Article(id=1218263717259695039, tenantId=1146029695717560320, journalId=1189982191388893191, issueId=1218263715896546233, articleNumber=null, orderNo=null, doi=10.16438/j.0513-4870.2017-0285, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=research-article, receivedDate=1490803200000, receivedDateStr=2017-03-30, revisedDate=1493049600000, revisedDateStr=2017-04-25, acceptedDate=null, acceptedDateStr=null, onlineDate=1768386304440, onlineDateStr=2026-01-14, pubDate=1502467200000, pubDateStr=2017-08-12, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1768386304440, onlineIssueDateStr=2026-01-14, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1768386304440, creator=13701087609, updateTime=1768386304440, updator=13701087609, issue=Issue{id=1218263715896546233, tenantId=1146029695717560320, journalId=1189982191388893191, year='2017', volume='52', issue='8', pageStart='1203', pageEnd='1350', issueExtLink='null', onlineDate='null', pubDate='null', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1768386304115, creator=13701087609, updateTime=1768386638816, updator=13701087609, preIssue=null, nextIssue=null, ext={EN=IssueExt(id=1218265119784620776, tenantId=1146029695717560320, journalId=1189982191388893191, issueId=1218263715896546233, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1218265119784620777, tenantId=1146029695717560320, journalId=1189982191388893191, issueId=1218263715896546233, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null}, startPage=1222, endPage=1234, ext={EN=ArticleExt(id=1218263717632988100, articleId=1218263717259695039, tenantId=1146029695717560320, journalId=1189982191388893191, language=EN, title=Comparision and analysis on the blood concentration of common Chinese medicine and Western medicine, columnId=1190335348648547107, journalTitle=Acta Pharmaceutica Sinica, columnName=REVIEWS, runingTitle=null, highlight=null, articleAbstract=
To a certain extent, the drug effect is determined by its blood concentration. It is generally accepted that the blood concentrations of constituents of Chinese medicines are very low. There is no sufficient experimental bases and references on its degree and the possibility of taking effect. In this study, 69 papers were collected and analyzed by searching the database of Scifinder, Pubmed, CNKI. The minimum effective blood concentrations of 73 common Western medicines and the maximum blood concentrations of 211 in vivo constituents of 40 Chinese medicines (single herb or compound Chinese medicine) were summarized. It was found that the maximum blood concentrations of the most in vivo constituents of Chinese medicines were much less than the minimum effective blood concentrations of the Western medicines. Specifically, the minimum effective blood concentrations of 17 Western medicines (23% of total) and the maximum blood concentrations of the 143 in vivo constituents of Chinese medicines (68% of total) were less than 100 ng ·mL-1; the minimum effective blood concentrations of 31 Western medicines (42% of total) and the maximum blood concentrations of the 20 in vivo constituents of Chinese medicines (9% of total) were more than 1 000 ng·mL-1. In this paper, a systematic summary and comparison of the blood concentrations in traditional Chinese medicines and Western medicines were conducted, which could provide a new ideas and references for the study of the pharmacodynamical material basis and its mechanism in traditional Chinese medicine.
, correspAuthors=Shao-qing CAI, authorNote=null, correspAuthorsNote=null, copyrightStatement=Copyright ©2017 Acta Pharmaceutica Sinica. All rights reserved., copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=null, pdfFileSize=null, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=null, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=null, mapNumber=null, authorCompany=null, fund=null, authors=null, authorsList=Jing-jing XU, Ming-ying SHANG, Feng XU, Yao-li LI, Guang-xue LIU, Xuan WANG, Shao-qing CAI), CN=ArticleExt(id=1218263719549785072, articleId=1218263717259695039, tenantId=1146029695717560320, journalId=1189982191388893191, language=CN, title=临床常用中西药血药浓度的比较与分析, columnId=1190335349655180086, journalTitle=药学学报, columnName=综述, runingTitle=null, highlight=null, articleAbstract=
血药浓度在一定程度上决定了药物效应的发挥。目前普遍认为中药体内化合物血药浓度较低,但对其低的程度及是否可以在此浓度水平下发挥药效,尚无充分的研究依据及文献报道。本文通过检索Scifinder、Pubmed和CNKI中英文数据库,对69篇文献进行了整理汇总,统计了73种西药在人体内的最小有效血药浓度及40种中药(单味或复方)给药后211种化学成分的最大血药浓度,分析比较了临床常用西药的最小有效血药浓度及中药体内成分最大血药浓度。结果发现,中药绝大多数体内化合物的最大血药浓度远小于西药最小有效血药浓度,即分别有17种西药(占所统计西药数量的23%)最小有效血药浓度和143种中药体内化合物(占所统计中药化学成分数量的68%)最大血药浓度小于100 ng·mL-1;31种西药(占所统计西药数量的42%)最小有效血药浓度和20种中药体内化合物(占所统计中药化学成分的9%)最大血药浓度大于1 000 ng·mL-1。本文根据文献资料对中西药血药浓度进行较为系统的综述与比较,为深入探讨中药药效物质基础及其作用机制的研究提供新的思路及参考。
, correspAuthors=蔡少青, authorNote=null, correspAuthorsNote=
