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Diclofenac N-Derivatives as Therapeutic Agents with Anti-Inflammatory and Anti-Cancer Effect

机译:双氯芬酸N-衍生物作为治疗剂具有抗炎和抗癌作用

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摘要

A series of diclofenac N-derivatives (2, 4, 6, 8c, 9c, 10a-c) were synthesized in order to test their anti-cancer and anti-inflammatory effects. The anticarcinogen activity has been assayed against three cancer cell lines: HT29, human colon cancer cells; Hep-G2, human hepatic cells; and B16-F10, murine melanoma cells. First, we determined the cytotoxicity of the different compounds, finding that the most effective compound was compound 8c against all cell lines and both compounds 4 and 6 in human Hep-G2 and HT29 cell lines. Compounds 4 and 8c were selected for the percentage of apoptosis determination, cell cycle distribution, and mitochondrial membrane potential measure because these products presented the lowest IC50 values in two of the three cancer cell lines assayed (B16-F10 and HepG2), and were two of the three products with lowest IC50 in HT29 cell line. Moreover, the percentages of apoptosis induction were determined for compounds 4 and 8c, showing that the highest values were between 30 to 60%. Next, the effects of these two compounds were observed on the cellular cycle, resulting in an increase in the cell population in G2/M cell cycle phase after treatment with product 8c, whereas compound 4 increased the cells in phase G0/G1, by possible differentiation process induction. Finally, to determine the possible apoptosis mechanism triggered by these compounds, mitochondrial potential was evaluated, indicating the possible activation of extrinsic apoptotic mechanism. On the other hand, we studied the anti-inflammatory effects of these diclofenac (DCF) derivatives on lipopolysaccharide (LPS) activated RAW 264.7 macrophages-monocytes murine cells by inhibition of nitric oxide (NO) production. As a first step, we determined the cytotoxicity of the synthesized compounds, as well as DCF, against these cells. Then, sub-cytotoxic concentrations were used to determine NO release at different incubation times. The greatest anti-inflammatory effect was observed for products 2, 4, 8c, 10a, 10b, and 9c at 20 µg·mL−1 concentration after 48 h of treatment, with inhibition of produced NO between 60 to 75%, and a concentration that reduces to the 50% the production of NO (IC50 NO) between 2.5 to 25 times lower than that of DCF. In this work, we synthesized and determined for the first time the anti-cancer and anti-inflammatory potential of eight diclofenac N-derivatives. In agreement with the recent evidences suggesting that inflammation may contribute to all states of tumorigenesis, the development of these new derivatives capable of inducing apoptosis and anti-inflammatory effects at very low concentrations represent new effective therapeutic strategies against these diseases.
机译:一系列的双氯芬酸的N-衍生物(2,4,6,8C,9C,10A-C),以测试它们的抗癌和抗炎作用合成的。所述抗癌活性已经测定对3种癌细胞系:HT29,人结肠癌细胞; HEP-G2,人肝细胞;和B16-F10,鼠黑素瘤细胞。首先,我们确定了不同的化合物的细胞毒性,发现的最有效的化合物是对所有细胞系和人的Hep-G2两种化合物4和6和HT29细胞系化合物8c。被选择的化合物4和8c凋亡测定的百分比,细胞周期分布,和线粒体膜电位的措施,因为这些产品以两种测定(B16-F10和HepG2)三种癌细胞系的呈现最低的IC 50个值,和两个这三个产品在HT29细胞系最低IC50。此外,对化合物4和8c测定细胞凋亡诱导的百分比,显示出最高值分别为60%30之间。接着,这两种化合物的作用,观察到对细胞周期,导致在G2的增加细胞群体/ M细胞周期阶段与产品8C处理,而化合物4增加细胞中相G0 / G1,通过将可能的后分化过程诱导。最后,为了确定由这些化合物引起的细胞凋亡可能机制,线粒体电位的评价,表明外源性细胞凋亡机制的可能活化。在另一方面,我们研究了这些的双氯芬酸(DCF)衍生物的抗炎作用对脂多糖(LPS)激活的RAW通过抑制一氧化氮(NO)产生的巨噬细胞264.7 - 单核细胞鼠细胞。作为第一步,我们确定了合成的化合物的细胞毒性,以及DCF,对这些细胞。然后,子细胞毒性浓度用于确定在不同温育时间的NO释放。观察到的产品2,图4,图8C,图10A,10B,和9c的最大的抗炎作用,在20微克·处理48小时,用60之间产生NO的抑制至75%,且浓度ML-1后浓度降低到50%之间2.5〜25倍比DCF的降低生产NO(IC50否)。在这项工作中,我们合成并首次确定8和双氯芬酸的N-衍生物的抗癌和抗炎潜力。在与最近的证据表明炎症可能导致肿瘤的发生的所有状态的协议,能够在非常低的浓度下诱导细胞凋亡和抗炎作用的这些新的衍生品的开发代表针对这些疾病的新的有效的治疗策略。

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