Article(id=1239238141677195831, tenantId=1146029695717560320, journalId=1205117023404326918, issueId=1239238136711139764, articleNumber=null, orderNo=null, doi=10.16155/j.0254-1793.2023-0298, pmid=null, cstr=null, oa=null, hot=null, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=null, receivedDate=null, receivedDateStr=null, revisedDate=1718467200000, revisedDateStr=2024-06-16, acceptedDate=null, acceptedDateStr=null, onlineDate=1773386996907, onlineDateStr=2026-03-13, pubDate=1722355200000, pubDateStr=2024-07-31, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1773386996907, onlineIssueDateStr=2026-03-13, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1773386996907, creator=13701087609, updateTime=1773386996907, updator=13701087609, issue=Issue{id=1239238136711139764, tenantId=1146029695717560320, journalId=1205117023404326918, year='2024', volume='44', issue='7', pageStart='1105', pageEnd='1284', issueExtLink='null', onlineDate='null', pubDate='null', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1773386995723, creator=13701087609, updateTime=1773387118529, updator=13701087609, preIssue=null, nextIssue=null, ext={EN=IssueExt(id=1239238651851370909, tenantId=1146029695717560320, journalId=1205117023404326918, issueId=1239238136711139764, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1239238651851370910, tenantId=1146029695717560320, journalId=1205117023404326918, issueId=1239238136711139764, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null}, startPage=1137, endPage=1144, ext={EN=ArticleExt(id=1239238142360867429, articleId=1239238141677195831, tenantId=1146029695717560320, journalId=1205117023404326918, language=EN, title=Determination of six active components in Tripterygii Radix from different habitats by RP-UPLC-PDA, columnId=1239148838318043851, journalTitle=Chinese Journal of Pharmaceutical Analysis, columnName=Ingredient Analys, runingTitle=null, highlight=null, articleAbstract=
Objective:

To establish the RP-UPLC-PDA method for simultaneous determination of triptolide,triptonide, triptophenolide, wilforine, wilforlide A and celastrol in Tripterygii Radix.

Methods:

Tripterygii Radix were extracted with ethyl acetate and the extracts were dissolved and separated by methanol. The six components were determined by RP-UPLC-PDA method. The chromatographic column was AcquityTM UPLC BEH C18 column (100 mm×2.1 mm, 1.7 μm), the column temperature was 30 ℃, the injection volumn was 2 μL, the flow rate was 0.4 mL·min-1 and the mobile phase was acetonitrile (A)-0.1% formic acid (B).

Results:

The linear relationship of six components was good (0.999 2≤r≤0.999 7) in the concentration ranges. The average recoveries were 99.2%-103.1% and RSDs were 1.2%-2.9%. The contents in 10 batches of Tripterygii Radix from different habitat were determined. The results showed that the contents of Tripterygii Radix in prepared pieces from different producing areas were different. The highest content of triptolide was 140.2 μg·g-1, and the lowest content was 103.2 μg·g-1. The highest content of triptonide was 224.7 μg·g-1 and the lowest content was 112.2 μg·g-1. The highest content of triptophenolide was 306.7 μg·g-1 and the lowest content was 189.6 μg·g-1. The highest and lowest contents of wilforine were 283.2 μg·g-1 and 211.2 μg·g-1. The highest content of wilfhabitat was 31.2 μg·g-1 and the lowest content was 16.8 μg·g-1. The highest content of celastrol was 87.6 μg·g-1, and the lowest content was 52.1 μg·g-1.

Conclusion:

The RP-UPLC-PDA method can simultaneously determine six components in Tripterygii Radix. The method is reliable and stable, which is suitable for quantitative analysis and determination of Tripterygii Radix.

, correspAuthors=Shu-lan SU, authorNote=null, correspAuthorsNote=null, copyrightStatement=null, 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=Guo-liang ZHOU, Shu-lan SU, Er-xing SHANG, Da-wei QIAN, Jin-ao DUAN, Hao YU), CN=ArticleExt(id=1239238143988257482, articleId=1239238141677195831, tenantId=1146029695717560320, journalId=1205117023404326918, language=CN, title=RP-UPLC-PDA法同时测定不同产地雷公藤饮片中6个活性成分*, columnId=1206272756476342615, journalTitle=药物分析杂志, columnName=成分分析, runingTitle=null, highlight=null, articleAbstract=
目的:

建立同时测定雷公藤饮片中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素6个活性成分RP-UPLC-PDA分析方法。

方法:

雷公藤饮片采用乙酸乙酯超声提取,甲醇溶解分离,利用RP-UPLC-PDA法对其6个成分进行定量分析,采用AcquityTM UPLC BEH C18 (100 mm×2.1 mm,1.7 μm)色谱柱,柱温30 ℃,以乙腈(A)-0.1%甲酸水(B)为流动相,进行梯度洗脱,流速0.4 mL·min-1,进样量2 μL。

结果:

6个活性成分在测定浓度范围内线性关系良好(0.999 2≤r≤0.999 7);加样回收试验中平均回收率为99.2%~103.1%,RSD为1.2%~2.9%。对10批不同产地雷公藤饮片进行含量测定,结果显示不同产地饮片中成分含量具有差异性,雷公藤甲素含量最高为140.2 μg·g-1,最低为103.2 μg·g-1;雷公藤内酯酮含量最高为224.7 μg·g-1,最低为112.2 μg·g-1;雷酚内酯含量最高为306.7 μg·g-1,最低为189.6 μg·g-1;雷公藤次碱含量最高为283.2 μg·g-1,最低为211.2 μg·g-1;雷公藤内酯甲含量最高为31.2 μg·g-1,最低为16.8 μg·g-1;雷公藤红素含量最高为87.6 μg·g-1,最低为52.1 μg·g-1

结论:

建立RP-UPLC-PDA法能够同时测定雷公藤饮片中6个成分,方法稳定,结果可靠,适用于雷公藤饮片定量分析测定。

, correspAuthors=宿树兰, authorNote=null, correspAuthorsNote=
** Tel:(025)85811917;E-mail:
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Tel:(025)85811916;E-mail:

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Chongqing: Genetic Toxicology Professional Committee of The Chinese Society of Toxicology, 2016:113, articleTitle=Comparative Study on acute toxicity of extracts from different parts of Tripterygium wilfordii root, refAbstract=null)], funds=[Fund(id=1239238152234258503, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, awardId=81973708, language=CN, fundingSource=* 国家自然科学基金面上项目(81973708), fundOrder=null, country=null), Fund(id=1239238152322338892, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, awardId=KYCX23_2044, language=CN, fundingSource=江苏省研究生科研与实践创新计划项目(KYCX23_2044), fundOrder=null, country=null), Fund(id=1239238152439779408, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, awardId=kyxysc19, language=CN, fundingSource=南京中医药大学康缘学院创新创业项目(kyxysc19), fundOrder=null, country=null), Fund(id=1239238152544637013, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, awardId=KJ2021A0882, language=CN, fundingSource=安徽省教育厅自然科研项目(KJ2021A0882), fundOrder=null, country=null), Fund(id=1239238152657883226, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, awardId=2021zryb22, language=CN, fundingSource=安徽科技学院校级自然项目(2021zryb22), fundOrder=null, country=null)], companyList=[AuthorCompany(id=1239238144776786653, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, xref=1., ext=[AuthorCompanyExt(id=1239238144785175262, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, companyId=1239238144776786653, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, State Administration of Traditional Chinese Medicine Key Laboratory of Chinese Medicinal Resources Recycling Utilization, National and Local Collaborative Engineering Center of Chinese Medicinal Resources Industrialization and Formulae Innovative Medicine, Nanjing University of Chinese Medicine, Nanjing 210023, China), AuthorCompanyExt(id=1239238144789369567, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, companyId=1239238144776786653, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=1.南京中医药大学 江苏省中药资源产业化过程协同创新中心 中药资源产业化与方剂创新药物国家地方联合工程研究中心 国家中医药管理局中药资源循环利用研究重点实验室 江苏省方剂高技术研究重点实验室,南京 210023)]), AuthorCompany(id=1239238145640813287, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, xref=2., ext=[AuthorCompanyExt(id=1239238145649201893, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, companyId=1239238145640813287, language=EN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.College of Life and Health Science, Anhui Science and Technology University, Bengbu 233100, China), AuthorCompanyExt(id=1239238145653396198, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, companyId=1239238145640813287, language=CN, country=null, province=null, city=null, postcode=null, companyName=null, departmentName=null, remark=2.安徽科技学院 生命与健康科学学院,蚌埠 233100)])], figs=[ArticleFig(id=1239238151164710922, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=EN, label=Fig.1, caption=RP-UPLC chromatograms of mixed reference substances(A) and Tripterygii Radix(B), figureFileSmall=pPdKWqxPCmHDCF32HsCdLQ==, figureFileBig=Ij3oGMj8Y5XRnxtF4kwZkQ==, tableContent=null), ArticleFig(id=1239238151227625488, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=CN, label=图1, caption=混合对照品(A)和雷公藤饮片(B)的RP-UPLC图谱

1.雷公藤甲素(triptolide) 2.雷公藤内酯酮(triptonide) 3.雷酚内酯(triptophenolide) 4.雷公藤次碱(wilforine) 5.雷公藤内酯甲(wilforlide) 6.雷公藤红素(celastrol)

, figureFileSmall=pPdKWqxPCmHDCF32HsCdLQ==, figureFileBig=Ij3oGMj8Y5XRnxtF4kwZkQ==, tableContent=null), ArticleFig(id=1239238151454117914, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=EN, label=Tab.1, caption=