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Corydalis Decumbentis in rat plasma and its application to a pharmacokinetic study[J]. J Chromatogr B, 2014, 944:101-106., articleTitle=null, refAbstract=null), Reference(id=1218968471493332993, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, doi=null, pmid=null, pmcid=null, year=null, volume=null, issue=null, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[69], rfOrder=68, authorNames=null, journalName=null, refType=null, unstructuredReference=Han YQ, Xu J, Gong SX, et al. Chemical constituents and mechanism of Corydalis Rhizoma based on HPLC-QTOF/MS and G protein-coupled receptor analysis[J]. Acta Pharm Sin (药学学报), 2016, 51:1302-1308., articleTitle=null, refAbstract=null), Reference(id=1218968472760012806, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, doi=null, pmid=null, pmcid=null, year=null, volume=null, issue=null, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[70], rfOrder=69, authorNames=null, journalName=null, refType=null, unstructuredReference=Han YQ, Xu J, Zhang XM, et al. Network pharmacologybased study on mechanism of Yuanhu Zhitong Dropping Pills in the treatment of primary dysmenorrhea[J]. Acta Pharm Sin (药学学报), 2016, 51:380-387., articleTitle=null, refAbstract=null), Reference(id=1218968472911007759, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, doi=null, pmid=null, pmcid=null, year=null, volume=null, issue=null, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[71], rfOrder=70, authorNames=null, journalName=null, refType=null, unstructuredReference=Yang P, Xu F, Li HF, et al. Detection of 191 taxifolin metabolites and their distribution in rats using HPLC-ESI-ITTOF-MS[J]. Molecules, 2016, 21:1209., articleTitle=null, refAbstract=null), Reference(id=1218968473053614106, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, doi=null, pmid=null, pmcid=null, year=null, volume=null, issue=null, pageStart=null, pageEnd=null, url=null, language=null, rfNumber=[72], rfOrder=71, authorNames=null, journalName=null, refType=null, unstructuredReference=Xu F, Yang DH, Shang MY, et al. Effective forms, additive effect, and toxicities scattering effect of pharmacodynamic substances of TCMs some reflections evoked by the study on the metabolic disposition of traditional Chinese medicines (TCM)[J]. World Sci Technol Modern Tradit Chin Med Mater Med (世界科学技术-中医药现代化), 2014, 16:688-703., articleTitle=null, refAbstract=null)], funds=[Fund(id=1218968462437830742, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, awardId=JJ2016-78, language=CN, fundingSource=北京中医药科技发展资金项目(JJ2016-78), fundOrder=null, country=null)], companyList=[AuthorCompany(id=1218968456221872580, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, xref=null, ext=[AuthorCompanyExt(id=1218968456226066885, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, companyId=1218968456221872580, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1. Department of Natrual Medicines, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China), AuthorCompanyExt(id=1218968456234455495, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, companyId=1218968456221872580, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.北京大学药学院天然药物学系, 北京 100191)]), AuthorCompany(id=1218968456318341587, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, xref=null, ext=[AuthorCompanyExt(id=1218968456322535893, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, companyId=1218968456318341587, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2. Department of Chemical Biology, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China), AuthorCompanyExt(id=1218968456335118806, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, companyId=1218968456318341587, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.北京大学药学院化学生物学系, 北京 100191)])], figs=[ArticleFig(id=1218968460743332791, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=EN, label=null, caption=null, figureFileSmall=2HR4ILNnSmfSODEJyvlzfg==, figureFileBig=0ehDItcYRdosmuSux0ieqw==, tableContent=null), ArticleFig(id=1218968460860773316, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Figure 1, caption=
The distribution of 31 Western medicines and 20 Chinese medicines blood concentration in the interval of 1 000-10 000 ng·mL-1
, figureFileSmall=2HR4ILNnSmfSODEJyvlzfg==, figureFileBig=0ehDItcYRdosmuSux0ieqw==, tableContent=null), ArticleFig(id=1218968461062099930, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=EN, label=null, caption=null, figureFileSmall=sWpUluRzTrIOS0/d5s7rbw==, figureFileBig=QsiYHPf2bVo5LPuWMLxN6A==, tableContent=null), ArticleFig(id=1218968461171151839, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Figure 2, caption=
The distribution of blood concentrations of 25 Western medicines and 48 in vivo constituents of Chinese medicines (including 2 metabolites) in the interval of 100-1 000 ng·mL-1
, figureFileSmall=sWpUluRzTrIOS0/d5s7rbw==, figureFileBig=QsiYHPf2bVo5LPuWMLxN6A==, tableContent=null), ArticleFig(id=1218968461271815149, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=EN, label=null, caption=null, figureFileSmall=Sz8OwOSG1aFFVNEpdCCFAQ==, figureFileBig=1JMKvEgyECtsasMXTVC0lw==, tableContent=null), ArticleFig(id=1218968461385061368, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Figure 3, caption=
The distribution of blood concentrations of 17 Western medicines and 143 in vivo constituents of Chinese medicines (including 16 metabolites) in the interval of 0-100 ng·mL-1
