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1.遵义医科大学药学院,贵州 遵义 563000
2.北京振东光明药物研究院有限公司,北京 100085
3.遵义医科大学基础药理教育部重点实验室暨特色民族药教育部国际合作联合实验室,贵州 遵义 563000
Published:30 July 2023,
Received:16 December 2022,
Revised:17 May 2023,
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王雅芝,王启益,冯文忠等.柴胡皂苷类成分的肠吸收特性研究 Δ[J].中国药房,2023,34(14):1681-1685.
WANG Yazhi,WANG Qiyi,FENG Wenzhong,et al.Study on the intestinal absorption characteristics of saikosaponins[J].ZHONGGUO YAOFANG,2023,34(14):1681-1685.
王雅芝,王启益,冯文忠等.柴胡皂苷类成分的肠吸收特性研究 Δ[J].中国药房,2023,34(14):1681-1685. DOI: 10.6039/j.issn.1001-0408.2023.14.04.
WANG Yazhi,WANG Qiyi,FENG Wenzhong,et al.Study on the intestinal absorption characteristics of saikosaponins[J].ZHONGGUO YAOFANG,2023,34(14):1681-1685. DOI: 10.6039/j.issn.1001-0408.2023.14.04.
目的
2
探讨柴胡皂苷类成分的肠吸收特性。
方法
2
基于大鼠外翻肠囊模型,以累积吸收量(
Q
)、吸收速率常数(
K
a
)为指标,以超高效液相色谱-串联质谱技术为手段,检测柴胡总皂苷提取液(8 g/mL,以生药量计)中柴胡皂苷A、B
2
、C、D、F在十二指肠、空肠、回肠中的吸收情况。
结果
2
柴胡皂苷A、B
2
、C、F在十二指肠、空肠、回肠中吸收回归方程的相关系数(
r
)均大于0.95,柴胡皂苷D在上述肠段中的
r
均小于0.95;与同成分在十二指肠中的吸收比较,柴胡皂苷A、C在空肠、回肠中循环120 min时的
Q
、
K
a
以及柴胡皂苷F在回肠中循环120 min时的
Q
、
K
a
均显著降低(
P
<0.05)。
结论
2
柴胡皂苷A等5种柴胡皂苷类成分在十二指肠、空肠、回肠中均有吸收,其中柴胡皂苷A、B
2
、C、F均为线性吸收,符合零级吸收特征;柴胡皂苷D为非线性吸收。
OBJECTIVE
2
To explore the intestinal absorption characteristics of saikosaponins.
METHODS
2
Based on everted intestinal sac model, using accumulative absorption amount (
Q
) and absorption rate constant (
K
a
) as indexes, UHPLC-MS/MS technique as a method, the absorption of saikosaponin A, B
2
, C, D and F from total saponins of
Bupleurum chinense
(8 g/mL, by crude drug) in the duodenum, jejunum and ileum was detected.
RESULTS
2
The correlation coefficients (
r
) of the regression equations for the absorption of saikosaponins A, B
2
, C and F in the duodenum, jejunum and ileum were all higher than 0.95, while the
r
of saikosaponin D in the above intestinal segments was lower than 0.95; compared with the absorption of the same composition in the duodenum, the
Q
and
K
a
of saikosaponin A and C circulating in jejunum and ileum for 120 min, as well as the
Q
and
K
a
of saikosaponin F circulating in the ileum for 120 min were significantly decreased (
P
<0.05).
CONCLUSIONS
2
Saikosaponin A and the other 4 saikosaponins are all absorbed in the duodenum, jejunum and ileum; among them, saikosaponin A, B
2
, C and F are linearly absorbed, which conforms to the zero-order absorption characteristics, but saikosaponin D shows non-linear absorption.
柴胡皂苷类成分外翻肠囊法累积吸收量吸收速率常数超高效液相色谱-串联质谱技术
saikosaponinseverted intestinal sac experimentaccumulative absorption amountabsorption rate constantUHPLC-MS/MS
国家药典委员会.中华人民共和国药典:一部[M]. 2020年版.北京:中国医药科技出版社,2020:345-346.
LIU Y,LU D X,HUANG J,et al. Aromatic glycosides from the aerial part of Bupleurum chinense[J]. J Asian Nat Prod Res,2022,24(11):1078-1085.
LI Q F,LU W T,ZHANG Q,et al. Proprietary medicines containing Bupleurum chinense DC.(chaihu)for depression:network meta-analysis and network pharmacology prediction[J]. Front Pharmacol,2022,13:773537.
孙婷婷,骆骄阳,徐媛媛,等. 柴胡药材质量国际标准现状概述[J]. 中国中药杂志,2020,45(20):4853-4860.
SUN P,LI Y J,WEI S,et al. Pharmacological effects and chemical constituents of Bupleurum[J]. Mini Rev Med Chem,2019,19(1):34-55.
ZHENG Q,LI X,HUANG N N,et al. Saikosaponins ameliorate hyperlipidemia in rats by enhancing hepatic lipid and cholesterol metabolism[J]. J Ethnopharmacol,2023,305:116110.
WANG D D,LIU R,ZENG J X,et al. Preliminary scree-ning of the potential active ingredients in traditional Chinese medicines using the Ussing chamber model combined with HPLC-PDA-MS[J]. J Chromatogr B Analyt Technol Biomed Life Sci,2022,1189:123090.
GUO R,ZHAO M F,LIU H,et al. Uncovering the pharmacological mechanisms of Xijiao dihuang decoction combined with Yinqiao powder in treating influenza viral pneumonia by an integrative pharmacology strategy[J]. Biomedecine Pharmacother,2021,141:111676.
HU Q,LI X X,SHI Q S,et al. Deciphering the absorption profile and interaction of multi-components of Zhi-Zi-Da-Huang decoction based on in vitro-in silico-in vivo integrated strategy[J]. Xenobiotica,2019,49(7):762-777.
周丽娟,孙欣光,王雅芝,等. 基于UPLC多指标成分含量测定的柴胡不同部位质量评价研究[J]. 中南药学,2021,19(6):1170-1177.
乔亚荣. 柴胡中皂苷类成分的药代动力学及组织分布研究[D]. 太原:山西大学,2016.
国家药典委员会. 中华人民共和国药典:四部[M]. 2020年版. 北京:中国医药科技出版社,2020:466-472.
陈艳,刘帆,巩仔鹏,等. 基于大鼠离体外翻肠囊模型研究不同粒径天麻粉的吸收特性[J]. 中国药房,2020,31(4):413-422.
高佳蕊,牛立云,朱晓霞,等. 基于UPLC-MS/MS技术和外翻肠囊模型探究M10-H和M10-Na在肠吸收的特征[J]. 药物分析杂志,2021,41(4):627-636.
周珍. 基于吸收的盐酸小檗胺、盐酸小檗碱协同机制研究[D]. 成都:成都中医药大学,2018.
李莹,陈思颖,巩仔鹏,等. 离体外翻肠囊法研究红禾麻提取物在正常与类风湿性关节炎模型大鼠中的肠吸收特性差异[J]. 中国中药杂志,2020,45(2):405-411.
ZHOU P,SHI W,HE X Y,et al. Saikosaponin D:review on the antitumour effects,toxicity and pharmacokinetics[J]. Pharm Biol,2021,59(1):1480-1489.
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