Source and identification of Tripterygii Radix

, figureFileSmall=null, figureFileBig=null, tableContent=
样品编号
(sample No.)
样品来源
(sample source)
药材基原
(origin of medicinal material)
产地
(habitat)
批号
(batch number)
S1苏州天灵中药饮片有限公司
(Suzhou Tianling Traditional Chinese Medicine Slicing Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江苏
(Jiangsu)
20220113
S2安徽沪谯医药有限公司
(Anhui Huoqiao Pharmaceutical Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
安徽
(Anhui)
20220319
S3四川省中药饮片有限责任公司
(Sichuan Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
四川
(Anhui)
20210917
S4江西齐仁堂中药饮片有限公司
(Jiangxi Qirentang Herbal Decoction Pieces Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20211018
S5昆明福林堂中药饮片有限公司
(Kunming Fulintang Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
云南
(Yunnan)
20220416
S6广州白云山中药饮片有限公司
(Guangzhou Baiyun Mountain Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20210817
S7湖南松龄堂中药饮片有限公司
(Hunan Songlingtang Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
湖南
(Hunan)
20220413
S8安徽和济堂中药饮片有限公司
(Anhui Hejitang Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
安徽
(Anhui)
20220517
S9江西国都中药饮片有限公司
(Jiangxi Capital Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20211016
S10湖南南国药都中药饮片有限公司
(Hunan Nanguo Medicinal Capital Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
湖南
(Hunan)
20220618
), ArticleFig(id=1239238151546392608, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=CN, label=表1, caption=

雷公藤饮片来源与鉴定

, figureFileSmall=null, figureFileBig=null, tableContent=
样品编号
(sample No.)
样品来源
(sample source)
药材基原
(origin of medicinal material)
产地
(habitat)
批号
(batch number)
S1苏州天灵中药饮片有限公司
(Suzhou Tianling Traditional Chinese Medicine Slicing Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江苏
(Jiangsu)
20220113
S2安徽沪谯医药有限公司
(Anhui Huoqiao Pharmaceutical Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
安徽
(Anhui)
20220319
S3四川省中药饮片有限责任公司
(Sichuan Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
四川
(Anhui)
20210917
S4江西齐仁堂中药饮片有限公司
(Jiangxi Qirentang Herbal Decoction Pieces Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20211018
S5昆明福林堂中药饮片有限公司
(Kunming Fulintang Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
云南
(Yunnan)
20220416
S6广州白云山中药饮片有限公司
(Guangzhou Baiyun Mountain Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20210817
S7湖南松龄堂中药饮片有限公司
(Hunan Songlingtang Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
湖南
(Hunan)
20220413
S8安徽和济堂中药饮片有限公司
(Anhui Hejitang Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
安徽
(Anhui)
20220517
S9江西国都中药饮片有限公司
(Jiangxi Capital Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
江西
(Jiangxi)
20211016
S10湖南南国药都中药饮片有限公司
(Hunan Nanguo Medicinal Capital Traditional Chinese Medicine Slices Co., Ltd.)
雷公藤
(Tripterygium wilfordii Hook. f.)
湖南
(Hunan)
20220618
), ArticleFig(id=1239238151638667302, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=EN, label=Tab.2, caption=

Results of liner relationships for six components

, figureFileSmall=null, figureFileBig=null, tableContent=
成分
(component)
回归方程
(regression equation)
r线性范围
(linear range)/(μg·mL-1)
定量限
(LOQ)/(μg·mL-1)
雷公藤甲素(triptolide)A=2 005C+20 2660.999 711.20~56.000.5
雷公藤内酯酮(triptonide)A=2 667.8C+33 2400.999 611.50~58.500.8
雷酚内酯(triptophenolide)A=5 627.2C+17 3890.999 213.20~66.000.6
雷公藤次碱(wilforine)A=2 295C+22 4710.999 212.70~63.500.5
雷公藤内酯甲(wilforlide)A=689.3C+7 832.90.999 611.60~58.000.9
雷公藤红素(celastrol)A=7 211.9C+52 8920.999 411.70~58.500.8
), ArticleFig(id=1239238151718359083, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=CN, label=表2, caption=

6个成分的线性关系考察

, figureFileSmall=null, figureFileBig=null, tableContent=
成分
(component)
回归方程
(regression equation)
r线性范围
(linear range)/(μg·mL-1)
定量限
(LOQ)/(μg·mL-1)
雷公藤甲素(triptolide)A=2 005C+20 2660.999 711.20~56.000.5
雷公藤内酯酮(triptonide)A=2 667.8C+33 2400.999 611.50~58.500.8
雷酚内酯(triptophenolide)A=5 627.2C+17 3890.999 213.20~66.000.6
雷公藤次碱(wilforine)A=2 295C+22 4710.999 212.70~63.500.5
雷公藤内酯甲(wilforlide)A=689.3C+7 832.90.999 611.60~58.000.9
雷公藤红素(celastrol)A=7 211.9C+52 8920.999 411.70~58.500.8
), ArticleFig(id=1239238151823216688, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=EN, label=Tab.3, caption=