, figureFileSmall=Sz8OwOSG1aFFVNEpdCCFAQ==, figureFileBig=1JMKvEgyECtsasMXTVC0lw==, tableContent=null), ArticleFig(id=1218968461502500872, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=EN, label=null, caption=null, figureFileSmall=null, figureFileBig=null, tableContent=
| Western medicine | Minimum effective blood concentration/ng·mL-1 | Document type | Reference |
| Digoxin | 0.5 | (2) | 4 |
| Nifedipine | 25 | (2) | 12 |
| Trovafloxacin | 60 | (3) | 6 |
| Erythromycin | 60 | (3) | 6 |
| Clonazepam | 16 | (2) | 13 |
| Cyclosporine | 100 | (2) | 14 |
| Gentamicin | 125 | (3) | 6 |
| Ciprofloxacin | 125 | (3) | 6 |
| Clorimipramine | 160 | (2) | 15 |
| Quetiapine | 250 | (2) | 16 |
| Aripiprazole | 350 | (2) | 17 |
| Clozapine | 370 | (2) | 18 |
| Cordarone | 500 | (2) | 19 |
| Amikacin | 500 | (2) | 20 |
| Teicoplanin | 500 | (2) | 21 |
| Rifampin | 500 | (2) | 22 |
| Lamotrigine | 1 000 | (2) | 23 |
| Fosfomycin | 1 000 | (3) | 6 |
| Human activated protein C | 1 040 | (1) | 24 |
| Isoniazid | 3 000 | (2) | 23 |
| Oxcarbazepine | 3 470 | (3) | 6 |
| Oxacillin | 4 000 | (3) | 6 |
| Carbamazepine | 4 000 | (2) | 25 |
| Aminophylline | 5 000 | (1) | 6 |
| Vancomycin | 5 000 | (2) | 4 |
| Micafungin | 5 000 | (2) | 13 |
| Cephazolin | 8 000 | (1) | 26 |
| Phenytoin sodium | 10 000 | (2) | 13 |
| Pyrazinamide | 12 500 | (1) | 27 |
| Phenobarbital | 15 000 | (2) | 16 |
| Penicillin | 16 000 | (2) | 23 |
| Sodium valproate | 50 000 | (1) | 28 |
| Kanamycin | 15 000 | (3) | 29 |
| Netilmicin | 6 000 | (3) | 29 |
| Streptomycin | 20 000 | (3) | 29 |
| Sulfonamides | 50 000 | (3) | 29 |
| Amiodarone | 500 | (3) | 29 |
| Darenthin | 500 | (3) | 29 |
| Digitoxigenin | 9 | (3) | 29 |
| Propiram | 2 000 | (3) | 29 |
| Flecainide | 200 | (3) | 29 |
| Lidocaine | 1 500 | (3) | 29 |
| Mexiletine | 500 | (3) | 29 |
| Procaine | 4 000 | (3) | 29 |
| Propranolol | 50 | (3) | 29 |
| Quinidine | 2 000 | (3) | 29 |
| Tocainide | 4 000 | (3) | 29 |
| Verapamil | 80 | (3) | 29 |
| Amrinone | 3 700 | (3) | 29 |
| Hydralazine | 100 | (3) | 29 |
| Primidone | 5 000 | (3) | 29 |
| Amitriptyline | 110 | (3) | 29 |
| Amoxapine | 200 | (3) | 29 |
| Bupropion | 25 | (3) | 29 |
| Clomipramine | 80 | (3) | 29 |
| Desipramine | 125 | (3) | 29 |
| Doxepin | 100 | (3) | 29 |
| Imipramine | 200 | (3) | 29 |
| Maprotiline | 200 | (3) | 29 |
| Nortriptyline | 50 | (3) | 29 |
| Protriptyline | 100 | (3) | 29 |
| Trazodone | 800 | (3) | 29 |
| Chlorpromazine | 30 | (3) | 29 |
| Fluphenazine | 0.13 | (3) | 29 |
| Haloperidol | 5 | (3) | 29 |
| Trilafon | 0.8 | (3) | 29 |
| Thiothixene | 2 | (3) | 29 |
| Amantadine | 300 | (3) | 29 |
| Salicylates | 100 000 | (3) | 29 |
| Terbutaline | 0.5 | (3) | 29 |
| Flucytosine | 25 000 | (3) | 29 |
| Chloramphenicol | 15 000 | (3) | 29 |
| Ethosuximide | 40 000 | (3) | 29 |
), ArticleFig(id=1218968461678661648, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Table 1, caption=
The minimum effective blood concentrations of 73 Western medicine chemicals. Document types: (1) Pharmacokinetic studies; (2) Therapeutic drug monitoring studies; (3) Clinical monograph
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| Western medicine | Minimum effective blood concentration/ng·mL-1 | Document type | Reference |
| Digoxin | 0.5 | (2) | 4 |
| Nifedipine | 25 | (2) | 12 |
| Trovafloxacin | 60 | (3) | 6 |
| Erythromycin | 60 | (3) | 6 |
| Clonazepam | 16 | (2) | 13 |
| Cyclosporine | 100 | (2) | 14 |
| Gentamicin | 125 | (3) | 6 |
| Ciprofloxacin | 125 | (3) | 6 |
| Clorimipramine | 160 | (2) | 15 |
| Quetiapine | 250 | (2) | 16 |
| Aripiprazole | 350 | (2) | 17 |
| Clozapine | 370 | (2) | 18 |
| Cordarone | 500 | (2) | 19 |
| Amikacin | 500 | (2) | 20 |
| Teicoplanin | 500 | (2) | 21 |
| Rifampin | 500 | (2) | 22 |
| Lamotrigine | 1 000 | (2) | 23 |
| Fosfomycin | 1 000 | (3) | 6 |
| Human activated protein C | 1 040 | (1) | 24 |
| Isoniazid | 3 000 | (2) | 23 |
| Oxcarbazepine | 3 470 | (3) | 6 |
| Oxacillin | 4 000 | (3) | 6 |
| Carbamazepine | 4 000 | (2) | 25 |
| Aminophylline | 5 000 | (1) | 6 |
| Vancomycin | 5 000 | (2) | 4 |
| Micafungin | 5 000 | (2) | 13 |
| Cephazolin | 8 000 | (1) | 26 |
| Phenytoin sodium | 10 000 | (2) | 13 |
| Pyrazinamide | 12 500 | (1) | 27 |
| Phenobarbital | 15 000 | (2) | 16 |
| Penicillin | 16 000 | (2) | 23 |
| Sodium valproate | 50 000 | (1) | 28 |
| Kanamycin | 15 000 | (3) | 29 |
| Netilmicin | 6 000 | (3) | 29 |
| Streptomycin | 20 000 | (3) | 29 |
| Sulfonamides | 50 000 | (3) | 29 |
| Amiodarone | 500 | (3) | 29 |
| Darenthin | 500 | (3) | 29 |
| Digitoxigenin | 9 | (3) | 29 |
| Propiram | 2 000 | (3) | 29 |
| Flecainide | 200 | (3) | 29 |
| Lidocaine | 1 500 | (3) | 29 |
| Mexiletine | 500 | (3) | 29 |
| Procaine | 4 000 | (3) | 29 |
| Propranolol | 50 | (3) | 29 |
| Quinidine | 2 000 | (3) | 29 |
| Tocainide | 4 000 | (3) | 29 |
| Verapamil | 80 | (3) | 29 |
| Amrinone | 3 700 | (3) | 29 |
| Hydralazine | 100 | (3) | 29 |
| Primidone | 5 000 | (3) | 29 |
| Amitriptyline | 110 | (3) | 29 |
| Amoxapine | 200 | (3) | 29 |
| Bupropion | 25 | (3) | 29 |
| Clomipramine | 80 | (3) | 29 |
| Desipramine | 125 | (3) | 29 |
| Doxepin | 100 | (3) | 29 |
| Imipramine | 200 | (3) | 29 |
| Maprotiline | 200 | (3) | 29 |
| Nortriptyline | 50 | (3) | 29 |
