Article(id=1304388129654329486, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388047747969563, articleNumber=null, orderNo=null, doi=10.7501/j.issn.0253-2670.2026.10.009, pmid=null, cstr=null, oa=null, hot=0, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=null, receivedDate=1765814400000, receivedDateStr=2025-12-16, revisedDate=null, revisedDateStr=null, acceptedDate=null, acceptedDateStr=null, onlineDate=1788919964469, onlineDateStr=2026-09-09, pubDate=null, pubDateStr=null, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1788919964469, onlineIssueDateStr=2026-09-09, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1788919964469, creator=13701087609, updateTime=1788919964469, updator=13701087609, issue=Issue{id=1304388047747969563, tenantId=1146029695717560320, journalId=1302319053441957962, year='2026', volume='57', issue='10', pageStart='3685', pageEnd='4088', issueExtLink='null', onlineDate='null', pubDate='1779897600000', pubDateStr='2026-05-28', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1788919944940, creator='13701087609', updateTime=1788923403989, updator='13701087609', preIssue=null, nextIssue=null, articleTotal=null, ext={EN=IssueExt(id=1304402556332037104, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388047747969563, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1304402556332037105, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388047747969563, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null, downloadFileDto=null}, startPage=3764, endPage=3777, ext={EN=ArticleExt(id=1304388133525672081, articleId=1304388129654329486, tenantId=1146029695717560320, journalId=1302319053441957962, language=EN, title=Optimization of extraction process for classical prescription Xuefu Zhuyu Decoction based on standard relation and entropy weight-TOPSIS method, columnId=null, journalTitle=Chinese Traditional and Herbal Drugs, columnName=null, runingTitle=null, highlight=null, articleAbstract=Objective To select the optimal alcohol extraction process for the classic prescription Xuefu Zhuyu Decoction (XZD, 血府逐瘀汤), enabling the retention of small-molecule substances in traditional aqueous extracts, thereby providing experimental basis for the development of transdermal formulations. Methods The contents of 12 active components (adenosine, catalpol, amygdalin, hydroxysafflor yellow A, paeoniflorin, ferulic acid, liquiritin, narirutin, naringin, hesperidin, neohesperidin, glycyrrhizic acid) in XZD, the extract yield, and the fingerprint similarity were used as critical quality attributes (CQAs). Ethanol concentration, extraction time, and solvent ratio were selected as critical process parameters (CPPs), and experiments were conducted using a Box-Behnken design-response