The results of recovery test

, figureFileSmall=null, figureFileBig=null, tableContent=
成分
(component)
样品含量
(content)/ng
加入量
(added)/ng
测定总量
(measured)/ng
回收率
(recovery)/%
平均回收率
(average recovery)/%
RSD/%
雷公藤甲素(triptolide)31.67531.69663.75101.299.91.5
31.67531.69663.96101.9
31.67531.69662.8298.3
31.67531.69663.1899.4
31.67531.69662.8698.4
31.67531.69663.38100.0
雷内酯酮(triptonide)51.32551.29101.9398.799.81.4
51.32551.29103.51101.7
51.32551.29102.5599.9
51.32551.29103.17101.1
51.32551.29102.599.8
51.32551.29101.5297.9
雷酚内酯
(triptophenolide)
71.071.016141.1298.799.81.5
71.071.016143.83102.6
71.071.016141.3499.1
71.071.016140.9898.5
71.071.016142.47100.6
71.071.016141.6999.5
雷公藤次碱(wilforine)67.72567.691134.3498.499.21.3
67.72567.691135.1499.6
67.72567.691136.34101.4
67.72567.691134.0297.9
67.72567.691135.1499.6
67.72567.691134.3198.4
雷公藤内酯甲
(wilforlide)
6.5256.49612.8997.9101.02.9
6.5256.49613.26103.7
6.5256.49612.9899.4
6.5256.49613.03100.1
6.5256.49612.9699.1
6.5256.49613.38105.5
雷公藤红素(celastrol)15.1515.2130.66101.9103.31.2
15.1515.2130.98104.1
15.1515.2130.87103.4
15.1515.2131.08104.7
15.1515.2130.62101.7
15.1515.2130.97104.0
), ArticleFig(id=1239238151907102774, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=CN, label=表3, caption=

加样回收试验及结果(n=6)

, figureFileSmall=null, figureFileBig=null, tableContent=
成分
(component)
样品含量
(content)/ng
加入量
(added)/ng
测定总量
(measured)/ng
回收率
(recovery)/%
平均回收率
(average recovery)/%
RSD/%
雷公藤甲素(triptolide)31.67531.69663.75101.299.91.5
31.67531.69663.96101.9
31.67531.69662.8298.3
31.67531.69663.1899.4
31.67531.69662.8698.4
31.67531.69663.38100.0
雷内酯酮(triptonide)51.32551.29101.9398.799.81.4
51.32551.29103.51101.7
51.32551.29102.5599.9
51.32551.29103.17101.1
51.32551.29102.599.8
51.32551.29101.5297.9
雷酚内酯
(triptophenolide)
71.071.016141.1298.799.81.5
71.071.016143.83102.6
71.071.016141.3499.1
71.071.016140.9898.5
71.071.016142.47100.6
71.071.016141.6999.5
雷公藤次碱(wilforine)67.72567.691134.3498.499.21.3
67.72567.691135.1499.6
67.72567.691136.34101.4
67.72567.691134.0297.9
67.72567.691135.1499.6
67.72567.691134.3198.4
雷公藤内酯甲
(wilforlide)
6.5256.49612.8997.9101.02.9
6.5256.49613.26103.7
6.5256.49612.9899.4
6.5256.49613.03100.1
6.5256.49612.9699.1
6.5256.49613.38105.5
雷公藤红素(celastrol)15.1515.2130.66101.9103.31.2
15.1515.2130.98104.1
15.1515.2130.87103.4
15.1515.2131.08104.7
15.1515.2130.62101.7
15.1515.2130.97104.0
), ArticleFig(id=1239238152011960375, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=EN, label=Tab.4, caption=

Content determination results of different samples of Tripterygii Radix

, figureFileSmall=null, figureFileBig=null, tableContent=
样品编号
(sample No.)
含量(content)/(μg·g-1)
雷公藤甲素
(triptolide)
雷公藤内酯酮
(triptonide)
雷酚内酯
(triptophenolide)
雷公藤次碱
(wilforine)
雷公藤内酯甲
(wilforlide)
雷公藤红素
(celastrol)
S1126.7±2.5205.3±4.3284.0±5.3270.9±5.226.1±0.4860.6±1.2
S2130.3±2.6112.2±2.2306.7±6.1283.2±5.428.9±0.5687.6±1.8
S3105.6±2.1185.4±3.7189.6±3.6231.2±4.418.7±0.3956.3±1.1
S4132.5±2.7224.7±4.6293.8±5.6268.9±5.231.2±0.6383.2±1.7
S5128.4±2.6221.1±4.4272.4±5.5275.6±5.416.8±0.3673.4±1.5
S6103.2±2.1212.3±4.1192.4±3.7211.2±4.127.3±0.5552.1±1.0
S7140.2±2.8118.6±2.3276.3±5.4276.5±5.726.8±0.5478.4±1.6
S8131.6±2.6125.8±2.2298.9±5.3273.7±5.427.0±0.5182.9±1.7
S9125.7±2.5213.2±4.3283.6±5.4279.3±5.628.8±0.5881.6±1.8
S10138.9±2.8194.4±3.3269.8±5.4268.7±5.428.4±0.5779.6±1.7
), ArticleFig(id=1239238152100040765, tenantId=1146029695717560320, journalId=1205117023404326918, articleId=1239238141677195831, language=CN, label=表4, caption=

雷公藤不同饮片含量测定结果(n=3)

