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山东中医药大学,济南 250355
何梦娇,在读博士,从事中药炮制原理与饮片质量控制研究,E-mail:17864190915@163.com
张学兰,硕士,教授,从事中药炮制原理与饮片质量控制研究,Tel:0531-89628081,E-mail:zhang8832440@sina.com; *
赵鑫,博士,讲师,从事中药炮制原理与饮片质量控制研究,E-mail:zhaoxin151223@126.com
收稿日期:2023-03-17,
网络出版日期:2023-04-28,
纸质出版日期:2023-12-20
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何梦娇,庄梓鸣,邢玥等.基于模拟炮制技术探究远志炮制前后皂苷类成分转化规律[J].中国实验方剂学杂志,2023,29(24):169-176.
HE Mengjiao,ZHUANG Ziming,XING Yue,et al.Exploring of Transformation Rule of Saponins in Polygalae Radix Before and After Processing Based on Simulated Processing Technology[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(24):169-176.
何梦娇,庄梓鸣,邢玥等.基于模拟炮制技术探究远志炮制前后皂苷类成分转化规律[J].中国实验方剂学杂志,2023,29(24):169-176. DOI: 10.13422/j.cnki.syfjx.20230867.
HE Mengjiao,ZHUANG Ziming,XING Yue,et al.Exploring of Transformation Rule of Saponins in Polygalae Radix Before and After Processing Based on Simulated Processing Technology[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(24):169-176. DOI: 10.13422/j.cnki.syfjx.20230867.
目的
2
探讨远志甘草汁煮和水煮前后皂苷类成分转化机制和含量变化规律。
方法
2
采用模拟炮制技术制备远志皂苷B、远志皂苷Z、远志皂苷F、瓜子金皂苷ⅩⅩⅧ单体模拟甘草汁煮品和模拟水煮品,采用超高效液相色谱-四极杆-静电场轨道阱高分辨质谱法(UPLC-Q-Exactive Orbitrap/MS)分析远志皂苷B、远志皂苷Z、远志皂苷F、瓜子金皂苷ⅩⅩⅧ单体模拟甘草汁煮品和模拟水煮品中的化学成分,采用超高效液相色谱-三重四级杆串联质谱法(UPLC-QQQ-MS/MS)测定远志、甘草汁煮远志、水煮远志中远志皂苷B、远志皂苷Z、远志皂苷F、瓜子金皂苷ⅩⅩⅧ、细叶远志皂苷的含量。
结果
2
在甘草汁煮和水煮过程中,远志皂苷B可水解生成对甲氧基肉桂酸、desacylsenegin Ⅲ、瓜子金皂苷ⅩⅩⅧ、细叶远志皂苷;远志皂苷Z可水解生成3,4,5-三甲氧基肉桂酸、远志皂苷TF、瓜子金皂苷ⅩⅩⅧ、细叶远志皂苷;远志皂苷F可水解生成3,4,5-三甲氧基肉桂酸、远志皂苷G、瓜子金皂苷ⅩⅩⅧ、细叶远志皂苷;瓜子金皂苷ⅩⅩⅧ可水解生成细叶远志皂苷。远志经甘草汁煮和水煮后远志皂苷B含量明显降低(
P
<
0.05,
P
<
0.01),而远志皂苷Z、远志皂苷F、瓜子金皂苷ⅩⅩⅧ、细叶远志皂苷含量明显升高(
P
<
0.05,
P
<
0.01);甘草汁煮品中远志皂苷Z和细叶远志皂苷含量较水煮品明显升高(
P
<
0.05,
P
<
0.01),以细叶远志皂苷含量变化最为显著,而远志皂苷B、远志皂苷F、瓜子金皂苷ⅩⅩⅧ在水煮品和甘草汁煮品中的含量无统计学差异。
结论
2
甘草汁煮和水煮均可使远志中远志皂苷B、远志皂苷Z、远志皂苷F、瓜子金皂苷ⅩⅩⅧ发生水解反应,通过脱糖生成次级苷和苷元(有机酸),从而导致远志炮制后皂苷类成分含量发生明显变化,且甘草汁可促进远志中某些皂苷水解为远志皂苷Z和细叶远志皂苷。本研究为揭示远志炮制机制提供了实验依据。
Objective
2
To investigate the transformation mechanism and content variation of saponins from Polygalae Radix before and after being boiled with licorice juice and water.
