead for the development of novel generations of anthraquinone-type antitumor agents.
机译:设计了两个系列的1,4-双(2-氨基-乙基氨基)蒽醌-氨基酸共轭物(BAC),金刚酮(AT)-氨基酸共轭物(AAC)和米托蒽醌(MX)-氨基酸共轭物(MACs)并合成。通过DNA热变性实验评价BAC的DNA结合。在该系列中,蛋氨酸取代的BAC具有最弱的DNA结合力,而赖氨酸取代的BAC具有最高的T(m)值。确定了BAC抑制MCF-7,NCI-H460,SF-268和PC-3细胞系生长的能力。 l-Met-MAC 16和l-Lys-MAC 20是最有效的生长抑制剂。 MAC 16比MX具有更高的细胞毒性,而MAC 16的T(m)却比MX低。与MAC 16相反,I-Lys-MAC 20的T(m)比MX高。这些数据表明,Met-BAC具有不同于AT和MX的药理特性,其中稳定DNA的能力与杀死癌细胞的能力并不平行。 MAC 16的细胞毒性的主要机制很可能是通过TOP2中毒引起的。因此,MAC 16可能为开发新一代蒽醌型抗肿瘤药提供线索。

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