Article(id=1304388158032990501, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388157621948709, articleNumber=null, orderNo=null, doi=10.7501/j.issn.0253-2670.2026.15.004, pmid=null, cstr=null, oa=null, hot=0, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=null, receivedDate=1779897600000, receivedDateStr=2026-05-28, revisedDate=null, revisedDateStr=null, acceptedDate=null, acceptedDateStr=null, onlineDate=1788919971235, onlineDateStr=2026-09-09, pubDate=null, pubDateStr=null, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1788919971235, onlineIssueDateStr=2026-09-09, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1788919971235, creator=13701087609, updateTime=1788919971235, updator=13701087609, issue=Issue{id=1304388157621948709, tenantId=1146029695717560320, journalId=1302319053441957962, year='2026', volume='57', issue='15', pageStart='5789', pageEnd='6208', issueExtLink='null', onlineDate='null', pubDate='1786464000000', pubDateStr='2026-08-12', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=1, specialIssue=null, createTime=1788919971137, creator='13701087609', updateTime=1788923514106, updator='13701087609', preIssue=null, nextIssue=null, articleTotal=null, ext={EN=IssueExt(id=1304403017982300207, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388157621948709, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1304403017982300208, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304388157621948709, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null, downloadFileDto=null}, startPage=5814, endPage=5824, ext={EN=ArticleExt(id=1304388158326591783, articleId=1304388158032990501, tenantId=1146029695717560320, journalId=1302319053441957962, language=EN, title=High-efficiency screening of pancreatic lipase inhibitors of Rheum palmatum based on Fe3 O4 @SiO2 @PPL and their anti-obesity mechanism study, columnId=null, journalTitle=Chinese Traditional and Herbal Drugs, columnName=null, runingTitle=null, highlight=null, articleAbstract=Objective To develop an integrated strategy for rapid screening of pancreatic lipase (PPL) inhibitors from Rheum palmatum and systematically investigate their potential anti-obesity mechanisms. Methods Fe3 O4 @SiO₂@PPL was synthesized via chemical co-precipitation, Stöber method, and cross-linking, and characterized by Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), and X-ray diffraction (XRD). The Fe3 O4 @SiO2 @PPL was applied in ligand fishing experiments on an ethanol extract of R. palmatum , and the captured ligands were identified by UPLC with reference standards. Molecular docking and network pharmacology were integrated to conduct mechanism prediction from multiple dimensions such as molecular interaction, target mapping, and pathway enrichment. Results Material characterization revealed the presence of an enzyme coating layer on the surface, along with characteristic absorption peaks of Fe-O, Si- O- Si, and -NH2 , indicating that pancreatic lipase was successfully immobilized on the carrier surface. Four compounds were specifically captured by fishing experiments, including chrysophanol-8-O- β-D -glucopyranoside, aloe-emodin, rhein, and chrysophanol. Among