Method
2
Simulated licorice juice boiled products and simulated water boiled products of onjisaponin B, onjisaponin Z, onjisaponin F, polygalasaponin ⅩⅩⅧ were prepared by simulated processing technology, and analyzed by ultra-performance liquid chromatography-quadrupole-electrostatic field orbitrap high resolution mass spectrometry(UPLC-Q-Exactive Orbitrap/MS). Then the contents of onjisaponin B, onjisaponin Z, onjisaponin F, polygalasaponin ⅩⅩⅧ and tenuifolin in Polygalae Radix, licorice-boiled Polygalae Radix and water-boiled Polygalae Radix were determined by UPLC-triple quadrupole tandem mass spectrometry(UPLC-QQQ-MS/MS).
Result
2
During the boiling process with licorice juice and water, onjisaponin B could be hydrolyzed to produce 4-methoxycinnamic acid, desacylsenegin Ⅲ, polygalasaponin ⅩⅩⅧ and tenuifolin, onjisaponin Z could be hydrolyzed to produce 3,4,5-trimethoxycinnamic acid, onjisaponin TF, polygalasaponin ⅩⅩⅧ and tenuifolin, onjisaponin F could be hydrolyzed to produce 3,4,5-trimethoxycinnamic acid, onjisaponin G, polygalasaponin ⅩⅩⅧ and tenuifolin, and polygalasaponin ⅩⅩⅧ was hydrolyzed to produce tenuifolin. After being boiled with licorice juice or water, the content of onjisaponin B decreased significantly(
P
<
0.05,
P
<
0.01), but the contents of onjisaponin Z, onjisaponin F, polygalasaponin ⅩⅩⅧ and tenuifolin increased significantly(
P
<
0.05,
P
<
0.01) in Polygalae Radix. Compared with the water-boiled products, the contents of onjisaponin Z and tenuifolin increased significantly(
P
<
0.05,
P
<
0.01), and the change of tenuifolin content was the most significant in the licorice-boiled products.However, there was no significant difference in the content of onjisaponin B, onjisaponin F and polygalasaponin ⅩⅩⅧ between the water-boiled products and the licorice-boiled products.
Conclusion
2
Being boiled with licorice juice or water can hydrolyze onjisaponin B, onjisaponin Z, onjisaponin F and polygalasaponin ⅩⅩⅧ, and generate secondary glycosides and aglycones(organic acids) through deglycosylation, which leads to obvious changes in the contents of onjisaponins after Polygalae Radix being processed.It is inferred that licorice juice can promote the hydrolysis of some onjisaponins in Polygalae Radix to onjisaponin Z and tenuifolin.This study provides an experimental basis for revealing processing mechanism of Polygalae Radix.
贾所学 . 药品化义 [M]. 太原 : 山西科学技术出版社 , 2009 : 29 .
王瑞 , 吴桐 , 刘悦 , 等 . 远志和蜜远志对小鼠胃肠的急性毒性作用 [J]. 中国中医药现代远程教育 , 2018 , 16 ( 8 ): 88 - 90 .
杨伟峰 , 王建 , 刘丽娜 , 等 . 生远志及其总皂苷与蜜远志对大鼠胃肠电慢波的影响 [J]. 中药药理与临床 , 2010 , 26 ( 3 ): 28 - 31 .
王建 , 郭娟 , 武云 . 远志不同炮制品对胃肠运动及消化功能的影响 [J]. 中药药理与临床 , 2006 , 22 ( 3 ): 120 - 122 .
CUI Y , ZHAO X , TANG Y , et al . Comparative study on the chemical components and gastrointestinal function on rats of the raw product and licorice-simmered product of Polygala tenuifolia [J]. Evid Based Complement Alternat Med , 2021 , 2021 : 8855536 .
郭常润 . 远志不同炮制品对东莨菪碱模型小鼠模型学习记忆的影响 [J]. 山东化工 , 2015 , 44 ( 4 ): 10 - 12 .
赵鑫 , 崔月莉 , 吴鹏 , 等 . 远志与炆远志对心肾不交失眠大鼠学习记忆,HPA轴功能及神经递质的调控作用 [J]. 中国实验方剂学杂志 , 2021 , 27 ( 11 ): 147 - 154 .
ZHAO X , CUI Y L , WU P , et al . Polygalae Radix:A review of its traditional uses,phytochemistry,pharmacology,toxicology,and pharmacokinetics [J]. Fitoterapia , 2020 , 147 : 104759 .
