首页> 外文期刊>International Journal of Nanomedicine >Inhibition of lung cancer cells A549 and H460 by curcuminoid extracts and nanoemulsions prepared from Curcuma longa Linnaeus
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Inhibition of lung cancer cells A549 and H460 by curcuminoid extracts and nanoemulsions prepared from Curcuma longa Linnaeus

机译:姜黄提取物和姜黄提取物制备的纳米乳剂对肺癌细胞A549和H460的抑制作用

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Abstract: The objectives of this study were to explore the inhibition mechanism of lung cancer cells A549 and H460 by curcuminoid extracts and nanoemulsions prepared from Curcuma longa Linnaeus. In addition, human bronchus epithelial cell line BEAS-2B (normal cell) was selected for comparison. A high-performance liquid chromatography (HPLC) method was developed to separate and quantify the various curcuminoids in C. longa extract, including curcumin (1,714.5 μg/mL), demethoxycurcumin (1,147.4 μg/mL), and bisdemethoxycurcumin (190.2 μg/mL). A high-stability nanoemulsion composed of Tween 80, water, and curcuminoid extract was prepared, with mean particle size being 12.6 nm. The cell cycle was retarded at G2/M for both the curcuminoid extract and nanoemulsion treatments; however, the inhibition pathway may be different. H460 cells were more susceptible to apoptosis than A549 cells for both curcuminoid extract and nanoemulsion treatments. Growth of BEAS-2B remained unaffected for both the curcuminoid extract and nanoemulsion treatments, with a concentration range from 1 to 4 μg/mL. Also, the activities of caspase-3, caspase-8, and caspase-9 followed a dose-dependent increase for both A549 and H460 cells for both the treatments, accompanied by a dose-dependent increase in cytochrome C expression and a dose-dependent decrease in CDK1 expression. Interestingly, a dose-dependent increase in cyclin B expression was shown for A549 cells for both the treatments, while a reversed trend was found for H460 cells. Both mitochondria and death receptor pathways may be responsible for apoptosis of both A549 and H460 cells.
机译:摘要:本研究的目的是探讨姜黄素提取物和姜黄提取物纳米乳剂对肺癌细胞A549和H460的抑制作用。此外,选择人支气管上皮细胞系BEAS-2B(正常细胞)进行比较。开发了一种高效液相色谱(HPLC)方法,以分离和定量长龙C提取物中的各种姜黄素,包括姜黄素(1,714.5μg/ mL),去甲氧基姜黄素(1,147.4μg/ mL)和双去甲氧基姜黄素(190.2μg/ mL) 。制备了由Tween 80,水和姜黄素提取物组成的高稳定性纳米乳剂,平均粒径为12.6 nm。对于姜黄素提取物和纳米乳剂处理,细胞周期均延迟到G2 / M。但是,抑制途径可能不同。对于姜黄素提取物和纳米乳剂处理,H460细胞比A549细胞更易于凋亡。对于姜黄素提取物和纳米乳剂处理,BEAS-2B的生长均不受影响,浓度范围为1-4μg/ mL。同样,在两种处理中,A549和H460细胞的caspase-3,caspase-8和caspase-9活性均呈剂量依赖性增加,伴随着细胞色素C表达的剂量依赖性增加和剂量依赖性。 CDK1表达降低。有趣的是,两种处理均显示A549细胞的细胞周期蛋白B表达呈剂量依赖性增加,而H460细胞则显示出相反的趋势。线粒体和死亡受体途径均可能与A549和H460细胞的凋亡有关。

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