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1.北京中医药大学 中药学院,北京 102488
2.中国中医科学院 广安门医院,北京 100053
[第一作者] 陈红影,在读硕士,从事中药药代动力学研究,E-mail:1592709413@qq.com
*张玉杰,博士,教授,从事中药药代动力学研究,Tel:010-52908842,E-mail:zhyj227@126.com
纸质出版日期:2020-05-05,
网络出版日期:2019-10-09,
收稿日期:2019-07-29,
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陈红影, 黄运芳, 刘起华, 等. HPLC-MS/MS分析黄连碱在大鼠体内外的代谢产物[J]. 中国实验方剂学杂志, 2020,26(9):113-119.
Hong-ying CHEN, Yun-fang HUANG, Qi-hua LIU, et al. Analysis of
陈红影, 黄运芳, 刘起华, 等. HPLC-MS/MS分析黄连碱在大鼠体内外的代谢产物[J]. 中国实验方剂学杂志, 2020,26(9):113-119. DOI: 10.13422/j.cnki.syfjx.20200346.
Hong-ying CHEN, Yun-fang HUANG, Qi-hua LIU, et al. Analysis of
目的:
2
探讨黄连碱的体内外代谢产物及其代谢途径。
方法:
2
体内代谢采用单次灌胃大鼠黄连碱(剂量25 mg·kg
-1
),收集给药后0~48 h的尿液和粪便,0~24 h的胆汁以及给药0.25,1,2 h后的血浆和脑组织样品;体外代谢采用大鼠肝微粒体及肠道菌群孵育的方法;运用高分辨HPLC-MS/MS技术对生物样品中的药物原型及代谢物进行鉴定。选用ZORBAX SB-C
18
色谱柱(4.6 mm×150 mm,5 μm),以乙腈-0.1%甲酸水溶液为流动相梯度洗脱,流速1.0 mL·min
-1
,柱温25 ℃。质谱使用电喷雾离子源(ESI),正、负离子检测模式,扫描范围
m
/
z
50~1 200。对各色谱峰质谱图进行分析,根据准分子离子峰判断相对分子质量,进一步根据各色谱峰的主要碎片离子、保留时间等信息,与文献数据进行比较,推测化合物的结构。
结果:
2
在大鼠尿液、粪便、胆汁、血浆、脑组织、肝微粒体温孵和肠道菌群温孵样品中发现了黄连碱的17个代谢产物,Ⅰ相代谢产物11个,Ⅱ相代谢产物6个。这17个代谢产物是黄连碱在大鼠体内羟基化、去甲基化和脱氢作用、硫酸酯化、葡糖糖醛酸化后产生的。
结论:
2
黄连碱可在大鼠体内发生Ⅰ相和Ⅱ相代谢反应,代谢物主要存在于尿液中,主要代谢部位为肝脏;黄连碱胃肠道吸收较差,代谢少,大部分经粪便以原型排泄,为黄连碱的药效学和药理学研究提供了一定的物质基础。
Objective:
2
To investigate
in vivo
and
in vitro
metabolites of coptisine and their metabolic pathways.
Method:
2
SD rats were given coptisine by single gavage (dose of 25 mg·kg
-1
). Urine and feces from 0 h to 48 h
bile from 0 h to 24 h
and plasma and brain tissue samples at 0.25
1
2 h after administration were collected.
In vitro
metabolism was incubated with rat liver microsomes and intestinal flora.The metabolites were analyzed and identified by the high-resolution HPLC-MS/MS technique.The liquid chromatography separation was carried out on ZORBAX SB-C
18
column (4.6 mm×150 mm
5 μm) with acetonitrile-0.1% formic acid solution as the mobile phase for gradient elution
the flow rate was 1.0 mL·min
-1
and column temperature was 25 ℃.The mass spectra were obtained in positive and negative ion mode with electrospray ionization (ESI)
the scanning range was
m
/
z
50-1 200.The relative molecular weight was determined according to the quasi-molecular ion peaks.The structures of metabolites were elucidated by comparing the data with literature data
including main ion peaks
UV spectrum and HPLC retention time information.
Result:
2
A total of 17 metabolites were identified in each sample
including 11 phase Ⅰ metabolites and 6 phase Ⅱ metabolites.The pathways to these metabolites were hydroxylation
demethylation
dehydrogenation
sulfation and glucuronide conjugation.
Conclusion:
2
Coptisine can produce metabolic reaction of phase Ⅰ and phase Ⅱ in rat
and metabolites are predominantly present in urine
and the main metabolic site is liver.Coptisine is poorly absorbed and rarely metabolized in gastrointestinal tract
so it is mostly excreted through feces by prototype.This experiment can provide material basis for the pharmacodynamics and pharmacology of coptisine.
黄连碱代谢物体内外代谢葡糖糖醛酸化肝微粒体肠道菌群代谢途径
coptisinemetabolitesin vivo and in vitro metabolismglucuronide conjugationliver microsomesintestinal florametabolic pathways
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梁光焰,吴云山,陈伟英,等.巴西苏木素在大鼠体内的代谢产物与代谢途径分析[J].中国实验方剂学杂志,2018,24(1):67-73.
徐叔云,卞如濂,陈修.药理实验方法学[M].3版.北京:人民卫生出版社,2002:511.
鲁艳柳,黄思,汪敏,等.UPLC/LTQ-Orbitrap-MS技术鉴定石斛碱在人肝微粒体中的代谢产物[J].中国实验方剂学杂志,2018,24(4):72-77.
孙桂霞,赵园园,苗培培,等.黄芪甲苷的生物样品稳定性考察及在大鼠体外肠菌中代谢转化研究[J].中国中药杂志,2014,39 (21):4258-4264.
Y LI, H J WANG, N SI, et al.Metabolic profiling analysis of berberine,palmatine,jatrorrhizine,coptisine and epiberberine in zebrafish by ultra-high performance liquid chromatography coupled with LTQ Orbitrap mass spectrometer[J].Xenobiotica,2015,45(4):302-311.
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K WANG, L CHAI, X FENG, et al.Metabolites identification of berberine in rats using ultra-high performance liquid chromatography/quadrupole time-of-flight mass spectrometry[J].J Pharm Biomed Anal,2017,139:73-86.
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