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(9R)-9-羟基硬脂酸负载角蛋白纳米粒子对癌细胞周期的空前作用。

Unprecedented Behavior of (9 R)-9-Hydroxystearic Acid-Loaded Keratin Nanoparticles on Cancer Cell Cycle.

机构信息

Department of Industrial Chemistry , University of Bologna , Viale Risorgimento 4 , 40136 Bologna , Italy.

Institute for the Organic Synthesis and Photoreactivity, National Research Council , Via Gobetti 101 , 40129 Bologna , Italy.

出版信息

Mol Pharm. 2019 Mar 4;16(3):931-942. doi: 10.1021/acs.molpharmaceut.8b00827. Epub 2019 Feb 14.

Abstract

Histone deacetylases, HDACs, have been demonstrated to play a critical role in epigenetic signaling and were found to be overexpressed in several type of cancers; therefore, they represent valuable targets for anticancer therapy. 9-Hydroxystearic acid has been shown to bind the catalytic site of HDAC1, inducing G0/G1 phase cell cycle arrest and activation of the p21 gene, thus promoting cell growth inhibition and differentiation in many cancer cells. Despite the ( R) enantiomer of 9-hydroxystearic acid (9R) displaying a promising in vitro growth-inhibitory effect on the HT29 cell line, its scarce water solubility and micromolar activity require novel solutions for improving its efficacy and bioavailability. In this work, we describe the synthesis and in vitro biological profiling of 9R keratin nanoparticles (9R@ker) obtained through an in-water drug-induced aggregation process. The anticancer activity of 9R@ker was investigated in the HT29 cell line; the results indicate an increased fluidity of cell membrane and a higher intracellular ROS formation, resulting in an unexpected S phase cell cycle arrest (25% increase as compared to the control) induced by 9R@ker with respect to free 9R and an induction of cell death.

摘要

组蛋白去乙酰化酶(HDACs)在表观遗传信号中起着关键作用,并且在几种类型的癌症中发现其过度表达;因此,它们是抗癌治疗的有价值的靶点。已经表明,9-羟基硬脂酸能够结合 HDAC1 的催化位点,诱导 G0/G1 细胞周期停滞和 p21 基因的激活,从而促进许多癌细胞的生长抑制和分化。尽管(R)-9-羟基硬脂酸(9R)对 HT29 细胞系显示出有希望的体外生长抑制作用,但它的低水溶性和毫摩尔活性需要新的解决方案来提高其功效和生物利用度。在这项工作中,我们描述了通过在水中药物诱导聚集过程获得的 9R 角蛋白纳米颗粒(9R@ker)的合成和体外生物学特征。研究了 9R@ker 在 HT29 细胞系中的抗癌活性;结果表明细胞膜流动性增加,细胞内 ROS 形成增加,导致 9R@ker 诱导的 S 期细胞周期停滞(与对照相比增加 25%),与游离 9R 相比,以及诱导细胞死亡。

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