them, chrysophanol and aloe-emodin exhibited high inhibitory effects against pancreatic lipase, with median inhibition concentration (IC50 ) values of 67.03 and 85.86 μmol/L, respectively. Molecular docking suggested that the active components can form hydrogen bonds and hydrophobic interactions with key amino acid residues of pancreatic lipase. Network pharmacology identified 150 overlapping targets between the active components and obesity. Screening out the five core targets: epidermal growth factor receptor (EGFR) and protein kinase B1 (AKT1), proto-oncogene tyrosine-protein kinase Src (SRC), heat shock protein 90 alpha family class A member 1 (HSP90AA1), and B-cell lymphoma-2 (BCL2). Pathway enrichment analysis indicated that the HIF-1 signaling pathway and the lipid and atherosclerosis pathway were the main mechanisms of action. Conclusion An integrated approach combining material-based screening, computational validation, and network prediction was established. This strategy provides an efficient tool for high-throughput screening of bioactive compounds from traditional Chinese medicines and offers methodological insights into clarifying the multi-target action mechanism of traditional Chinese medicine from the perspective of systems biology., authors=WU Xiaoyu, TAO Zihao, ABUDUAINI Dilinigaer, ZHANG Xinyi, WU Guotai, WEI Shuchang, DUAN Wenda, PAN Yanlong, ZHAO Lei, MA Yinyun, authorsList=WU Xiaoyu, TAO Zihao, ABUDUAINI Dilinigaer, ZHANG Xinyi, WU Guotai, WEI Shuchang, DUAN Wenda, PAN Yanlong, ZHAO Lei, MA Yinyun, 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=1304388158246900006, articleId=1304388158032990501, tenantId=1146029695717560320, journalId=1302319053441957962, language=CN, title=基于Fe₃O₄@SiO₂@PPL的掌叶大黄胰脂肪酶抑制剂高效筛选及抗肥胖机制研究, columnId=1304140187169214944, journalTitle=中草药, columnName=化学成分, runingTitle=null, highlight=null, articleAbstract=目的 建立一种集成化研究策略,以实现从掌叶大黄Rheum palmatum 中快速筛选胰脂肪酶抑制剂并系统探究其抗肥胖作用机制。方法 采用化学共沉淀法、Stöber法及交联法制备胰脂肪酶修饰磁性纳米材料(Fe₃O₄@SiO₂@PPL),并利用傅里叶变换红外光谱(Fourier transform infrared spectroscopy,FTIR)、扫描电子显微镜(scanning electron microscopy,SEM)及X射线衍射(X-ray diffraction,XRD)进行表征;Fe₃O₄@SiO₂@PPL对掌叶大黄提取液进行配体垂钓,利用UPLC及对照品进行初步鉴定;进一步整合分子对接与网络药理学方法,从分子互作、靶点映射及通路富集多个维度进行机制预测。结果 表征结果显示其表面存在酶包覆层及Fe-O、Si-O-Si、-NH₂特征吸收峰,表明胰脂肪酶被成功固载于载体表面。垂钓实验特异性捕获4种化合物,分别为大黄酚-8-O- β-D -葡萄糖苷、芦荟大黄素、大黄酸、大黄酚;其中大黄酚、芦荟大黄素对胰脂肪酶具有较高的抑制作用,其半数抑制浓度(median inhibition concentration,IC₅₀)值分别为67.03、85.86μmol/L。分子对接提示活性成分可与胰脂肪酶关键氨基酸残基形成氢键及疏水相互作用。网络药理学获得活性成分与肥胖交集靶点150个;筛选出表皮生长因子受体(epidermal growth factor receptor,EGFR)、蛋白激酶B1(protein kinase B1,AKT1)、原癌基因酪氨酸蛋白激酶Src(proto-oncogene tyrosine-protein kinase Src,SRC)、热休克蛋白90AA1(heat shock protein 90 alpha family class A member 1,HSP90AA1)、B淋巴细胞瘤-2(B-cell lymphoma-2,BCL2)5个核心靶点;通路富集分析显示HIF-1信号通路和脂质与动脉粥样硬化通路是主要作用途径。结论 开发了一套“材料筛选-计算验证-网络预测”的集成方法,不仅为中药活性成分的高通量发现提供了有效工具,也为从系统生物学角度阐明中药多靶点作用机制提供了方法学参考。, authors=武晓玉1,2,3 , 陶子豪1 , 迪丽尼尕尔·阿布都艾尼1 , 张欣艺1 , 吴国泰1 , 魏舒畅1,2 , 段文达1,3 , 潘燕龙1 , 赵磊1,3 , 马银云1 , authorsList=武晓玉, 陶子豪, 迪丽尼尕尔·阿布都艾尼, 张欣艺, 吴国泰, 魏舒畅, 段文达, 潘燕龙, 赵磊, 马银云, authorCompany=1 甘肃中医药大学陇药产业创新研究院, 甘肃 兰州 730000; 2 甘肃省中药制药工艺工程研究中心, 甘肃 兰州 730000; 3 甘肃省高校中(藏)药化学与质量研究省级重点实验室, 甘肃 兰州 730000, correspAuthors=赵磊, authorNote=武晓玉: 武晓玉,副教授,硕士生导师,从事天然产物、中药等复杂体系中有效成分分离分析新材料、新技术和新方法研究。