[柑桔色成分相关性及成分转化机理]。

Q3 Pharmacology, Toxicology and Pharmaceutics
Kui-Lin Zhu, Jin-Lian Zou, Xu-Li Deng, Mao-Xin Deng, Hai-Ming Wang, Rui Yin, Zhang-Xian Chen, Yun-Tao Zhang, Hong-Ping He, Fa-Wu Dong
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引用次数: 0

摘要

采用高效液相色谱法(HPLC)测定了柑桔精(CRS)中柠檬苦素、诺米林和欧诺酮的含量。用色差计测定了盐加工和炒制过程中CRS样品的色度。其次,通过相关分析考察盐处理后的CRS样品的颜色与含量之间的关系。将油浴工艺模拟与高效液相色谱相结合,分析了诺米林及其转化产物相对含量的变化,确定了诺米林在加工过程中的结构转化规律。采用脂多糖(lps)诱导RAW264.7细胞建立炎症模型,评价诺米林及其转化产物欧诺酮的抗炎活性。结果表明:随着加工的进行,E~*ab和L~*值呈下降趋势;A ~*值在一定时期内缓慢上升,随后无显著变化,b~*值保持稳定,在一定时期内无显著变化,然后开始下降。柠檬苦素含量基本保持不变;诺米林含量显著降低,欧诺酮含量显著升高。盐渍加工和炒制过程中含量和颜色参数的变化趋势基本一致。诺米林和欧诺酮含量与比色值L~*、a~*、b~*和E~*ab呈显著相关,柠檬苦素含量与比色值无显著相关。通过分析不同加热温度和时间下诺米林的HPLC图谱,发现在200-250℃,加热5-60 min的条件下,诺米林的含量显著降低,而欧诺酮的含量明显增加。体外抗炎活性结果显示,与模型组相比,高浓度诺米林组和不同浓度欧诺酮组小鼠体内一氧化氮(NO)释放明显减少(P<0.01)。当两者浓度相同时,奥古诺酮抑制NO释放的效果更好。本研究发现了CRS样品加工过程中主要成分的含量与颜色之间存在明显的相关性,揭示了CRS样品加工过程中质量变化的动态规律。此外,该研究揭示并证实了诺米林在加工过程中向欧诺酮的转化,欧诺酮的体外抗炎活性显著大于诺米林。本研究结果为复方黄芪多糖的工艺优化、片剂质量控制及临床应用提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Color-component correlation and mechanism of component transformation of processed Citri Reticulatae Semen].

High-performance liquid chromatography(HPLC) was used to determine the content of three major components in Citri Reticulatae Semen(CRS), including limonin, nomilin, and obacunone. The chromaticity of the CRS sample during salt processing and stir-frying was measured using a color difference meter. Next, the relationship between the color and content of the salt-processed CRS sample was investigated through correlation analysis. By integrating the oil bath technique for processing simulation with HPLC, the changes in the relative content of nomilin and its transformation products were analyzed, with its structural transformation pattern during processing identified. Additionally, RAW264.7 cells were induced with lipopolysaccharides(LPSs) to establish an inflammatory model, and the anti-inflammatory activity of nomilin and its transformation product, namely obacunone was evaluated. The results indicated that as processing progressed, E~*ab and L~* values showed a downward trend; a~* values exhibited a slow increase over a certain period, followed by no significant changes, and b~* values remained stable with no significant changes over a certain period and then started to decrease. The limonin content remained barely unchanged; the nomilin content decreased, and the obacunone increased significantly. The changing trends in content and color parameters during salt-processing and stir-frying were basically consistent. The content of nomilin and obacunone was significantly correlated with the colorimetric values(L~*, a~*, b~*, and E~*ab), while limonin content showed no significant correlation with these values. By analyzing HPLC patterns of nomylin at different heating temperatures and time, it was found that under conditions of 200-250 ℃ for heating of 5-60 min, the content of nomilin significantly decreased, while the obacunone content increased pronouncedly. The in vitro anti-inflammatory activity results indicated that compared to the model group, the group with a high concentration of nomilin and the groups with varying concentrations of obacunone showed significantly reduced release of nitric oxide(NO)(P<0.01). When both were at the same concentration, obacunone showed better performance in inhibiting NO release. In this study, the obvious correlation between the color and content of major components during the processing of CRS samples was identified, and the dynamic patterns of quality change in CRS samples during processing were revealed. Additionally, the study revealed and confirmed the transformation of nomilin into obacunone during processing, with the in vitro anti-inflammatory activity of obacunone significantly greater than that of nomilin. These findings provided a scientific basis for CRS processing optimization, tablet quality control, and its clinical application.

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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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