| Protriptyline | 100 | (3) | 29 |
| Trazodone | 800 | (3) | 29 |
| Chlorpromazine | 30 | (3) | 29 |
| Fluphenazine | 0.13 | (3) | 29 |
| Haloperidol | 5 | (3) | 29 |
| Trilafon | 0.8 | (3) | 29 |
| Thiothixene | 2 | (3) | 29 |
| Amantadine | 300 | (3) | 29 |
| Salicylates | 100 000 | (3) | 29 |
| Terbutaline | 0.5 | (3) | 29 |
| Flucytosine | 25 000 | (3) | 29 |
| Chloramphenicol | 15 000 | (3) | 29 |
| Ethosuximide | 40 000 | (3) | 29 |
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| Sample | Chinese medicine | Administration | Dose | Constituent | Category | Cmax/ng·mL-1 | Reference |
| Rat plasma | Xiangfu-Siwu decoction | ig | 3.78 g·kg-1 | Tetrahydropalmatine | Prototype | 49.0 | 11 |
| | | | Protopine | Prototype | 510 | 11 |
| | | | Berberine | Prototype | 8.9 | 11 |
| | | | Tetrahydro corydaline | Prototype | 3.4 | 11 |
| Human plasma | Astragalosides injection | iv | 45 mg | Astragaloside Ⅳ | Prototype | 5 190 | 30 |
| Rat plasma | Danggui-Shaoyao-San | ig | 3.54 g·kg-1 | Paeoniflorin | Prototype | 8 280 | 31 |
| Rat plasma | Chrysanthemi Flos extract | ig | 100 mg·kg-1 | Apigenin | Prototype | 3 310 | 32 |
| | | | Luteolin | Prototype | 1 684 | 32 |
| | | | Diosmetin | Prototype | 329.4 | 32 |
| | | | Chrysoeriol | Prototype | 93.1 | 32 |
| Rat plasma | Longdan-Xiegan-decoction | ig | 10 g·kg-1 | Gentiamarin | Prototype | 5 767 | 33 |
| | | | Geniposide | Prototype | 1 164 | 33 |
| | | | Baicalin | Prototype | 2 008 | 33 |
| | | | Swertiamain | Prototype | 13.0 | 33 |
| Rat plasma | Verbenae herba | ig | 10 mL·kg-1 | Luteolin | Prototype | 1 620 | 34 |
| | | | Kaempferol | Prototype | 590 | 34 |
| | | | Apigenin | Prototype | 6 690 | 34 |
| | | | Quercetol | Prototype | 820 | 34 |
| | | | Quercetin | Prototype | 6 360 | 34 |
| Rat plasma | Coptidis Rhizoma aqueous | ig | 10 mL·kg-1 | Berberine | Prototype | 153.33 | 35 |
| extracts | | | Coptisine | Prototype | 106.81 | 35 |
| | | | Palmatine | Prototype | 114.86 | 35 |
| | | | Jatrorrhizine | Prototype | 28.08 | 35 |
| | | | Epiberberine | Prototype | 96.69 | 35 |
| | | | Magnoflorine | Prototype | 310.26 | 35 |
| | | | Columbamin | Prototype | 123.19 | 35 |
| | | | Noroxyhy-drastinine | Prototype | 10.94 | 35 |
| | | | Oxyberberine | Prototype | 6.78 | 35 |
| | | | 8-Oxocoptisine | Prototype | 10.48 | 35 |
| Rat plasma | Wu-Jin pill | ig | 15 g·kg-1 | Jatrorrhizine | Prototype | 18.62 | 36 |
| | | | Berberine | Prototype | 89.57 | 36 |
| | | | Coptisine | Prototype | 33.33 | 36 |
| | | | Palmatine | Prototype | 25.80 | 36 |
| | | | Evodiamine | Prototype | 21.22 | 36 |
| | | | Peoniflorin | Prototype | 210.59 | 36 |
| Rat plasma | Danmu injection | im | 2 mL·kg-1 | Naucleamide A-10-O-β-d- | Prototype | 74.83 | 37 |
| | | | glucopyranoside | | | |
| | | | Naucleamide G | Prototype | 22.92 | 37 |
| | | | Pumiloside | Prototype | 102.06 | 37 |
| | | | 3-Epi-pumiloside | Prototype | 19.59 | 37 |
| | | | Strictosamide | Prototype | 720.76 | 37 |
| | | | Vincosamide | Prototype | 36.30 | 37 |
| Human plasma | Puerariae Lobatae radix | po | 2.56 g | Puerarin | Prototype | 11.07 | 38 |
| | | | 7, 4'-Dihydroxy isoflavone | Metabolites | 2.10 | 38 |
| Human plasma | Guanxin Ⅱ | po | 3 g·kg-1 | Ferulic Acid | Prototype | 26.20 | 39 |
| Rat plasma | Xiao-Xu-Ming decoction | ig | 2.0 g·kg-1 | Oroxylin A-7-O-glucuronide | Prototype | 1200 | 40 |
| | | | Wogonoside | Prototype | 2 362 | 40 |
| | | | Liquiritigenin | Prototype | 20.3 | 40 |
| | | | 5-O-Methylvisammiol | Prototype | 338 | 40 |
| | | | Cimifugin | Prototype | 2 018 | 40 |
| | | | Glycyrrhizic acid | Prototype | 23.24 | 40 |
| | | | Glycyrrhetinic acid | Prototype | 760.7 | 40 |
| Mice plasma | Astragali radix | ig | 80 mg·kg-1 | Calycosin-7-O-glucoside | Prototype | 33.41 | 41 |
| | | | Ononin | Prototype | 51.38 | 41 |
| | | | Calycosin | Prototype | 32.98 | 41 |
| | | | Formononetin | Prototype | 47.93 | 41 |
| | | | Astragaloside Ⅳ | Prototype | 128.95 | 41 |
| Rat plasma | Buyang-Huangwu-Tang | ig | 10 g·kg-1 | Astragaloside Ⅰ | Prototype | 55 | 42 |
| | | | Astragaloside Ⅱ | Prototype | 30 | 42 |
| | | | Astragaloside Ⅳ | Prototype | 100 | 42 |
| | | | Formononetin | Prototype | 98 | 42 |
| | | | Ononin | Prototype | 19 | 42 |
| | | | Calycosin | Prototype | 1 231 | 42 |
| | | | Calycosin-7-O-glucoside | Prototype | 18 | 42 |
| | | | Ligustilide | Prototype | 7.8 | 42 |
| | | | Peoniflorin | Prototype | 97 | 42 |
| Human plasma | Guang-Tong-Xiao aerosol | Rectal | 0.165 g·kg-1 | Tetrahydropalmatine | Prototype | 0.55 | 43 |
| | administration | | Berberine hydrochloride | Prototype | 0.31 | 43 |
| Human plasma | Chaihu-Shugan-San | po | 4 g·kg-1 | Meranzin hydrate | Prototype | 199 | 44 |
| | | | Ferulic acid | Prototype | 317 | 44 |
| Human plasma | Wuzhi capsule | po | 6 capsules | Schisandrol A | Prototype | 126.88 | 45 |
| | | | Schisandrol B | Prototype | 65.18 | 45 |
| | | | Schisantherin A | Prototype | 400.27 | 45 |
| | | | Deoxyschizandrin | Prototype | 63.21 | 45 |
| | | | Schizanhenol | Prototype | 31.00 | 45 |
| Human plasma | Yigu capsule | po | 15 capsules | LcariinⅡ | Prototype | 2.76 | 46 |
| Human plasma | Panax Quinquefolius radix | po | 10 g | Ginsenoside Rb1 | Prototype | 19.90 | 47 |