surface methodology (BBD-RSM). The benchmark correlation degree of each experimental sample index was calculated, and the weights of each CQA were determined using the entropy weight method to compute a comprehensive score. The TOPSIS model was applied to calculate the relative closeness of each sample to the benchmark sample and rank them, with the optimal alcohol extraction process screened based on the comprehensive score. Additionally, ultra-performance liquid chromatography coupled with quadrupole time-of-flight tandem mass spectrometry (UPLC-Q-TOF-MS/MS) was used to description the chemical components of the benchmark sample and the optimal alcohol extraction process sample, further verifying retention effect of small-molecule components.. Results Analysis using the entropy weight-TOPSIS model determined the optimal alcohol extraction process for XZD as follows: ten times the amount of 60% ethanol, with each extraction lastin 3 h. The average comprehensive score of three validation samples reached 0.501, with RSD of 0.75%, which met the requirements and confirmed that the process was stable and the method was applicable. Meanwhile, UPLC-Q-TOF-MS/MS analysis showed that the main chemical composition of the optimal process sample were similar to those of the benchmark sample. Conclusion The comprehensive screening strategy based on the benchmark correlation degree and entropy weight-TOPSIS model is feasible and effective. The obtained XZD alcohol extraction process parameters are robust and reliable, and the small molecule substances of the benchmark decoction can be effectively retained. The chemical substance basis is similar to that of the benchmark decoction. This study can provide a reference for the research and development of XZD transdermal formulations., authors=HUANG Yan, LUO Fei, HE Zhoufeng, FU Wenrui, HUANG Xueyan, PENG Qian, GUO Yinyin, WEI Shuchang, authorsList=HUANG Yan, LUO Fei, HE Zhoufeng, FU Wenrui, HUANG Xueyan, PENG Qian, GUO Yinyin, WEI Shuchang, authorCompany=null, correspAuthors=null, 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, fund=null), CN=ArticleExt(id=1304388129989873808, articleId=1304388129654329486, tenantId=1146029695717560320, journalId=1302319053441957962, language=CN, title=基于基准关联度和熵权-优劣解距离法综合评价优选经典名方血府逐瘀汤提取工艺, columnId=1304140189132149234, journalTitle=中草药, columnName=药剂与工艺, runingTitle=null, highlight=null, articleAbstract=目的 筛选经典名方血府逐瘀汤(Xuefu Zhuyu Decoction,XZD)的最优醇提工艺,使其能保留传统水提样品中的小分子物质,为透皮制剂开发提供实验依据。方法 以XZD中12种活性成分(腺苷、梓醇、苦杏仁苷、羟基红花黄色素A、芍药苷、阿魏酸、甘草苷、芸香柚皮苷、柚皮苷、橙皮苷、新橙皮苷、甘草酸)含量、出膏率及指纹图谱相似度作为关键质量属性(critical quality attributes,CQAs);以乙醇体积分数、提取时间、溶剂倍数作为关键工艺参数(critical process parameters,CPPs),采用Box-Behnken设计-响应面法(Box-Behnken design-response surface methodology,BBD-RSM)开展试验。