E-mail:wxypzw@163.com, correspAuthorsNote=null, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=9YttT2BOGZvezkdYe8f+sw==, pdfFileSize=1717492, 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=甘肃省科技计划项目(科技专员专项) (25CXGA022); 甘肃省中药药理与毒理学重点实验室开放课题 (ZDSYS-KJ-2024-001); 甘肃中医药大学研究生创新创业基金项目 (2026CXCY-320))}, authors=null, keywords=[Keyword(id=1304402028751508177, tenantId=1146029695717560320, journalId=1302319053441957962, articleId=1304388158032990501, language=CN, orderNo=1, keyword=抗肥胖), Keyword(id=1304402028818617042, tenantId=1146029695717560320, journalId=1302319053441957962, articleId=1304388158032990501, language=CN, orderNo=2, keyword=胰脂肪酶抑制剂), Keyword(id=1304402028894114515, tenantId=1146029695717560320, journalId=1302319053441957962, articleId=1304388158032990501, language=CN, orderNo=3, keyword=掌叶大黄), Keyword(id=1304402028969611988, tenantId=1146029695717560320, journalId=1302319053441957962, articleId=1304388158032990501, language=CN, orderNo=4, keyword=固定化酶), Keyword(id=1304402029040915157, 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orderTime=1788919971235, fullTextJson=null, articleText=null, reference=Chen Y K, Liu T T, Teia F K F, et al. Exploring the underlying mechanisms of obesity and diabetes and the potential of traditional Chinese medicine: An overview of the literature [J]. Front Endocrinol, 2023, 14: 121880 孙孟姊, 聂鹏, 李铁梅, 等. 中国成人肥胖疾病负担与经济负担及趋势预测[J]. 中国预防医学杂志, 2025, 26(8): 1013-1017. Subramaniyan V, Hanim Y U. Role of pancreatic lipase inhibition in obesity treatment: Mechanisms and challenges towards current insights and future directions [J]. Int J Obes, 2025, 49(3): 492-506. 侯旭东, 胡情, 马丽娟, 等. 源于中药的胰脂肪酶抑制剂研究进展[J]. 药学学报, 2020, 55(7): 1478-1493. 黎秋萍, 郝小庆, 刘松. 胃肠道脂肪酶抑制剂治疗肥胖的药理药效研究进展: 以奥利司他为例[J]. 中国现代应用药学, 2022, 39(17): 2287-2292. Holmbäck U, Forslund A, Grudén S, et al. Effects of a novel combination of orlistat and acarbose on tolerability, appetite, and glucose metabolism in persons with obesity [J]. Obes Sci Pract, 2020, 6(3): 313-323. 崔鑫源, 陈晓君, 李毅夫, 等. 奥利司他致草酸盐结晶相关急性肾损伤1例[J]. 中南大学学报(医学版), 2022, 47(5): 583-587. 郑云飞, 陈泽山, 邓鑫. 大黄及其药对的研究进展[J]. 中华中医药学刊, 2026, 44(5): 204-210. 陈廷贵, 魏煜如, 张立伟. 磁珠固定化酶和LC-MS/MS筛选鉴定虎杖中的胰脂肪酶抑制剂[J]. 天然产物研究与开发, 2017, 29(2): 198-205. Kumar D, Karmase A, Jagtap S, et al. Pancreatic lipase inhibitory activity of cassiamin A, a bianthraquinone from Cassia siamea[J]. Nat Prod Commun, 2013, 8(2): 195-198. Quan S H, Wen M Y, Xu P, et al. Efficient screening of pancreatic lipase inhibitors from Rheum palmatum by affinity ultrafiltration-high-performance liquid chromatography combined with high-resolution inhibition profiling [J]. Phytochem Anal, 2024, 35(3): 540-551. Rocha S, Lobo M C, Proença C, et al. Optimization and implementation of spectrophotometric and fluorimetric methodologies to evaluate pancreatic lipase inhibitory using chalcones: A comparative study [J]. J Anal Test, 2025, 9(3): 334-345. 张欣艺, 武晓玉, 陶子豪, 等. 胰脂肪酶抑制剂筛选方法的研究进展[J]. 中国药科大学学报, 2026(2): 163-171. 陈凯华, 朱雪艳, 郭嘉亮, 等. 天然产物中酶抑制剂的快速筛选方法研究进展[J]. 天然产物研究与开发, 2024, 36(7): 1266-1277. 杨玉秀, 李苏颖, 张倩, 等. 固定化技术在中药活性成分筛选中的应用[J]. 药学学报, 2017, 52(2): 198-205.)