高丽娜 , 周长征 , 刘青芝 , 等 . 远志皂苷类化合物及其药理作用研究进展 [J]. 北京联合大学学报:自然科学版 , 2022 , 36 ( 3 ): 58 - 64 .
王均秀 , 李慧芬 , 张学兰 , 等 . 远志和制远志大孔树脂不同分离部位提取物总量及HPLC指纹图谱比较 [J]. 辽宁中医杂志 , 2016 , 43 ( 8 ): 1696 - 1698 .
孟艳 , 吴鹏 , 张学兰 , 等 . 高效液相色谱-飞行时间质谱法快速鉴定远志生、制饮片的化学成分 [J]. 中国实验方剂学杂志 , 2015 , 21 ( 20 ): 17 - 20 .
王雪洁 , 李震宇 , 薛水玉 , 等 . 基于植物代谢组学技术的远志不同炮制品质量控制研究 [J]. 中草药 , 2012 , 43 ( 9 ): 1727 - 1737 .
丁平平 , 易斌 , 陈华师 , 等 . 基于化学成分变化对炆远志“减毒”效应研究 [J]. 广东药科大学学报 , 2022 , 38 ( 4 ): 45 - 51 .
梁晓 , 张学兰 , 李慧芬 , 等 . 甘草汁蒸制远志对远志皂苷B和细叶远志皂苷含有量的影响 [J]. 中成药 , 2015 , 37 ( 4 ): 824 - 827 .
曲丛丛 , 吴鹏 , 张学兰 , 等 . HPLC-TOF/MS法研究远志炮制过程中寡糖酯和皂苷类成分的转化机制 [J]. 中药材 , 2018 , 41 ( 3 ): 576 - 580 .
YOSHIKAWA M , MURAKAMI T , MATSUDA H , et al . Bioactive saponins and glycosides.Ⅱ.Senegae Radix.(2):Chemical structures,hypoglycemic activity,and ethanol absorption-inhibitory effect of E-senegasaponin c,Z-senegasaponin c,and Z-senegins Ⅱ,Ⅲ,and Ⅳ .[J]. Chem Pharm Bull (Tokyo) , 1996 , 44 ( 7 ): 1305 - 1313 .
LING Y , LI Z , CHEN M , et al . Analysis and detection of the chemical constituents of Radix Polygalae and their metabolites in rats after oral administration by ultra high-performance liquid chromatography coupled with electrospray ionization quadrupole time-of-flight tandem mass spectrometry [J]. J Pharm Biomed Anal , 2013 , 85 : 1 - 13 .
LING Y , LI Z , CHEN M , et al . Analysis of multiple constituents in Cong-Ming-Tang,a Chinese herbal formula for the treatment of amnesia,by high-performance liquid chromatography with quadrupole time-of-flight mass spectrometry [J]. Phytochem Anal , 2013 , 24 ( 6 ): 677 - 688 .
LIU J , YANG X , HE J , et al . Structure analysis of triterpene saponins in Polygala tenuifolia by electrospray ionization ion trap multiple-stage mass spectrometry [J]. J Mass Spectrom , 2007 , 42 ( 7 ): 861 - 873 .
WEN L , XIA N , TANG P , et al . The gastrointestinal irritation of polygala saponins and its potential mechanism in vitro and in vivo [J]. Biomed Res Int , 2015 , 2015 : 918048 .
JEONG Y , BAE H J , PARK K , et al . 4-Methoxycinnamic acid attenuates schizophrenia-like behaviors induced by MK-801 in mice [J]. J Ethnopharmacol , 2022 , 285 : 114864 .
LEE C I , HAN J Y , HONG J T , et al . 3,4,5-Trimethoxycinnamic acid (TMCA),one of the constituents of Polygalae Radix enhances pentobarbital-induced sleeping behaviors via GABAAergic systems in mice [J]. Arch Pharm Res , 2013 , 36 ( 10 ): 1244 - 1251 .
冯菲 , 李珩玉 , 赵宏伟 , 等 . 细叶远志皂苷治疗痴呆的研究进展 [J]. 中国实验方剂学杂志 , 2022 , 28 ( 9 ): 258 - 265 .
宋梦晗 , 吴鹏 , 张学兰 , 等 . HPLC法比较远志3种炮制品中8种有机酸 [J]. 中成药 , 2016 , 38 ( 7 ): 1565 - 1569 .
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