首页> 外文期刊>Cancer biology & therapy >Cellular uptake, retention and bioabsorption of HO-3867, a fluorinated curcumin analog with potential antitumor properties.
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Cellular uptake, retention and bioabsorption of HO-3867, a fluorinated curcumin analog with potential antitumor properties.

机译:HO-3867是一种具有潜在抗肿瘤特性的氟化姜黄素类似物,具有细胞吸收,保留和生物吸收作用。

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摘要

Curcumin, a naturally-occurring compound found in the rhizome of Curcuma longa plant, is known for its antitumor activities. However, its clinical efficacy is limited due to poor bioabsorption. A new class of synthetic analogs of curcumin, namely diarylidenylpiperidone (DAP), has been developed with substantially higher anticancer activity than curcumin. However, its cellular uptake and bioabsorption have not been evaluated. In this study we have determined the absorption of a representative DAP compound, HO-3867, using optical and electron paramagnetic resonance spectrometry. The cellular uptake of HO-3867 was measured in a variety of cancer cell lines. HO-3867 was taken in cells within 15 minutes of exposure and its uptake was more than 100-fold higher than curcumin. HO-3867 was also retained in cells in an active form for 72 hours and possibly longer. HO-3867 was substantially cytotoxic to all the cancer cells tested. However, there was no direct correlation between cellular uptake and cytotoxicity suggesting that the cytotoxic mechanisms could be cell-type specific. When administered to rats by intraperitoneal injection, significantly high levels of HO-3867 were found in the liver, kidney, stomach, and blood after 3 hours. Also, significant accumulation of HO-3867 was found in murine tumor xenografts with a dose-dependent inhibition of tumor growth. The results suggest that the curcumin analog has substantially higher bioabsorption when compared to curcumin.
机译:姜黄素是在姜黄植物的根茎中发现的天然化合物,以其抗肿瘤活性而闻名。然而,由于不良的生物吸收,其临床疗效受到限制。已开发出一类新的姜黄素合成类似物,即二芳基烯基哌啶酮(DAP),其抗癌活性远高于姜黄素。但是,尚未评估其细胞吸收和生物吸收。在这项研究中,我们使用光学和电子顺磁共振光谱法确定了代表性DAP化合物HO-3867的吸收。在多种癌细胞系中测量了HO-3867的细胞摄取。 HO-3867在接触后的15分钟内被摄入细胞中,其吸收量比姜黄素高100倍以上。 HO-3867还以活性形式保留在细胞中72小时,甚至可能更长。 HO-3867对所有测试的癌细胞均具有实质细胞毒性。但是,细胞摄取与细胞毒性之间没有直接关联,表明细胞毒性机制可能是细胞类型特异性的。当通过腹膜内注射对大鼠给药时,3小时后在肝脏,肾脏,胃和血液中发现了高水平的HO-3867。同样,在鼠肿瘤异种移植物中发现HO-3867的大量积累,具有剂量依赖性抑制肿瘤生长。结果表明,与姜黄素相比,姜黄素类似物具有更高的生物吸收。

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