计算各试验样品指标的基准关联度,通过熵权法确定各CQAs的权重并计算综合评分;运用TOPSIS模型计算各XZD样品与其基准样品的相对接近度并排序,结合综合评分筛选最佳醇提工艺。此外,采用超高效液相色谱-四级杆-飞行时间质谱技术(UPLC-Q-TOF-MS/MS)对XZD基准样品与其最优醇提工艺样品的化学成分进行表征,进一步验证小分子物质的保留效果。结果 经熵权-TOPSIS模型分析,确定XZD最优醇提工艺为10倍量60%乙醇,提取3 h。3批验证样品的综合评分均值达0.501,RSD为0.75%,符合要求,证实该工艺稳定、方法适用。同时,UPLC-Q-TOF-MS/MS分析表明,XZD最优工艺样品与其基准样品的主要化学成分组成相似。结论 基于基准关联度与熵权-TOPSIS模型的综合筛选策略可行有效,所得XZD醇提工艺参数稳健可靠,能有效保留基准煎液的小分子物质,化学物质基础与基准煎液相似,可为XZD透皮制剂研发提供参考。, authors=黄燕1,2 , 罗飞3 , 何洲峰3 , 付文芮1 , 黄雪艳1 , 彭倩1,2 , 果茵茵2 , 魏舒畅1 , authorsList=黄燕, 罗飞, 何洲峰, 付文芮, 黄雪艳, 彭倩, 果茵茵, 魏舒畅, authorCompany=1 甘肃中医药大学, 甘肃省中药制药工艺工程研究中心, 陇药产业创新研究院, 甘肃兰州 730000; 2 兰州大学第二医院(第二临床医学院), 甘肃兰州 730030; 3 兰州大学第二临床医学院, 甘肃兰州 730000, correspAuthors=魏舒畅, authorNote=黄燕: 黄燕(1986—),博士研究生,副主任中药师,研究方向为中药制剂工艺研究。E-mail:553698621@qq.com, correspAuthorsNote=null, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=UeRAFRnTj6q8YkMp+gbrUw==, pdfFileSize=1594887, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=null, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=null, mapNumber=null, fund=国家自然科学基金项目 (82060721); 甘肃省自然科学基金项目 (23JRRA1623); 甘肃省自然科学基金项目 (23JRRA1622))}, authors=null, keywords=[Keyword(id=1304401277018993014, tenantId=1146029695717560320, journalId=1302319053441957962, articleId=1304388129654329486, language=CN, orderNo=1, keyword=血府逐瘀汤), Keyword(id=1304401277123850615, tenantId=1146029695717560320, journalId=1302319053441957962, 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journalTitleEn=Chinese Traditional and Herbal Drugs, journalPhotoCn=cGpSKCP11AF8PAOcTXYWfg==, journalPhotoEn=Xw//kxUC3ON4eHxev0QLhQ==, journalFirstLetter=Z, journalRecommend=null, journalNew=null, journalCollection=null, jcrJf=null, cjcrJf=null, jcrJfStr=null, cjcrJfStr=null, submissionFirstDecision=null, sciSubjectClassification=null, casSubjectClassification=null, citeScore=null, totalCitationFrequency=null, icpCode=null, psCode=null, advertisingLicenseCode=null, copyrightInformation=null, country=null, option=, provinceCode=null, provinceName=null, collectFlag=false, interPubPlatform=, interPubPlatformUrl=null), detailUrlCn=https://castjournals.cast.org.cn/joweb/zcy/CN/10.7501/j.issn.0253-2670.2026.10.009, detailUrlEn=https://castjournals.cast.org.cn/joweb/zcy/EN/10.7501/j.issn.0253-2670.2026.10.009, pdfUrlCn=https://castjournals.cast.org.cn/joweb/zcy/CN/PDF/10.7501/j.issn.0253-2670.2026.10.009, pdfUrlEn=https://castjournals.cast.org.cn/joweb/zcy/EN/PDF/10.7501/j.issn.0253-2670.2026.10.009, aliStartDate=null, aliEndDate=null, collectionFlag=false, citedCount=null, citedUrl=null, previewStatus=0, delFlag=0, hasFullText=0, orderTime=1788919964469, fullTextJson=null, articleText=null, reference=傅春燕, 刘永辉, 曾立, 等. 血府逐瘀汤化学成分、药理作用及临床应用研究进展[J]. 