, figureFileSmall=null, figureFileBig=null, tableContent=
样品编号
(sample No.)
含量(content)/(μg·g-1)
雷公藤甲素
(triptolide)
雷公藤内酯酮
(triptonide)
雷酚内酯
(triptophenolide)
雷公藤次碱
(wilforine)
雷公藤内酯甲
(wilforlide)
雷公藤红素
(celastrol)
S1126.7±2.5205.3±4.3284.0±5.3270.9±5.226.1±0.4860.6±1.2
S2130.3±2.6112.2±2.2306.7±6.1283.2±5.428.9±0.5687.6±1.8
S3105.6±2.1185.4±3.7189.6±3.6231.2±4.418.7±0.3956.3±1.1
S4132.5±2.7224.7±4.6293.8±5.6268.9±5.231.2±0.6383.2±1.7
S5128.4±2.6221.1±4.4272.4±5.5275.6±5.416.8±0.3673.4±1.5
S6103.2±2.1212.3±4.1192.4±3.7211.2±4.127.3±0.5552.1±1.0
S7140.2±2.8118.6±2.3276.3±5.4276.5±5.726.8±0.5478.4±1.6
S8131.6±2.6125.8±2.2298.9±5.3273.7±5.427.0±0.5182.9±1.7
S9125.7±2.5213.2±4.3283.6±5.4279.3±5.628.8±0.5881.6±1.8
S10138.9±2.8194.4±3.3269.8±5.4268.7±5.428.4±0.5779.6±1.7
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RP-UPLC-PDA法同时测定不同产地雷公藤饮片中6个活性成分*
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周国梁 1, 2 , 宿树兰 1, ** , 尚尔鑫 1 , 钱大玮 1 , 段金廒 1 , 俞浩 2
药物分析杂志 | 成分分析 2024,44(7): 1137-1144
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药物分析杂志 | 成分分析 2024, 44(7): 1137-1144
RP-UPLC-PDA法同时测定不同产地雷公藤饮片中6个活性成分*
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周国梁1, 2 , 宿树兰1, ** , 尚尔鑫1, 钱大玮1, 段金廒1, 俞浩2
作者信息
  • 1.南京中医药大学 江苏省中药资源产业化过程协同创新中心 中药资源产业化与方剂创新药物国家地方联合工程研究中心 国家中医药管理局中药资源循环利用研究重点实验室 江苏省方剂高技术研究重点实验室,南京 210023
  • 2.安徽科技学院 生命与健康科学学院,蚌埠 233100
  • Tel:(025)85811916;E-mail:

通讯作者:

** Tel:(025)85811917;E-mail:
Determination of six active components in Tripterygii Radix from different habitats by RP-UPLC-PDA
Guo-liang ZHOU1, 2 , Shu-lan SU1, ** , Er-xing SHANG1, Da-wei QIAN1, Jin-ao DUAN1, Hao YU2
Affiliations
  • 1.Jiangsu Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, State Administration of Traditional Chinese Medicine Key Laboratory of Chinese Medicinal Resources Recycling Utilization, National and Local Collaborative Engineering Center of Chinese Medicinal Resources Industrialization and Formulae Innovative Medicine, Nanjing University of Chinese Medicine, Nanjing 210023, China
  • 2.College of Life and Health Science, Anhui Science and Technology University, Bengbu 233100, China
出版时间: 2024-07-31 doi: 10.16155/j.0254-1793.2023-0298
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目的:

建立同时测定雷公藤饮片中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素6个活性成分RP-UPLC-PDA分析方法。

方法:

雷公藤饮片采用乙酸乙酯超声提取,甲醇溶解分离,利用RP-UPLC-PDA法对其6个成分进行定量分析,采用AcquityTM UPLC BEH C18 (100 mm×2.1 mm,1.7 μm)色谱柱,柱温30 ℃,以乙腈(A)-0.1%甲酸水(B)为流动相,进行梯度洗脱,流速0.4 mL·min-1,进样量2 μL。

结果:

6个活性成分在测定浓度范围内线性关系良好(0.999 2≤r≤0.999 7);加样回收试验中平均回收率为99.2%~103.1%,RSD为1.2%~2.9%。对10批不同产地雷公藤饮片进行含量测定,结果显示不同产地饮片中成分含量具有差异性,雷公藤甲素含量最高为140.2 μg·g-1,最低为103.2 μg·g-1;雷公藤内酯酮含量最高为224.7 μg·g-1,最低为112.2 μg·g-1;雷酚内酯含量最高为306.7 μg·g-1,最低为189.6 μg·g-1;雷公藤次碱含量最高为283.2 μg·g-1,最低为211.2 μg·g-1;雷公藤内酯甲含量最高为31.2 μg·g-1,最低为16.8 μg·g-1;雷公藤红素含量最高为87.6 μg·g-1,最低为52.1 μg·g-1

结论:

建立RP-UPLC-PDA法能够同时测定雷公藤饮片中6个成分,方法稳定,结果可靠,适用于雷公藤饮片定量分析测定。

雷公藤饮片  /  反相超高效液相色谱-二极管阵列检测法  /  不同产地  /  雷公藤甲素  /  雷公藤内酯酮  /  雷酚内酯  /  雷公藤次碱  /  雷公藤内酯甲  /  雷公藤红素  /  定量分析
Objective:

To establish the RP-UPLC-PDA method for simultaneous determination of triptolide,triptonide, triptophenolide, wilforine, wilforlide A and celastrol in Tripterygii Radix.