中草药
|化学成分
2026
, 57
(15) :
5814
-5824
基于Fe₃O₄@SiO₂@PPL的掌叶大黄胰脂肪酶抑制剂高效筛选及抗肥胖机制研究
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武晓玉1,2,3 , 陶子豪1 , 迪丽尼尕尔·阿布都艾尼1 , 张欣艺1 , 吴国泰1 , 魏舒畅1,2 , 段文达1,3 , 潘燕龙1 , 赵磊1,3 , 马银云1
作者信息
1 甘肃中医药大学陇药产业创新研究院, 甘肃 兰州 730000; 2 甘肃省中药制药工艺工程研究中心, 甘肃 兰州 730000; 3 甘肃省高校中(藏)药化学与质量研究省级重点实验室, 甘肃 兰州 730000
通讯作者:
赵磊
作者简介:
武晓玉: 武晓玉,副教授,硕士生导师,从事天然产物、中药等复杂体系中有效成分分离分析新材料、新技术和新方法研究。E-mail:wxypzw@163.com
High-efficiency screening of pancreatic lipase inhibitors of Rheum palmatum based on Fe3 O4 @SiO2 @PPL and their anti-obesity mechanism study
WU Xiaoyu, TAO Zihao, ABUDUAINI Dilinigaer, ZHANG Xinyi, WU Guotai, WEI Shuchang, DUAN Wenda, PAN Yanlong, ZHAO Lei, MA Yinyun
Affiliations
doi: 10.7501/j.issn.0253-2670.2026.15.004
文章导航
目的 建立一种集成化研究策略,以实现从掌叶大黄Rheum palmatum 中快速筛选胰脂肪酶抑制剂并系统探究其抗肥胖作用机制。方法 采用化学共沉淀法、Stöber法及交联法制备胰脂肪酶修饰磁性纳米材料(Fe₃O₄@SiO₂@PPL),并利用傅里叶变换红外光谱(Fourier transform infrared spectroscopy,FTIR)、扫描电子显微镜(scanning electron microscopy,SEM)及X射线衍射(X-ray diffraction,XRD)进行表征;Fe₃O₄@SiO₂@PPL对掌叶大黄提取液进行配体垂钓,利用UPLC及对照品进行初步鉴定;进一步整合分子对接与网络药理学方法,从分子互作、靶点映射及通路富集多个维度进行机制预测。结果 表征结果显示其表面存在酶包覆层及Fe-O、Si-O-Si、-NH₂特征吸收峰,表明胰脂肪酶被成功固载于载体表面。垂钓实验特异性捕获4种化合物,分别为大黄酚-8-O- β-D -葡萄糖苷、芦荟大黄素、大黄酸、大黄酚;其中大黄酚、芦荟大黄素对胰脂肪酶具有较高的抑制作用,其半数抑制浓度(median inhibition concentration,IC₅₀)值分别为67.03、85.86μmol/L。分子对接提示活性成分可与胰脂肪酶关键氨基酸残基形成氢键及疏水相互作用。网络药理学获得活性成分与肥胖交集靶点150个;筛选出表皮生长因子受体(epidermal growth factor receptor,EGFR)、蛋白激酶B1(protein kinase B1,AKT1)、原癌基因酪氨酸蛋白激酶Src(proto-oncogene tyrosine-protein kinase Src,SRC)、热休克蛋白90AA1(heat shock protein 90 alpha family class A member 1,HSP90AA1)、B淋巴细胞瘤-2(B-cell lymphoma-2,BCL2)5个核心靶点;通路富集分析显示HIF-1信号通路和脂质与动脉粥样硬化通路是主要作用途径。结论 开发了一套“材料筛选-计算验证-网络预测”的集成方法,不仅为中药活性成分的高通量发现提供了有效工具,也为从系统生物学角度阐明中药多靶点作用机制提供了方法学参考。
抗肥胖
/
胰脂肪酶抑制剂
/
掌叶大黄
/
固定化酶
/
配体垂钓
/
网络药理学
/
分子对接
/
大黄酚-8-O- β-D -葡萄糖苷
/
芦荟大黄素
/
大黄酸
/
大黄酚
Objective To develop an integrated strategy for rapid screening of pancreatic lipase (PPL) inhibitors from Rheum palmatum and systematically investigate their potential anti-obesity mechanisms. Methods Fe3 O4 @SiO₂@PPL was synthesized via chemical co-precipitation, Stöber method, and cross-linking, and characterized by Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), and X-ray diffraction (XRD). The Fe3 O4 @SiO2 @PPL was applied in ligand fishing experiments on an ethanol extract of R. palmatum , and the captured ligands were identified by UPLC with reference standards. Molecular docking and network pharmacology were integrated to conduct mechanism prediction from multiple dimensions such as molecular interaction, target mapping, and pathway enrichment. Results Material