| | | | Compound K | Prototype | 7.32 | 47 |
| Human plasma | Notogenseng radix et | po | 27 g | Ginsenoside Ra3 | Prototype | 4.94 | 48 |
| Rhizoma | | | Ginsenoside Rb2 | Prototype | 39.05 | 48 |
| | | | Ginsenoside Rd | Prototype | 8.98 | 48 |
| | | | Ginsenoside F2 | Prototype | 4.45 | 48 |
| | | | Compound K | Prototype | 154.88 | 48 |
| | | | 20(S)-Protopanoxadiol | Prototype | 4.19 | 48 |
| | | | Notoginsenoside R1 | Prototype | 1.07 | 48 |
| | | | Ginsenoside Rg1 | Prototype | 7.25 | 48 |
| | | | Ginsenoside F1 | Prototype | 3.06 | 48 |
| | | | 20(S)-Protopanaxatriol | Prototype | 23.39 | 48 |
| | | | M16 | Metabolites | 2.56 | 48 |
| | | | M17 | Metabolites | 6.08 | 48 |
| | | | M19 | Metabolites | 8.30 | 48 |
| | | | M20 | Metabolites | 2.69 | 48 |
| | | | M21 | Metabolites | 15.23 | 48 |
| | | | M22 | Metabolites | 4.25 | 48 |
| | | | M4 | Metabolites | 11.66 | 48 |
| | | | M5 | Metabolites | 20.04 | 48 |
| | | | M6 | Metabolites | 7.63 | 48 |
| | | | M7 | Metabolites | 4.73 | 48 |
| | | | M8 | Metabolites | 160.70 | 48 |
| | | | M10 | Metabolites | 20.62 | 48 |
| | | | M11 | Metabolites | 59.52 | 48 |
| | | | M12 | Metabolites | 391.82 | 48 |
| | | | M13 | Metabolites | 10.79 | 48 |
| | | | M14 | Metabolites | 10.15 | 48 |
| | | | M15 | Metabolites | 3.74 | 48 |
| Rat plasma | Baihe-Zhimu-Tang | ig | 10 g·kg-1 | Mangiferin | Prototype | 522.83 | 49 |
| | | | Neo-mangiferin | Prototype | 336.7 | 49 |
| | | | Timosaponin B Ⅱ | Prototype | 434.6 | 49 |
| | | | Timosaponin B Ⅲ | Prototype | 36.4 | 49 |
| | | | Timosaponin A Ⅲ | Prototype | 94.4 | 49 |
| Rat plasma | Zi-Shen pill | ig | 1.94 g·kg-1 | Palmatine | Prototype | 3.8 | 50 |
| | | | Berberine | Prototype | 6.8 | 50 |
| | | | Timosaponin E1 | Prototype | 15.2 | 50 |
| | | | Timosaponin B | Prototype | 35.0 | 50 |
| | | | Timosaponin BⅡ | Prototype | 63.5 | 50 |
| | | | Mangiferin | Prototype | 874.9 | 50 |
| | | | Neo-mangiferin | Prototype | 71.4 | 50 |
| Rat plasma | Kai-Xin San | ig | 9.4 g·kg-1 | Tumulosic acid | Prototype | 5.88 | 51 |
| | | | Ginsenoside Rg1 | Prototype | 8.75 | 51 |
| | | | Ginsenoside Re | Prototype | 69.14 | 51 |
| | | | Polygalaxanthone Ⅲ | Prototype | 65.15 | 51 |
| | | | Ginsenoside Rd | Prototype | 78.91 | 51 |
| | | | Ginsenoside Rb1 | Prototype | 275.9 | 51 |
| Rat plasma | Fuzi-Xiexin decoction | ig | 30 g·kg-1 | Emodin | Prototype | 3.30 | 52 |
| | | | Jatrorrhizine | Prototype | 2.26 | 52 |
| | | | Berberine | Prototype | 5.83 | 52 |
| | | | Palmatine | Prototype | 6.27 | 52 |
| | | | Coptisine | Prototype | 7.78 | 52 |
| | | | Wogonoside | Prototype | 125.73 | 52 |
| | | | Wogonin | Prototype | 33.98 | 52 |
| | | | Aloe-emodin | Prototype | 40.88 | 52 |
| | | | Rhein | Prototype | 2 496.96 | 52 |
| | | | Baicalin | Prototype | 121.03 | 52 |
| Rat plasma | Tang-Ming-Ling pill | ig | 16 g·kg-1 | Chrysin | Prototype | 19.47 | 53 |
| | | | Naringenin | Prototype | 133.8 | 53 |
| | | | Oroxylin A | Prototype | 155.9 | 53 |
| | | | Hesperidin | Prototype | 190.3 | 53 |
| | | | Wogonin | Prototype | 1378 | 53 |
| | | | Berberine | Prototype | 156.2 | 53 |
| | | | Coptisine | Prototype | 16.94 | 53 |
| | | | Jatrorrhizine | Prototype | 7.884 | 53 |
| | | | Palmatine | Prototype | 16.52 | 53 |
| Rat plasma | Jiao-Tai-Wan | ig | 300 mg·kg-1 | Epiberberine | Prototype | 2.86 | 54 |
| | | | Berberine | Prototype | 10.19 | 54 |
| | | | Palmatine | Prototype | 0.85 | 54 |
| | | | Coptisine | Prototype | 4.09 | 54 |
| | | | Jatrorrhizine | Prototype | 1.04 | 54 |
| Rat plasma | Yinchen-Zhufu decoction | ig | 1.5 g·kg-1 | Ononin | Prototype | 0.34 | 55 |
| | | | Liquiritin | Prototype | 11.77 | 55 |
| | | | Ginkgolides Ⅲ | Prototype | 16.07 | 55 |
| | | | Glycyrrhizinic acid | Prototype | 57.90 | 55 |
| | | | Cinnamylic acid | Prototype | 81.33 | 55 |
| | | | Glycyrrhetinic acid | Prototype | 431.17 | 55 |
| Rat plasma | Danggui-Buxue decoction | ig | 20 g·kg-1 | Ononin | Prototype | 6.42 | 56 |
| | | | Butyl lactone | Prototype | 7.35 | 56 |
| | | | Campanulin | Prototype | 9.28 | 56 |
| | | | Astragalin | Prototype | 24.70 | 56 |
| | | | Caffeic acid | Prototype | 34.43 | 56 |
| | | | Ligustilide | Prototype | 34.18 | 56 |
| | | | Ferulic acid | Prototype | 61.03 | 56 |
| Rat plasma | Ke-ke capsule | ig | 0.18 g·kg-1 | Morphine | Prototype | 8.921 | 57 |
| | | | Ephedrine | Prototype | 46.85 | 57 |
| | | | Pseudoephedrine | Prototype | 12.58 | 57 |
| Rat plasma | Chaihu-Shugan-San | ig | 30 g·kg-1 | Meranzin hydrate | Prototype | 58.66 | 58 |
| Rat plasma | Bushen-Huoxue formula | ig | 1.0 g·kg-1 | Formononetin | Prototype | 1.79 | 59 |
| | | | Emodin | Prototype | 8.26 | 59 |
| | | | Tanshinone ⅡA | Prototype | 22.64 | 59 |
| Beagle plasma | Niuhuang-Jiedu pill | ig | 380 mg·kg-1 | Dimethylarsinic acid | Prototype | 57.0 | 60 |
| Rat plasma | Wu-Zhu-Yu decoction | ig | 6.67 g·kg-1 | Evodiamine | Prototype | 9.01 | 61 |
| | | | Rutecarpine | Prototype | 10.13 | 61 |
| | | | Ginsenoside Rd | Prototype | 14.56 | 61 |
| | | | Ginsenoside Rb1 | Prototype | 63.99 | 61 |
| | | | Ginsenoside Re | Prototype | 2.98 | 61 |
| | | | Ginsenoside Rg1 | Prototype | 4.42 | 61 |
| | | | Limonin | Prototype | 630.90 | 61 |
