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首页> 外文期刊>Medicinal chemistry >Synthesis of aminoalkoxy substituted 4,5-diphenylisoxazole derivatives as potential anti-osteoporotic agents.
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Synthesis of aminoalkoxy substituted 4,5-diphenylisoxazole derivatives as potential anti-osteoporotic agents.

机译:氨基烷氧基取代的4,5-二苯基异恶唑衍生物的合成作为潜在的抗骨质疏松剂。

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Certain 4,5-diarylisoxazole derivatives have been found to possess broad biological effects, including antiinflammatory and anticancer activities. Recently, we have reported preparation of certain isoflavone derivatives and investigated for their anti-osteoporotic and antiproliferative activities in a detailed SAR study. The present report describes the conversion of isoflavones into novel 4,5-diphenylisoxazole derivatives by the treatment with NH2OH. Alkylation followed by amination of these 4,5-diphenylisoxazoles gave the desired aminoalkoxy substituted 4,5-diphenylisoxazole derivatives. These compounds were evaluated in vitro for the osteogenic differentiation and quantification of mineralization. Although 5-isopropoxy-2-[4-(4-methoxyphenyl)isoxazol-5-yl]phenol (3) exhibited approximately 2.8-fold more activity than the positive Ipriflavone in the promotion of osteoblast activity (277% mineralization), the low cell viability (6%) and high cytotoxicity (68%) prompted us to further pursue more suitable candidates. A series of aminoalkyl side chains were introduced with aims to decrease cytotoxicity. Among them, 5-{4-isopropoxy-2-[4-(pyrrolidin-1-yl)butoxy]phenyl}-4-(4- methoxyphenyl)isoxazole (7a) exhibited approximately 2-fold more activity than the positive Ipriflavone in the promotion of osteoblast activity (194% mineralization) with comparable cell viability (71% v.s. 77%). Compound 7a was non cytotoxic against hADSCs and therefore, was selected as a lead for further structural optimization.
机译:已经发现某些4,5-二芳基异恶唑衍生物具有广泛的生物学作用,包括抗炎和抗癌活性。最近,我们报告了某些异黄酮衍生物的制备方法,并在详细的SAR研究中对其抗骨质疏松和抗增殖活性进行了研究。本报告描述了通过用NH2OH处理将异黄酮转化为新型4,5-二苯基异恶唑衍生物。烷基化,然后胺化这些4,5-二苯基异恶唑,得到所需的氨基烷氧基取代的4,5-二苯基异恶唑衍生物。在体外评估这些化合物的成骨分化和矿化定量。尽管5-异丙氧基-2- [4-(4-甲氧基苯基)异恶唑-5-基]苯酚(3)在促进成骨细胞活性(277%矿化)方面表现出比正异黄酮约高2.8倍的活性,细胞活力(6%)和高细胞毒性(68%)促使我们进一步寻求更合适的候选药物。引入了一系列氨基烷基侧链,目的是减少细胞毒性。其中,5- {4-异丙氧基-2- [4-(吡咯烷-1-基)丁氧基]苯基} -4-(4-甲氧基苯基)异唑(7a)的活性比正异黄酮高约2倍。促进成骨细胞活性(194%矿化)并具有可比的细胞活力(71%对77%)。化合物7a对hADSC无细胞毒性,因此被选作进一步结构优化的先导。

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