Methods:

Tripterygii Radix were extracted with ethyl acetate and the extracts were dissolved and separated by methanol. The six components were determined by RP-UPLC-PDA method. The chromatographic column was AcquityTM UPLC BEH C18 column (100 mm×2.1 mm, 1.7 μm), the column temperature was 30 ℃, the injection volumn was 2 μL, the flow rate was 0.4 mL·min-1 and the mobile phase was acetonitrile (A)-0.1% formic acid (B).

Results:

The linear relationship of six components was good (0.999 2≤r≤0.999 7) in the concentration ranges. The average recoveries were 99.2%-103.1% and RSDs were 1.2%-2.9%. The contents in 10 batches of Tripterygii Radix from different habitat were determined. The results showed that the contents of Tripterygii Radix in prepared pieces from different producing areas were different. The highest content of triptolide was 140.2 μg·g-1, and the lowest content was 103.2 μg·g-1. The highest content of triptonide was 224.7 μg·g-1 and the lowest content was 112.2 μg·g-1. The highest content of triptophenolide was 306.7 μg·g-1 and the lowest content was 189.6 μg·g-1. The highest and lowest contents of wilforine were 283.2 μg·g-1 and 211.2 μg·g-1. The highest content of wilfhabitat was 31.2 μg·g-1 and the lowest content was 16.8 μg·g-1. The highest content of celastrol was 87.6 μg·g-1, and the lowest content was 52.1 μg·g-1.

Conclusion:

The RP-UPLC-PDA method can simultaneously determine six components in Tripterygii Radix. The method is reliable and stable, which is suitable for quantitative analysis and determination of Tripterygii Radix.