| | | | Dehydroevodiamine | Prototype | 432.40 | 61 |
| Rat plasma | Juglandis Mandshuruicae | ig | 15 g·kg-1 | Quercetin | Prototype | 33.57 | 62 |
| cortex extract | | | Myricetin | Prototype | 54.10 | 62 |
| | | | Naringenin | Prototype | 64.83 | 62 |
| | | | Myricetrin | Prototype | 103.36 | 62 |
| | | | Texifolin | Prototype | 110.24 | 62 |
| | | | Gallic acid | Prototype | 3 443.76 | 62 |
| | | | Quercitrin | Prototype | 111.29 | 62 |
| | | | 5, 8-Dihydroxy-1, 4-naphthoquinone | Prototype | 9 965.75 | 62 |
| Rat plasma | Sheng-Mai formula | ig | 5 mg·kg-1 | Schizandrin | Prototype | 4.51 | 63 |
| | | | Schisandrol B | Prototype | 3.61 | 63 |
| | | | Schisantherin A | Prototype | 3.80 | 63 |
| | | | Schizandrin B | Prototype | 11.46 | 63 |
| | | | Deoxyschizandrin | Prototype | 7.64 | 63 |
| Rat plasma | Schisandra chinensis | ig | 150 mg·g-1 | Schisandrol A | Prototype | 449.0 | 64 |
| | | | Schisandrol B | Prototype | 100 | 64 |
| | | | Gomisin N | Prototype | 240 | 64 |
| | | | Tigloylgomisin H | Prototype | 29.4 | 64 |
| | | | Schizandrin A | Prototype | 96.2 | 64 |
| | | | Schizandrin B | Prototype | 54.9 | 64 |
| | | | Angeloylgomisin H | Prototype | 70.3 | 64 |
| | | | Schisandrin C | Prototype | 68.7 | 64 |
| Rat plasma | Licorice | ig | 5 g·kg-1 | Liquiritin | Prototype | 553.20 | 65 |
| | | | Isoliquiritin | Prototype | 145.80 | 65 |
| | | | Liquiritigenin | Prototype | 68.40 | 65 |
| | | | Isoliquiritigenin | Prototype | 44.70 | 65 |
| | | | Glycyrrhizic acid | Prototype | 1 210.50 | 65 |
| | | | Glycycoumarin | Prototype | 7.40 | 65 |
| | | | Formononetin | Prototype | 13.90 | 65 |
| Rat plasma | Borneol | ig | 20 mg·kg-1 | Borneol | Prototype | 17.864 | 66 |
| | | | Camphor | Prototype | 18.36 | 66 |
| Rat plasma | Suan-Zao-Ren decoction | ig | 8 g·kg-1 | Spinosin | Prototype | 44.20 | 67 |
| | | | Mangiferin | Prototype | 1576 | 67 |
| | | | Ferulic acid | Prototype | 151.5 | 67 |
| Rat plasma | Corydalis Decumbentis | ig | 2.0 g·kg-1 | Tetrahydropalmatine | Prototype | 435.8 | 68 |
| rhizoma | | | Protopine | Prototype | 347.9 | 68 |
| | | | Palmatine | Prototype | 8.53 | 68 |
), ArticleFig(id=1218968461934514217, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Table 2, caption=
The maximum blood concentration of in vivo constituents of traditional Chinese medicine in human/animal plasma. iv: Intravenous injection; ip: Peritoneal injection; ig: Intragastric administration; po: Oral administration
, figureFileSmall=null, figureFileBig=null, tableContent=
| Sample | Chinese medicine | Administration | Dose | Constituent | Category | Cmax/ng·mL-1 | Reference |
| Rat plasma | Xiangfu-Siwu decoction | ig | 3.78 g·kg-1 | Tetrahydropalmatine | Prototype | 49.0 | 11 |
| | | | Protopine | Prototype | 510 | 11 |
| | | | Berberine | Prototype | 8.9 | 11 |
| | | | Tetrahydro corydaline | Prototype | 3.4 | 11 |
| Human plasma | Astragalosides injection | iv | 45 mg | Astragaloside Ⅳ | Prototype | 5 190 | 30 |
| Rat plasma | Danggui-Shaoyao-San | ig | 3.54 g·kg-1 | Paeoniflorin | Prototype | 8 280 | 31 |
| Rat plasma | Chrysanthemi Flos extract | ig | 100 mg·kg-1 | Apigenin | Prototype | 3 310 | 32 |
| | | | Luteolin | Prototype | 1 684 | 32 |
| | | | Diosmetin | Prototype | 329.4 | 32 |
| | | | Chrysoeriol | Prototype | 93.1 | 32 |
| Rat plasma | Longdan-Xiegan-decoction | ig | 10 g·kg-1 | Gentiamarin | Prototype | 5 767 | 33 |
| | | | Geniposide | Prototype | 1 164 | 33 |
| | | | Baicalin | Prototype | 2 008 | 33 |
| | | | Swertiamain | Prototype | 13.0 | 33 |
| Rat plasma | Verbenae herba | ig | 10 mL·kg-1 | Luteolin | Prototype | 1 620 | 34 |
| | | | Kaempferol | Prototype | 590 | 34 |
| | | | Apigenin | Prototype | 6 690 | 34 |
| | | | Quercetol | Prototype | 820 | 34 |
| | | | Quercetin | Prototype | 6 360 | 34 |
| Rat plasma | Coptidis Rhizoma aqueous | ig | 10 mL·kg-1 | Berberine | Prototype | 153.33 | 35 |
| extracts | | | Coptisine | Prototype | 106.81 | 35 |
| | | | Palmatine | Prototype | 114.86 | 35 |
| | | | Jatrorrhizine | Prototype | 28.08 | 35 |
| | | | Epiberberine | Prototype | 96.69 | 35 |
| | | | Magnoflorine | Prototype | 310.26 | 35 |
| | | | Columbamin | Prototype | 123.19 | 35 |
| | | | Noroxyhy-drastinine | Prototype | 10.94 | 35 |
| | | | Oxyberberine | Prototype | 6.78 | 35 |
| | | | 8-Oxocoptisine | Prototype | 10.48 | 35 |
| Rat plasma | Wu-Jin pill | ig | 15 g·kg-1 | Jatrorrhizine | Prototype | 18.62 | 36 |
| | | | Berberine | Prototype | 89.57 | 36 |
| | | | Coptisine | Prototype | 33.33 | 36 |
| | | | Palmatine | Prototype | 25.80 | 36 |
| | | | Evodiamine | Prototype | 21.22 | 36 |
| | | | Peoniflorin | Prototype | 210.59 | 36 |
| Rat plasma | Danmu injection | im | 2 mL·kg-1 | Naucleamide A-10-O-β-d- | Prototype | 74.83 | 37 |
| | | | glucopyranoside | | | |
| | | | Naucleamide G | Prototype | 22.92 | 37 |
| | | | Pumiloside | Prototype | 102.06 | 37 |
| | | | 3-Epi-pumiloside | Prototype | 19.59 | 37 |
| | | | Strictosamide | Prototype | 720.76 | 37 |
| | | | Vincosamide | Prototype | 36.30 | 37 |
| Human plasma | Puerariae Lobatae radix | po | 2.56 g | Puerarin | Prototype | 11.07 | 38 |
| | | | 7, 4'-Dihydroxy isoflavone | Metabolites | 2.10 | 38 |