亚太传统医药, 2024, 20(5): 232-237. Yi T, Gao P, Hou M, et al . The mechanisms underlying the actions of Xuefu Zhuyu Decoction pretreatment against neurological deficits after ischemic stroke in mice: The mediation of glymphatic function by aquaporin-4 and its anchoring proteins [J]. Front Pharmacol , 2022, 13: 1053253. 李静, 郭志华, 刘建和, 等. 基于代谢组学探讨血府逐瘀汤对冠心病心血瘀阻证模型大鼠的疗效机制[J]. 中国中药杂志, 2023, 48(20): 5623-5631. Fu C Y, Wu Q, Zhang Z M, et al . UPLC-ESI-IT-TOF-MS metabolomic study of the therapeutic effect of Xuefu Zhuyu Decoction on rats with traumatic brain injury [J]. J Ethnopharmacol , 2019, 245: 112149. Leem J, Jo J, Kwon C Y, et al . Herbal medicine (Hyeolbuchukeo-Tang or Xuefu Zhuyu Decoction) for treating primary dysmenorrhea: A systematic review and meta-analysis of randomized controlled trials [J]. Medicine , 2019, 98(5): e14170. 侯小红, 苗芙蕊, 范郁山. 痛经相关病因病机述要[J]. 江西中医药, 2014, 45(4): 7-8. Karout S, Soubra L, Rahme D, et al . Prevalence, risk factors, and management practices of primary dysmenorrhea among young females [J]. BMC Women ’s Health , 2021, 21(1): 392. 周爱鲜, 廖正根, 勒孚仕, 等. 基于指纹图谱与多指标成分定量结合化学模式识别分析的小儿热速清颗粒质量评价研究[J]. 药物分析杂志, 2024, 44(6): 1062-1073. 代云桃, 靳如娜, 吴治丽, 等. 基于标准汤剂(物质基准)的经典名方制备工艺和质量标准研究[J]. 中国实验方剂学杂志, 2020, 26(2): 164-174. 张敏, 黄雪艳, 曾庆祥, 等. 基于基准关联度和AHP-熵权法的二仙汤醇提工艺研究[J]. 中国药学杂志, 2025, 60(8): 801-808. 代珊, 李帅, 张爱军, 等. 基于基准关联度和AHP-熵权法综合评价经典名方小续命汤古今提取工艺[J]. 中草药, 2022, 53(3): 726-734. 郑文烈, 张强, 冯飞, 等. 基于基准关联度和熵权-优劣解距离法综合评价优选经典名方羌活胜湿汤提取工艺[J]. 中草药, 2024, 55(10): 3310-3320. 潘龙祥, 高喜梅, 乔萍, 等. 基于UPLC-Q-TOF-MS/ MS技术结合化学模式识别分析温胆汤不同工艺的差异性成分[J]. 中草药, 2025, 56(8): 2811-2828. 林景, 莫俊俏, 宋艳, 等. 基于网络药理学和实验验证探讨血府逐瘀汤治疗特发性肺纤维化的作用机制[J]. 中成药, 2024, 46(2): 658-665. 马梦鸽, 杨莎, 唐志书, 等. 基于HPLC指纹图谱与一测多评法联用的血府逐瘀片质量控制研究[J]. 中草药, 2021, 52(22): 6856-6863. 牛成琳, 殷洪梅, 宋明明, 等. 基于改进AHP-熵权-关联度及化学计量学的经典名方一贯煎提取工艺研究[J]. 中草药, 2024, 55(4): 1178-1188. 张荣华, 靳梓微, 邱智东, 等. 基于基准关联度和AHP-熵权法优化经典名方达原饮的提取工艺[J]. 时珍国医国药, 2024, 35(3): 612-615. 何宝峰, 马新换, 徐志伟, 等. 基于改进熵权法联合TOPSIS模型和BPNN建模优化甘草糖类成分提取工艺[J]. 中国药学杂志, 2023, 58(8): 675-682. 李雨昕, 邢娜, 白浩东, 等. 基于熵权法的灰色关联法-TOPSIS法对不同产地三七及其炮制品质量的评价研究[J]. 中草药, 2023, 54(4): 1252-1259. 中国药典[S]. 一部. 2025: 894. 柴美伶. 血府逐瘀胶囊对气滞血瘀证原发性痛经子宫动脉血流阻力的影响[D]. 沈阳: 辽宁中医药大学, 2022. 李思彤. 血府逐瘀胶囊治疗气滞血瘀证原发性痛经的临床观察及对子宫动脉血流速度的影响[D]. 沈阳: 辽宁中医药大学, 2022. 齐会英, 许晓英, 薛娟娣, 等. 消肿止痛贴中医贴敷疗法治疗原发性痛经的临床疗效观察[J]. 中医临床研究, 2022, 14(34): 130-134. 李定宣, 王富春. 中医外治法治疗气滞血瘀型痛经研究概况[J]. 湖北中医杂志, 2022, 44(11): 63-64. 杨萍, 黄清杰, 李喜香, 等. 橙皮苷药理作用及机制的研究进展[J]. 中草药, 2023, 54(21): 7222-7231. 堵滢, 郭明鑫, 吴霞, 等. 阿魏属植物化学成分、药理活性研究进展及其质量标志物预测[J/OL]. 天然产物研究与开发, (2025-05-19) [2026-01-05]. https://link. cnki.net/urlid/51.1335.Q.20250519.1018.004. Zhang L, Jiang Z Z, Yang J, et al . Chemical material basis study of Xuefu Zhuyu Decoction by ultra-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry [J]. J Food Drug Anal , 2015, 23(4): 811-820.)
