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首页> 外文期刊>Nanotechnology >Preparation of carotenoid extracts and nanoemulsions from Lycium barbarum L. and their effects on growth of HT-29 colon cancer cells
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Preparation of carotenoid extracts and nanoemulsions from Lycium barbarum L. and their effects on growth of HT-29 colon cancer cells

机译:来自枸杞L的类胡萝卜素提取物和纳米乳液的制备及其对HT-29结肠癌细胞生长的影响

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Lycium barbarum L., a traditional Chinese herb widely used in Asian countries, has been demonstrated to be protective against chronic diseases such as age-related macular degeneration. The objectives of this study were to determine the carotenoid content in L. barbarum by highperformance liquid chromatography-mass spectrometry, followed by preparation of a carotenoid nanoemulsion to evaluate the mechanism. of inhibition on HT-29 colon cancer cells. The highest extraction yield of carotenoids was attained by employing a solvent system of hexane-ethanolacetone (1: 1: 1, v/v/v). Nine carotenoids, including neoxanthin (4.47 mu g g(-1)), all-transzeaxanthin and its cis-isomers (1666.3 mu g g-1), all-trans-a-cryptoxanthin (51.69 mu g g(-1)), alltrans- a-carotene and its cis-isomers (20.11 mu g g(-1)), were separated within 45 min and quantified using a YMC C-30 column and a gradient mobile phase of methanol-water (9: 1, v/v) (A) and methylene chloride (B). A highly stable carotenoid nanoemulsion composed of Capryol (TM) 90, Transcutol (R) HP, Tween 80 and deionized water was prepared with a mean particle size of 15.1 nm. Characterization of zeaxanthin standard, blank nanoemulsion, carotenoid extract and carotenoid nanoemulsion by differential scanning calorimetry curves and Fourier transform infrared spectra revealed a good dispersion of zeaxanthin-dominated carotenoid extract with no significant chemical change after incorporation into nanoemulsion. The in vitro release kinetic study showed a higher release profile at pH 5.2 than at physiological pH 7.4, suggesting a rapid release of carotenoids in the acidic environment (pH 4.5-6.5) characteristic of tumors. Both the carotenoid nanoemulsion and the extract were effective at inhibiting growth of HT-29. colon cancer cells, with an IC50 of 4.5 and 4.9 mu g ml(-1), respectively. Also, both treatments could upregulate p53 and p21 expression and down-regulate CDK2, CDK1, cyclin A and cyclin B expression and arrest the cell cycle at G(2)/M. The study may form a basis for further exploration of L. barbarum nanoemulsion in cancer treatment.
机译:枸杞,中国传统中药广泛使用在亚洲国家,已被证明是对慢性疾病,如年龄相关性黄斑变性的保护。本研究的目的是通过高效液相色谱法 - 质谱法,随后制备类胡萝卜素纳米乳剂来评估机制来确定在枸杞类胡萝卜素含量。的抑制对HT-29结肠癌细胞。类胡萝卜素的最高提取率达到通过使用己烷 - ethanolacetone的溶剂系统(1:1:1,V / V / V)。九类胡萝卜素,包括新黄素(4.47亩GG(-1)),全transzeaxanthin和其顺式异构体(1666.3亩G G-1),全反式 - 一个隐黄素(51.69亩GG(-1)),全反式 - α-胡萝卜素和其顺式异构体(20.11亩GG(-1)),在45分钟内分离,并且使用YMC C-30柱和甲醇 - 水(9的梯度流动相量化:1,v / v )(A)和二氯甲烷(B)。 CAPRYOL(TM)90组成的高度稳定的类胡萝卜素纳米乳液,TRANSCUTOL(R)HP,吐温80和去离子水与15.1纳米的平均粒度制备。玉米黄质的标准,空白纳米乳液,类胡萝卜素提取物和类胡萝卜素通过纳米乳剂差示扫描热量曲线和傅立叶表征变换红外光谱显示的玉米黄质为主的类胡萝卜素提取物掺入纳米乳剂后无显著化学变化的良好分散。体外释放动力学的研究表明,在pH 5.2比在生理pH 7.4更高的释放曲线,这表明类胡萝卜素的在酸性环境中快速释放(pH值4.5-6.5)的肿瘤的特征。无论是类胡萝卜素纳米乳剂和萃取液在抑制HT-29的生长是有效的。结肠癌细胞,具有(-1)分别为4.5和4.9亩克毫升,的IC 50。此外,这两种处理可以上调p53和p21的表达并下调CDK2,CDK1,细胞周期蛋白A和细胞周期蛋白B的表达和在G(2)/ M阻滞细胞周期。这项研究可能形成在癌症治疗枸杞纳米乳的进一步探索奠定了基础。

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