Tripterygii Radix  /  RP-UPLC-PDA method  /  different origin  /  triptolide  /  triptonide  /  triptophenolide  /  wilforine  /  wilfhabitat  /  celastrol  /  quantitative analysis
周国梁, 宿树兰, 尚尔鑫, 钱大玮, 段金廒, 俞浩. RP-UPLC-PDA法同时测定不同产地雷公藤饮片中6个活性成分*. 药物分析杂志, 2024 , 44 (7) : 1137 -1144 . DOI: 10.16155/j.0254-1793.2023-0298
Guo-liang ZHOU, Shu-lan SU, Er-xing SHANG, Da-wei QIAN, Jin-ao DUAN, Hao YU. Determination of six active components in Tripterygii Radix from different habitats by RP-UPLC-PDA[J]. Chinese Journal of Pharmaceutical Analysis, 2024 , 44 (7) : 1137 -1144 . DOI: 10.16155/j.0254-1793.2023-0298
雷公藤来源于卫矛科雷公藤属植物雷公藤(Tripterygium wilfordii Hook. f.)的干燥根,其味苦,有大毒,具有活血化瘀、消肿止痛、祛风通络、舒筋活血、杀虫止血等功效[1],在临床上主要用于风湿性关节炎、糖尿病肾病、紫癜性肾炎、系统性红斑狼等疾病的治疗[2]。雷公藤药材中主要活性成分为二萜内酯类、生物碱类及三萜类化合物,但它们同时又是毒性成分[3]。根据2012年国家药品不良反应监测中心报告,自2004年1月到2011年9月,我国共报道雷公藤839例不良反应事件。2004—2019年河南省雷公藤制剂不良反应事件分析表明,有关雷公藤制剂不良反应报道203例[4]。雷公藤饮片虽在临床上应用广泛,但在市场上不同来源、产地、加工及储存方法等差异性,导致饮片质量亦有所不同[5],进而对其安全使用存在严重影响[6]。目前,对于雷公藤药材的质量评价主要集中在对有效成分雷公藤甲素及雷公藤红素的定量分析[7],但单一成分定量分析不能全面反映药材质量,因此,本研究运用RP-UPLC-PDA法对不同产地雷公藤饮片中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素6个成分含量进行测定,以期为临床安全有效用药进一步研究提供实验依据。
Waters 2695型UPLC色谱仪,2998 PDA检测器,Empower色谱工作站(Waters公司);MS-105DU电子天平(十万分之一,梅特勒-托利多仪器有限公司);KQ-500DE数控超声仪(昆山舒美超声仪器有限公司);7310040型CentriVap离心浓缩机(Labconco公司)。
乙腈、甲醇均为色谱纯,其余试剂为分析纯,水为实验室自制超纯水。对照品雷公藤甲素(质量分数≥98%,批号Y29S9H71524)、雷公藤内酯酮(质量分数≥98%,批号P20S10P96113)、雷公藤内酯甲(质量分数≥98%,批号J29HB186695),上海源叶生物科技有限公司;雷酚内酯(质量分数≥98%,批号21040802)、雷公藤次碱(质量分数≥98%,批号21081001)、雷公藤红素(质量分数≥98%,批号20221407),成都普菲德生物有限公司。试验用饮片购买公司、产地及药材来源见表1
分别精密称定雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素的对照品适量,用甲醇配成质量浓度分别为1.12、1.15、1.32、1.27、1.16、1.17 mg·mL-1的对照品储备液。分别精密吸取上述对照品储备液各1.0 mL,置于同一10 mL量瓶中,加甲醇至刻度,摇匀,作为混合对照品溶液。
将不同饮片样品在60 ℃烘箱中干燥后,粉碎过10目筛网备用。精密称取各组药材样品粉末0.5 g,分别放置在带塞的三角瓶中,加入乙酸乙酯50 mL后超声(500 W,50 kHz) 3 h,4 000 r·min-1离心10 min后吸取上清液,置离心浓缩机上挥去乙酸乙酯,精密加入甲醇50 mL,超声(500 W,50 kHz) 1 h后浓缩至0.5 mL,吸取溶液过0.22 μm有机微孔滤膜,即得[8]
采用AcquityTM UPLC BEH C18(100 mm×2.1 mm,1.7 μm)色谱柱,柱温30 ℃,流速0.4 mL·mL-1,以乙腈(A)-0.1%甲酸水(B)为流动相,进行梯度洗脱(0~3 min,28%A;3~4 min,28%A→40%A;4~7 min,40%A;7~9 min,40%A→45%A;9~14 min,45%A→60%A;14~18 min,60%A→80%A;18~20 min,80%A→28%A),检测波长240 nm,进样2 μL。
取混合对照品溶液,按照“2.2”项条件连续进样6次,记录色谱图,依法测定峰面积。6次进样的雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素峰面积的RSD分别为0.23%、0.42%、0.25%、0.21%、0.43%和0.18%,理论塔板数均≥103,表明系统适用性试验符合要求。
取混合对照品溶液、供试品溶液各2 μL,分别注入UPLC色谱仪,记录色谱图,见图1。由图1可知,在建立的色谱条件下,雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素的保留时间分别为2.734、5.796、9.380、10.604、12.140、15.687 min,各成分峰与相邻峰之间分离度均≥1.5,表明各峰之间无相互干扰,符合定量分析要求,待测成分和其他成分达到了完全分离。
精密吸取混合对照品溶液0.5、1.0、1.5、2.0、2.5 mL,分别置5.0 mL量瓶中,以甲醇定容,分别按照“2.2”项条件进样分析,记录色谱图并依法测定各峰面积,以峰面积积分值(A)为纵坐标,进样浓度(C,μg·mL-1)为横坐标,得到回归方程、相关系数及线性范围,同时将混合对照品溶液进行梯度稀释,以信噪比≥10时测得的浓度为待测成分定量限,结果见表2
精密吸取各对照品储备液适量,按照“2.2”项条件连续进样6次进行分析,记录色谱图并依法测定雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素色谱峰面积,计算得RSD分别为2.3%、2.7%、3.0%、2.7%、2.5%、2.1%,表明仪器精密度良好。
取S1号样品的供试品溶液,分别于制备后每隔4 h按照“2.2”项条件进样分析1次,共6次,记录色谱图并依法测定各峰面积,结果表明雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素峰面积的RSD分别为2.1%、2.8%、1.7%、1.1%、2.0%、1.8%,表明供试品溶液在24 h内稳定。