中草药
|药剂与工艺
2026
, 57
(10) :
3764
-3777
基于基准关联度和熵权-优劣解距离法综合评价优选经典名方血府逐瘀汤提取工艺
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黄燕1,2 , 罗飞3 , 何洲峰3 , 付文芮1 , 黄雪艳1 , 彭倩1,2 , 果茵茵2 , 魏舒畅1
作者信息
1 甘肃中医药大学, 甘肃省中药制药工艺工程研究中心, 陇药产业创新研究院, 甘肃兰州 730000; 2 兰州大学第二医院(第二临床医学院), 甘肃兰州 730030; 3 兰州大学第二临床医学院, 甘肃兰州 730000
通讯作者:
魏舒畅
作者简介:
黄燕: 黄燕(1986—),博士研究生,副主任中药师,研究方向为中药制剂工艺研究。E-mail:553698621@qq.com
Optimization of extraction process for classical prescription Xuefu Zhuyu Decoction based on standard relation and entropy weight-TOPSIS method
HUANG Yan, LUO Fei, HE Zhoufeng, FU Wenrui, HUANG Xueyan, PENG Qian, GUO Yinyin, WEI Shuchang
Affiliations
doi: 10.7501/j.issn.0253-2670.2026.10.009
文章导航
目的 筛选经典名方血府逐瘀汤(Xuefu Zhuyu Decoction,XZD)的最优醇提工艺,使其能保留传统水提样品中的小分子物质,为透皮制剂开发提供实验依据。方法 以XZD中12种活性成分(腺苷、梓醇、苦杏仁苷、羟基红花黄色素A、芍药苷、阿魏酸、甘草苷、芸香柚皮苷、柚皮苷、橙皮苷、新橙皮苷、甘草酸)含量、出膏率及指纹图谱相似度作为关键质量属性(critical quality attributes,CQAs);以乙醇体积分数、提取时间、溶剂倍数作为关键工艺参数(critical process parameters,CPPs),采用Box-Behnken设计-响应面法(Box-Behnken design-response surface methodology,BBD-RSM)开展试验。计算各试验样品指标的基准关联度,通过熵权法确定各CQAs的权重并计算综合评分;运用TOPSIS模型计算各XZD样品与其基准样品的相对接近度并排序,结合综合评分筛选最佳醇提工艺。此外,采用超高效液相色谱-四级杆-飞行时间质谱技术(UPLC-Q-TOF-MS/MS)对XZD基准样品与其最优醇提工艺样品的化学成分进行表征,进一步验证小分子物质的保留效果。结果 经熵权-TOPSIS模型分析,确定XZD最优醇提工艺为10倍量60%乙醇,提取3 h。3批验证样品的综合评分均值达0.501,RSD为0.75%,符合要求,证实该工艺稳定、方法适用。同时,UPLC-Q-TOF-MS/MS分析表明,XZD最优工艺样品与其基准样品的主要化学成分组成相似。结论 基于基准关联度与熵权-TOPSIS模型的综合筛选策略可行有效,所得XZD醇提工艺参数稳健可靠,能有效保留基准煎液的小分子物质,化学物质基础与基准煎液相似,可为XZD透皮制剂研发提供参考。
血府逐瘀汤
/
质量源于设计
/
基准关联度
/
熵权法-TOPSIS模型
/
指纹图谱
/
Box-Behnken设计-响应面法
/
UPLC-Q-TOF-MS/MS
Objective To select the optimal alcohol extraction process for the classic prescription Xuefu Zhuyu Decoction (XZD, 血府逐瘀汤), enabling the retention of small-molecule substances in traditional aqueous extracts, thereby providing experimental basis for the development of transdermal formulations. Methods The contents of 12 active components (adenosine, catalpol, amygdalin, hydroxysafflor yellow A, paeoniflorin, ferulic acid, liquiritin, narirutin, naringin, hesperidin, neohesperidin, glycyrrhizic acid) in XZD, the extract yield, and the fingerprint similarity were used as critical quality attributes (CQAs). Ethanol concentration, extraction time, and solvent ratio were selected as critical process parameters (CPPs), and experiments were conducted using a Box-Behnken design-response surface methodology (BBD-RSM). The benchmark correlation degree of each experimental sample index was calculated, and the weights of each CQA were determined using the entropy weight method to compute a comprehensive score. The TOPSIS model was applied to calculate the relative closeness of each sample to the benchmark sample and rank them, with the optimal alcohol extraction process screened based on the comprehensive score. Additionally, ultra-performance liquid chromatography coupled with quadrupole time-of-flight tandem mass spectrometry (UPLC-Q-TOF-MS/MS) was used to description the chemical components of the benchmark sample and the optimal alcohol extraction process sample, further verifying retention effect of small-molecule components.. Results Analysis using the entropy weight-TOPSIS model determined the optimal alcohol extraction process for XZD as follows: ten times the amount of 60% ethanol, with each extraction lastin 3 h. The average comprehensive score of three validation samples reached 0.501, with RSD of 0.75%, which met the requirements and confirmed that the process was stable and the method was applicable. Meanwhile, UPLC-Q-TOF-MS/MS analysis showed that the main chemical composition of the optimal process sample were similar to those of the benchmark sample. Conclusion The comprehensive screening strategy based on the benchmark correlation degree and entropy weight-TOPSIS model is feasible and effective. The obtained XZD alcohol extraction process parameters are robust and reliable, and the small molecule substances of the benchmark decoction can be effectively retained. The chemical substance basis is similar to that of the benchmark decoction. This study can provide a reference for the research and development of XZD transdermal formulations.