| Human plasma | Guanxin Ⅱ | po | 3 g·kg-1 | Ferulic Acid | Prototype | 26.20 | 39 |
| Rat plasma | Xiao-Xu-Ming decoction | ig | 2.0 g·kg-1 | Oroxylin A-7-O-glucuronide | Prototype | 1200 | 40 |
| | | | Wogonoside | Prototype | 2 362 | 40 |
| | | | Liquiritigenin | Prototype | 20.3 | 40 |
| | | | 5-O-Methylvisammiol | Prototype | 338 | 40 |
| | | | Cimifugin | Prototype | 2 018 | 40 |
| | | | Glycyrrhizic acid | Prototype | 23.24 | 40 |
| | | | Glycyrrhetinic acid | Prototype | 760.7 | 40 |
| Mice plasma | Astragali radix | ig | 80 mg·kg-1 | Calycosin-7-O-glucoside | Prototype | 33.41 | 41 |
| | | | Ononin | Prototype | 51.38 | 41 |
| | | | Calycosin | Prototype | 32.98 | 41 |
| | | | Formononetin | Prototype | 47.93 | 41 |
| | | | Astragaloside Ⅳ | Prototype | 128.95 | 41 |
| Rat plasma | Buyang-Huangwu-Tang | ig | 10 g·kg-1 | Astragaloside Ⅰ | Prototype | 55 | 42 |
| | | | Astragaloside Ⅱ | Prototype | 30 | 42 |
| | | | Astragaloside Ⅳ | Prototype | 100 | 42 |
| | | | Formononetin | Prototype | 98 | 42 |
| | | | Ononin | Prototype | 19 | 42 |
| | | | Calycosin | Prototype | 1 231 | 42 |
| | | | Calycosin-7-O-glucoside | Prototype | 18 | 42 |
| | | | Ligustilide | Prototype | 7.8 | 42 |
| | | | Peoniflorin | Prototype | 97 | 42 |
| Human plasma | Guang-Tong-Xiao aerosol | Rectal | 0.165 g·kg-1 | Tetrahydropalmatine | Prototype | 0.55 | 43 |
| | administration | | Berberine hydrochloride | Prototype | 0.31 | 43 |
| Human plasma | Chaihu-Shugan-San | po | 4 g·kg-1 | Meranzin hydrate | Prototype | 199 | 44 |
| | | | Ferulic acid | Prototype | 317 | 44 |
| Human plasma | Wuzhi capsule | po | 6 capsules | Schisandrol A | Prototype | 126.88 | 45 |
| | | | Schisandrol B | Prototype | 65.18 | 45 |
| | | | Schisantherin A | Prototype | 400.27 | 45 |
| | | | Deoxyschizandrin | Prototype | 63.21 | 45 |
| | | | Schizanhenol | Prototype | 31.00 | 45 |
| Human plasma | Yigu capsule | po | 15 capsules | LcariinⅡ | Prototype | 2.76 | 46 |
| Human plasma | Panax Quinquefolius radix | po | 10 g | Ginsenoside Rb1 | Prototype | 19.90 | 47 |
| | | | Compound K | Prototype | 7.32 | 47 |
| Human plasma | Notogenseng radix et | po | 27 g | Ginsenoside Ra3 | Prototype | 4.94 | 48 |
| Rhizoma | | | Ginsenoside Rb2 | Prototype | 39.05 | 48 |
| | | | Ginsenoside Rd | Prototype | 8.98 | 48 |
| | | | Ginsenoside F2 | Prototype | 4.45 | 48 |
| | | | Compound K | Prototype | 154.88 | 48 |
| | | | 20(S)-Protopanoxadiol | Prototype | 4.19 | 48 |
| | | | Notoginsenoside R1 | Prototype | 1.07 | 48 |
| | | | Ginsenoside Rg1 | Prototype | 7.25 | 48 |
| | | | Ginsenoside F1 | Prototype | 3.06 | 48 |
| | | | 20(S)-Protopanaxatriol | Prototype | 23.39 | 48 |
| | | | M16 | Metabolites | 2.56 | 48 |
| | | | M17 | Metabolites | 6.08 | 48 |
| | | | M19 | Metabolites | 8.30 | 48 |
| | | | M20 | Metabolites | 2.69 | 48 |
| | | | M21 | Metabolites | 15.23 | 48 |
| | | | M22 | Metabolites | 4.25 | 48 |
| | | | M4 | Metabolites | 11.66 | 48 |
| | | | M5 | Metabolites | 20.04 | 48 |
| | | | M6 | Metabolites | 7.63 | 48 |
| | | | M7 | Metabolites | 4.73 | 48 |
| | | | M8 | Metabolites | 160.70 | 48 |
| | | | M10 | Metabolites | 20.62 | 48 |
| | | | M11 | Metabolites | 59.52 | 48 |
| | | | M12 | Metabolites | 391.82 | 48 |
| | | | M13 | Metabolites | 10.79 | 48 |
| | | | M14 | Metabolites | 10.15 | 48 |
| | | | M15 | Metabolites | 3.74 | 48 |
| Rat plasma | Baihe-Zhimu-Tang | ig | 10 g·kg-1 | Mangiferin | Prototype | 522.83 | 49 |
| | | | Neo-mangiferin | Prototype | 336.7 | 49 |
| | | | Timosaponin B Ⅱ | Prototype | 434.6 | 49 |
| | | | Timosaponin B Ⅲ | Prototype | 36.4 | 49 |
| | | | Timosaponin A Ⅲ | Prototype | 94.4 | 49 |
| Rat plasma | Zi-Shen pill | ig | 1.94 g·kg-1 | Palmatine | Prototype | 3.8 | 50 |
| | | | Berberine | Prototype | 6.8 | 50 |
| | | | Timosaponin E1 | Prototype | 15.2 | 50 |
| | | | Timosaponin B | Prototype | 35.0 | 50 |
| | | | Timosaponin BⅡ | Prototype | 63.5 | 50 |
| | | | Mangiferin | Prototype | 874.9 | 50 |
| | | | Neo-mangiferin | Prototype | 71.4 | 50 |
| Rat plasma | Kai-Xin San | ig | 9.4 g·kg-1 | Tumulosic acid | Prototype | 5.88 | 51 |
| | | | Ginsenoside Rg1 | Prototype | 8.75 | 51 |
| | | | Ginsenoside Re | Prototype | 69.14 | 51 |
| | | | Polygalaxanthone Ⅲ | Prototype | 65.15 | 51 |
| | | | Ginsenoside Rd | Prototype | 78.91 | 51 |
| | | | Ginsenoside Rb1 | Prototype | 275.9 | 51 |
| Rat plasma | Fuzi-Xiexin decoction | ig | 30 g·kg-1 | Emodin | Prototype | 3.30 | 52 |
| | | | Jatrorrhizine | Prototype | 2.26 | 52 |
| | | | Berberine | Prototype | 5.83 | 52 |
| | | | Palmatine | Prototype | 6.27 | 52 |
| | | | Coptisine | Prototype | 7.78 | 52 |
| | | | Wogonoside | Prototype | 125.73 | 52 |
| | | | Wogonin | Prototype | 33.98 | 52 |
| | | | Aloe-emodin | Prototype | 40.88 | 52 |
| | | | Rhein | Prototype | 2 496.96 | 52 |
| | | | Baicalin | Prototype | 121.03 | 52 |
| Rat plasma | Tang-Ming-Ling pill | ig | 16 g·kg-1 | Chrysin | Prototype | 19.47 | 53 |
| | | | Naringenin | Prototype | 133.8 | 53 |
| | | | Oroxylin A | Prototype | 155.9 | 53 |
| | | | Hesperidin | Prototype | 190.3 | 53 |
| | | | Wogonin | Prototype | 1378 | 53 |
| | | | Berberine | Prototype | 156.2 | 53 |