按“2.1.2”项下方法制备6份S1号样品的供试品溶液,按“2.2”项下色谱条件进样分析,记录色谱图并依法测定各峰面积,并计算雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素的平均含量(n=6)分别为126.7、205.3、284.0、270.9、26.1、60.6 mg·g-1,RSD[9]分别为1.2%、1.4%、2.7%、1.7%、1.9%、1.4%。表明方法重复性良好。
精密称定6份S1号样品粉末0.25 g。根据已测知的含量,分别精密吸取对照品储备液雷公藤甲素283 μL、雷公藤内酯酮446 μL、雷酚内酯538 μL、雷公藤次碱533 μL、雷公藤内酯甲56 μL、雷公藤红素130 μL,混合均匀后加入上述的样品粉末中,按“2.1.2”项下方法制备供试溶液,按“2.2”项下色谱条件进样测定6个成分的量,每个溶液重复进样测定6次,计算加样回收率及RSD[10],结果见表3
取10批不同产地样品,每批样品分别按照“2.1.2”项方法平行制备3份供试品溶液,按照“2.2”项条件注入UPLC色谱仪中进行分析,记录色谱图并依法测定各峰面积,根据外标法计算样品中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素含量,结果见表4
本试验过程中考察了回流提取法及超声提取法对雷公藤中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素6个成分含量测定的影响[11],结果发现回流提取法能够提高测定结果,但是提取溶液比较浑浊,后期需要再离心分离,严重影响了对样品中成分的精确定量分析,故本试验采用超声提取法。
本试验过程中曾经采用甲醇、乙醇、正丁醇、乙酸乙酯、三氯甲烷对雷公藤中的6个成分提取率进行比较,结果发现甲醇、乙醇、正丁醇提取成分含量均较低,三氯甲烷对雷公藤次碱提取率较高,但是对于其余成分提取率相对较低,因此综合考虑,本试验采用乙酸乙酯作为提取溶剂。
本试验中分别测定了雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素的最大吸收波长,结果分别为220、223、230、270、210、430 nm,综合考虑各化合物最大吸收波长以及样品中各成分含量差异性关系,最终选择240 nm为测定波长。
本试验分别考察了乙腈-水、乙腈-0.1%磷酸水溶液、乙腈-0.3%磷酸水溶液、甲醇-水、甲醇-0.1%甲酸水溶液、甲醇-0.3%甲酸水溶液等多种流动相体系梯度洗脱溶剂,结果表明乙腈-0.1%甲酸水溶液及乙腈-0.3%甲酸水溶液梯度洗脱效果均较好,色谱图基线稳定,6个成分均达到了完全分离,但考虑到流动相强酸性对分离柱的影响,因此本实验最终采用乙腈-0.1%甲酸水溶液作为梯度洗脱溶剂。
雷公藤全植物毒性较强,尤其在肝毒性方面最为显著[12],并且毒性在植物不同部位分布具有差异性[13-14],依照中药传统临床使用要求,雷公藤主要为根部入药,根据2018年至2022年安徽、江苏、湖北、湖南等地方《中药材质量标准》及《中药饮片炮制加工标准》,雷公藤饮片加工中需要把根部除去皮质部后,再切制成厚片作为饮片使用。现代药理分析已经证明[15],分别采用雷公藤根皮质部、全根及根木质部水煎液对小鼠腹腔注射,全根水提取物LD50为1.3 g·kg-1 (相当于24.6 g生药),雷公藤根木质部水提取物LD50为1.9 g·kg-1(相当于37.0 g生药),雷公藤根皮质部水提取物LD50为0.7 g·kg-1(相当于12.5 g生药),表明根皮质部毒性较强,因此临床采用雷公藤木质部作为药用部位,便于控制剂量,同时提高了临床使用的安全性,本实验中分析的饮片均为除去根皮质部后的木质部饮片。
本试验建立了RP-UPLC-PDA法测定雷公藤饮片中6个成分含量,并对10批不同产地样品进行含量测定,结果表明不同厂家、不同产地饮片中成分含量具有差异性,雷公藤甲素含量最高为140.2 μg·g-1,最低为103.2 μg·g-1;雷公藤内酯酮含量最高为224.7 μg·g-1,最低为112.2 μg·g-1;雷酚内酯含量最高为306.7 μg·g-1,最低为189.6 μg·g-1;雷公藤次碱含量最高为283.2 μg·g-1,最低为211.2 μg·g-1;雷公藤内酯甲含量最高为31.2 μg·g-1,最低为16.8 μg·g-1;雷公藤红素含量最高为87.6 μg·g-1,最低为52.1 μg·g-1
本检测条件下测定成分稳定,各成分含量范围波动较小,检测方法方便可行,准确可靠,可有效用于雷公藤饮片中雷公藤甲素、雷公藤内酯酮、雷酚内酯、雷公藤次碱、雷公藤内酯甲、雷公藤红素6个成分的质量控制。
  • * 国家自然科学基金面上项目(81973708)
  • 江苏省研究生科研与实践创新计划项目(KYCX23_2044)
  • 南京中医药大学康缘学院创新创业项目(kyxysc19)
  • 安徽省教育厅自然科研项目(KJ2021A0882)
  • 安徽科技学院校级自然项目(2021zryb22)
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2024年第44卷第7期
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doi: 10.16155/j.0254-1793.2023-0298
  • 首发时间:2026-03-13
  • 出版时间:2024-07-31
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  • 修回日期:2024-06-16
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* 国家自然科学基金面上项目(81973708)
江苏省研究生科研与实践创新计划项目(KYCX23_2044)
南京中医药大学康缘学院创新创业项目(kyxysc19)
安徽省教育厅自然科研项目(KJ2021A0882)
安徽科技学院校级自然项目(2021zryb22)
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    1.南京中医药大学 江苏省中药资源产业化过程协同创新中心 中药资源产业化与方剂创新药物国家地方联合工程研究中心 国家中医药管理局中药资源循环利用研究重点实验室 江苏省方剂高技术研究重点实验室,南京 210023
    2.安徽科技学院 生命与健康科学学院,蚌埠 233100

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2种不同金属材料的力学参数

Family
属数
Number of
genus
种数
Number of
species
占总种数比例
Percentage of
total species (%)

Genus
种数
Number of
species
占总种数比例
Percentage of total
species (%)
鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
小菇属 Mycena 11 5.26
光柄菇属 Pluteus 5 2.39
红菇属 Russula 17 8.13
栓菌属 Trametes 5 2.39
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