Xuefu Zhuyu Decoction
/
quality by design
/
standard relation
/
entropy weight-TOPSIS model
/
fingerprint
/
Box-Behnken design response surface methodology
/
UPLC-Q-TOF-MS/MS
黄燕, 罗飞, 何洲峰, 付文芮, 黄雪艳, 彭倩, 果茵茵, 魏舒畅.
基于基准关联度和熵权-优劣解距离法综合评价优选经典名方血府逐瘀汤提取工艺.
中草药,
2026
, 57
(10)
: 3764
-3777
.
DOI: 10.7501/j.issn.0253-2670.2026.10.009
HUANG Yan, LUO Fei, HE Zhoufeng, FU Wenrui, HUANG Xueyan, PENG Qian, GUO Yinyin, WEI Shuchang.
Optimization of extraction process for classical prescription Xuefu Zhuyu Decoction based on standard relation and entropy weight-TOPSIS method[J].
Chinese Traditional and Herbal Drugs ,
2026
, 57
(10)
: 3764
-3777
.
DOI: 10.7501/j.issn.0253-2670.2026.10.009
参考文献
引证文献
傅春燕, 刘永辉, 曾立, 等. 血府逐瘀汤化学成分、药理作用及临床应用研究进展[J]. 亚太传统医药, 2024, 20(5): 232-237. Yi T, Gao P, Hou M, et al . The mechanisms underlying the actions of Xuefu Zhuyu Decoction pretreatment against neurological deficits after ischemic stroke in mice: The mediation of glymphatic function by aquaporin-4 and its anchoring proteins [J]. Front Pharmacol , 2022, 13: 1053253. 李静, 郭志华, 刘建和, 等. 基于代谢组学探讨血府逐瘀汤对冠心病心血瘀阻证模型大鼠的疗效机制[J]. 中国中药杂志, 2023, 48(20): 5623-5631. Fu C Y, Wu Q, Zhang Z M, et al . UPLC-ESI-IT-TOF-MS metabolomic study of the therapeutic effect of Xuefu Zhuyu Decoction on rats with traumatic brain injury [J]. J Ethnopharmacol , 2019, 245: 112149. Leem J, Jo J, Kwon C Y, et al . Herbal medicine (Hyeolbuchukeo-Tang or Xuefu Zhuyu Decoction) for treating primary dysmenorrhea: A systematic review and meta-analysis of randomized controlled trials [J]. Medicine , 2019, 98(5): e14170. 侯小红, 苗芙蕊, 范郁山. 痛经相关病因病机述要[J]. 江西中医药, 2014, 45(4): 7-8. Karout S, Soubra L, Rahme D, et al . Prevalence, risk factors, and management practices of primary dysmenorrhea among young females [J]. BMC Women ’s Health , 2021, 21(1): 392. 周爱鲜, 廖正根, 勒孚仕, 等. 基于指纹图谱与多指标成分定量结合化学模式识别分析的小儿热速清颗粒质量评价研究[J]. 药物分析杂志, 2024, 44(6): 1062-1073. 代云桃, 靳如娜, 吴治丽, 等. 基于标准汤剂(物质基准)的经典名方制备工艺和质量标准研究[J]. 