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可诱导细胞凋亡和活性氧生成且能区分恶性细胞与良性细胞的柔性含硫杂阿罗他汀类化合物的合成。

Synthesis of flexible sulfur-containing heteroarotinoids that induce apoptosis and reactive oxygen species with discrimination between malignant and benign cells.

作者信息

Liu Shengquan, Brown Chad W, Berlin K Darrell, Dhar Aridam, Guruswamy Suresh, Brown David, Gardner Ginger J, Birrer Michael J, Benbrook Doris M

机构信息

Department of Chemistry, Oklahoma State University, Stillwater, Oklahoma 74078-3071, USA.

出版信息

J Med Chem. 2004 Feb 12;47(4):999-1007. doi: 10.1021/jm030346v.

Abstract

Regulation of growth, differentiation, and apoptosis by synthetic retinoids can occur through mechanisms that are dependent and independent of their ability to bind and activate nuclear retinoic acid receptors. The objective of this study was to determine if increasing flexibility of the heteroarotinoid structure would affect the specificity of the synthetic retinoids for the receptors and for their regulation of cancerous and nonmalignant cells. Methods were developed to produce the first examples of heteroarotinoids 15a-15h, which contain urea and/or thiourea linking groups between two aryl rings. Substituents at the para position of the single phenyl ring were either an ester, a nitro group, or a sulfonamide group. Ovarian cancer cell lines Caov-3, OVCAR-3, SK-OV-3, UCI-101, and 222 were utilized, and the inhibitory prowess of the heteroarotinoids was referenced to that of 4-HPR (25). Similar to 4-HPR (25), the heteroarotinoids inhibited growth of all cell lines at micromolar concentrations. Although the heteroarotinoids did not activate retinoic acid receptors, the agents induced potent growth inhibition against the cancer cells with weak activity against normal and benign cells. The growth inhibition was associated with cell loss and induction of reactive oxygen species.

摘要

合成类视黄醇对生长、分化和细胞凋亡的调节可通过依赖或不依赖其结合和激活核视黄酸受体能力的机制来实现。本研究的目的是确定增加杂芳维甲酸结构的灵活性是否会影响合成类视黄醇对受体的特异性以及它们对癌细胞和非恶性细胞的调节作用。已开发出方法来制备杂芳维甲酸15a - 15h的首批实例,其在两个芳环之间含有尿素和/或硫脲连接基团。单苯环对位的取代基为酯基、硝基或磺酰胺基。使用了卵巢癌细胞系Caov - 3、OVCAR - 3、SK - OV - 3、UCI - 101和222,并将杂芳维甲酸的抑制能力与4 - HPR(25)的抑制能力进行了比较。与4 - HPR(25)类似,杂芳维甲酸在微摩尔浓度下抑制所有细胞系的生长。尽管杂芳维甲酸未激活视黄酸受体,但这些药物对癌细胞具有强效生长抑制作用,而对正常细胞和良性细胞的活性较弱。生长抑制与细胞损失和活性氧的诱导有关。

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