| | | | Coptisine | Prototype | 16.94 | 53 |
| | | | Jatrorrhizine | Prototype | 7.884 | 53 |
| | | | Palmatine | Prototype | 16.52 | 53 |
| Rat plasma | Jiao-Tai-Wan | ig | 300 mg·kg-1 | Epiberberine | Prototype | 2.86 | 54 |
| | | | Berberine | Prototype | 10.19 | 54 |
| | | | Palmatine | Prototype | 0.85 | 54 |
| | | | Coptisine | Prototype | 4.09 | 54 |
| | | | Jatrorrhizine | Prototype | 1.04 | 54 |
| Rat plasma | Yinchen-Zhufu decoction | ig | 1.5 g·kg-1 | Ononin | Prototype | 0.34 | 55 |
| | | | Liquiritin | Prototype | 11.77 | 55 |
| | | | Ginkgolides Ⅲ | Prototype | 16.07 | 55 |
| | | | Glycyrrhizinic acid | Prototype | 57.90 | 55 |
| | | | Cinnamylic acid | Prototype | 81.33 | 55 |
| | | | Glycyrrhetinic acid | Prototype | 431.17 | 55 |
| Rat plasma | Danggui-Buxue decoction | ig | 20 g·kg-1 | Ononin | Prototype | 6.42 | 56 |
| | | | Butyl lactone | Prototype | 7.35 | 56 |
| | | | Campanulin | Prototype | 9.28 | 56 |
| | | | Astragalin | Prototype | 24.70 | 56 |
| | | | Caffeic acid | Prototype | 34.43 | 56 |
| | | | Ligustilide | Prototype | 34.18 | 56 |
| | | | Ferulic acid | Prototype | 61.03 | 56 |
| Rat plasma | Ke-ke capsule | ig | 0.18 g·kg-1 | Morphine | Prototype | 8.921 | 57 |
| | | | Ephedrine | Prototype | 46.85 | 57 |
| | | | Pseudoephedrine | Prototype | 12.58 | 57 |
| Rat plasma | Chaihu-Shugan-San | ig | 30 g·kg-1 | Meranzin hydrate | Prototype | 58.66 | 58 |
| Rat plasma | Bushen-Huoxue formula | ig | 1.0 g·kg-1 | Formononetin | Prototype | 1.79 | 59 |
| | | | Emodin | Prototype | 8.26 | 59 |
| | | | Tanshinone ⅡA | Prototype | 22.64 | 59 |
| Beagle plasma | Niuhuang-Jiedu pill | ig | 380 mg·kg-1 | Dimethylarsinic acid | Prototype | 57.0 | 60 |
| Rat plasma | Wu-Zhu-Yu decoction | ig | 6.67 g·kg-1 | Evodiamine | Prototype | 9.01 | 61 |
| | | | Rutecarpine | Prototype | 10.13 | 61 |
| | | | Ginsenoside Rd | Prototype | 14.56 | 61 |
| | | | Ginsenoside Rb1 | Prototype | 63.99 | 61 |
| | | | Ginsenoside Re | Prototype | 2.98 | 61 |
| | | | Ginsenoside Rg1 | Prototype | 4.42 | 61 |
| | | | Limonin | Prototype | 630.90 | 61 |
| | | | Dehydroevodiamine | Prototype | 432.40 | 61 |
| Rat plasma | Juglandis Mandshuruicae | ig | 15 g·kg-1 | Quercetin | Prototype | 33.57 | 62 |
| cortex extract | | | Myricetin | Prototype | 54.10 | 62 |
| | | | Naringenin | Prototype | 64.83 | 62 |
| | | | Myricetrin | Prototype | 103.36 | 62 |
| | | | Texifolin | Prototype | 110.24 | 62 |
| | | | Gallic acid | Prototype | 3 443.76 | 62 |
| | | | Quercitrin | Prototype | 111.29 | 62 |
| | | | 5, 8-Dihydroxy-1, 4-naphthoquinone | Prototype | 9 965.75 | 62 |
| Rat plasma | Sheng-Mai formula | ig | 5 mg·kg-1 | Schizandrin | Prototype | 4.51 | 63 |
| | | | Schisandrol B | Prototype | 3.61 | 63 |
| | | | Schisantherin A | Prototype | 3.80 | 63 |
| | | | Schizandrin B | Prototype | 11.46 | 63 |
| | | | Deoxyschizandrin | Prototype | 7.64 | 63 |
| Rat plasma | Schisandra chinensis | ig | 150 mg·g-1 | Schisandrol A | Prototype | 449.0 | 64 |
| | | | Schisandrol B | Prototype | 100 | 64 |
| | | | Gomisin N | Prototype | 240 | 64 |
| | | | Tigloylgomisin H | Prototype | 29.4 | 64 |
| | | | Schizandrin A | Prototype | 96.2 | 64 |
| | | | Schizandrin B | Prototype | 54.9 | 64 |
| | | | Angeloylgomisin H | Prototype | 70.3 | 64 |
| | | | Schisandrin C | Prototype | 68.7 | 64 |
| Rat plasma | Licorice | ig | 5 g·kg-1 | Liquiritin | Prototype | 553.20 | 65 |
| | | | Isoliquiritin | Prototype | 145.80 | 65 |
| | | | Liquiritigenin | Prototype | 68.40 | 65 |
| | | | Isoliquiritigenin | Prototype | 44.70 | 65 |
| | | | Glycyrrhizic acid | Prototype | 1 210.50 | 65 |
| | | | Glycycoumarin | Prototype | 7.40 | 65 |
| | | | Formononetin | Prototype | 13.90 | 65 |
| Rat plasma | Borneol | ig | 20 mg·kg-1 | Borneol | Prototype | 17.864 | 66 |
| | | | Camphor | Prototype | 18.36 | 66 |
| Rat plasma | Suan-Zao-Ren decoction | ig | 8 g·kg-1 | Spinosin | Prototype | 44.20 | 67 |
| | | | Mangiferin | Prototype | 1576 | 67 |
| | | | Ferulic acid | Prototype | 151.5 | 67 |
| Rat plasma | Corydalis Decumbentis | ig | 2.0 g·kg-1 | Tetrahydropalmatine | Prototype | 435.8 | 68 |
| rhizoma | | | Protopine | Prototype | 347.9 | 68 |
| | | | Palmatine | Prototype | 8.53 | 68 |
), ArticleFig(id=1218968462056149044, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=EN, label=null, caption=null, figureFileSmall=null, figureFileBig=null, tableContent=
| Blood concentration /ng·mL-1 | Western medicine chemical | Chinese medicine |
| 10 000 -100 000 | 11 | 0 |
| 5 000 -10 000 | 7 | 6 |
| 1 000 -5 000 | 13 | 14 |
| 100 -1 000 | 25 | 48 |
| 10 -100 | 10 | 89 |
| 0 -10 | 7 | 54 |
), ArticleFig(id=1218968462207144003, tenantId=1146029695717560320, journalId=1189982191388893191, articleId=1218263717259695039, language=CN, label=Table 3, caption=
The distribution of blood concentrations of Western medicines chemicals and Chinese medicines
, figureFileSmall=null, figureFileBig=null, tableContent=
| Blood concentration /ng·mL-1 | Western medicine chemical | Chinese medicine |
| 10 000 -100 000 | 11 | 0 |
| 5 000 -10 000 | 7 | 6 |
| 1 000 -5 000 | 13 | 14 |
| 100 -1 000 | 25 | 48 |
| 10 -100 | 10 | 89 |
| 0 -10 | 7 | 54 |
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