中国实验方剂学杂志, 2020, 26(2): 164-174. 张敏, 黄雪艳, 曾庆祥, 等. 基于基准关联度和AHP-熵权法的二仙汤醇提工艺研究[J]. 中国药学杂志, 2025, 60(8): 801-808. 代珊, 李帅, 张爱军, 等. 基于基准关联度和AHP-熵权法综合评价经典名方小续命汤古今提取工艺[J]. 中草药, 2022, 53(3): 726-734. 郑文烈, 张强, 冯飞, 等. 基于基准关联度和熵权-优劣解距离法综合评价优选经典名方羌活胜湿汤提取工艺[J]. 中草药, 2024, 55(10): 3310-3320. 潘龙祥, 高喜梅, 乔萍, 等. 基于UPLC-Q-TOF-MS/ MS技术结合化学模式识别分析温胆汤不同工艺的差异性成分[J]. 中草药, 2025, 56(8): 2811-2828. 林景, 莫俊俏, 宋艳, 等. 基于网络药理学和实验验证探讨血府逐瘀汤治疗特发性肺纤维化的作用机制[J]. 中成药, 2024, 46(2): 658-665. 马梦鸽, 杨莎, 唐志书, 等. 基于HPLC指纹图谱与一测多评法联用的血府逐瘀片质量控制研究[J]. 中草药, 2021, 52(22): 6856-6863. 牛成琳, 殷洪梅, 宋明明, 等. 基于改进AHP-熵权-关联度及化学计量学的经典名方一贯煎提取工艺研究[J]. 中草药, 2024, 55(4): 1178-1188. 张荣华, 靳梓微, 邱智东, 等. 基于基准关联度和AHP-熵权法优化经典名方达原饮的提取工艺[J]. 时珍国医国药, 2024, 35(3): 612-615. 何宝峰, 马新换, 徐志伟, 等. 基于改进熵权法联合TOPSIS模型和BPNN建模优化甘草糖类成分提取工艺[J]. 中国药学杂志, 2023, 58(8): 675-682. 李雨昕, 邢娜, 白浩东, 等. 基于熵权法的灰色关联法-TOPSIS法对不同产地三七及其炮制品质量的评价研究[J]. 中草药, 2023, 54(4): 1252-1259. 中国药典[S]. 一部. 2025: 894. 柴美伶. 血府逐瘀胶囊对气滞血瘀证原发性痛经子宫动脉血流阻力的影响[D]. 沈阳: 辽宁中医药大学, 2022. 李思彤. 血府逐瘀胶囊治疗气滞血瘀证原发性痛经的临床观察及对子宫动脉血流速度的影响[D]. 沈阳: 辽宁中医药大学, 2022. 齐会英, 许晓英, 薛娟娣, 等. 消肿止痛贴中医贴敷疗法治疗原发性痛经的临床疗效观察[J]. 中医临床研究, 2022, 14(34): 130-134. 李定宣, 王富春. 中医外治法治疗气滞血瘀型痛经研究概况[J]. 湖北中医杂志, 2022, 44(11): 63-64. 杨萍, 黄清杰, 李喜香, 等. 橙皮苷药理作用及机制的研究进展[J]. 中草药, 2023, 54(21): 7222-7231. 堵滢, 郭明鑫, 吴霞, 等. 阿魏属植物化学成分、药理活性研究进展及其质量标志物预测[J/OL]. 天然产物研究与开发, (2025-05-19) [2026-01-05]. https://link. cnki.net/urlid/51.1335.Q.20250519.1018.004. Zhang L, Jiang Z Z, Yang J, et al . Chemical material basis study of Xuefu Zhuyu Decoction by ultra-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry [J]. J Food Drug Anal , 2015, 23(4): 811-820.
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doi: 10.7501/j.issn.0253-2670.2026.10.009
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2种不同金属材料的力学参数
科 Family 属数 Number of genus 种数 Number of species 占总种数比例 Percentage of total species (%) 属 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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