characterization revealed the presence of an enzyme coating layer on the surface, along with characteristic absorption peaks of Fe-O, Si- O- Si, and -NH2 , indicating that pancreatic lipase was successfully immobilized on the carrier surface. Four compounds were specifically captured by fishing experiments, including chrysophanol-8-O- β-D -glucopyranoside, aloe-emodin, rhein, and chrysophanol. Among them, chrysophanol and aloe-emodin exhibited high inhibitory effects against pancreatic lipase, with median inhibition concentration (IC50 ) values of 67.03 and 85.86 μmol/L, respectively. Molecular docking suggested that the active components can form hydrogen bonds and hydrophobic interactions with key amino acid residues of pancreatic lipase. Network pharmacology identified 150 overlapping targets between the active components and obesity. Screening out the five core targets: epidermal growth factor receptor (EGFR) and protein kinase B1 (AKT1), proto-oncogene tyrosine-protein kinase Src (SRC), heat shock protein 90 alpha family class A member 1 (HSP90AA1), and B-cell lymphoma-2 (BCL2). Pathway enrichment analysis indicated that the HIF-1 signaling pathway and the lipid and atherosclerosis pathway were the main mechanisms of action. Conclusion An integrated approach combining material-based screening, computational validation, and network prediction was established. This strategy provides an efficient tool for high-throughput screening of bioactive compounds from traditional Chinese medicines and offers methodological insights into clarifying the multi-target action mechanism of traditional Chinese medicine from the perspective of systems biology.
anti-obesity
/
pancreatic lipase inhibitor
/
Rheum palmatum L.
/
enzyme immobilization
/
ligand fishing
/
network pharmacology
/
molecular docking
/
chrysophanol-8-O- β-D -glucopyranoside
/
aloe-emodi
/
rhein
/
chrysophanol
武晓玉, 陶子豪, 迪丽尼尕尔·阿布都艾尼, 张欣艺, 吴国泰, 魏舒畅, 段文达, 潘燕龙, 赵磊, 马银云.
基于Fe₃O₄@SiO₂@PPL的掌叶大黄胰脂肪酶抑制剂高效筛选及抗肥胖机制研究.
中草药,
2026
, 57
(15)
: 5814
-5824
.
DOI: 10.7501/j.issn.0253-2670.2026.15.004
WU Xiaoyu, TAO Zihao, ABUDUAINI Dilinigaer, ZHANG Xinyi, WU Guotai, WEI Shuchang, DUAN Wenda, PAN Yanlong, ZHAO Lei, MA Yinyun.
High-efficiency screening of pancreatic lipase inhibitors of Rheum palmatum based on Fe3 O4 @SiO2 @PPL and their anti-obesity mechanism study[J].
Chinese Traditional and Herbal Drugs ,
2026
, 57
(15)
: 5814
-5824
.
DOI: 10.7501/j.issn.0253-2670.2026.15.004
甘肃省科技计划项目(科技专员专项) (25CXGA022); 甘肃省中药药理与毒理学重点实验室开放课题 (ZDSYS-KJ-2024-001); 甘肃中医药大学研究生创新创业基金项目 (2026CXCY-320)
参考文献
引证文献
Chen Y K, Liu T T, Teia F K F, et al. Exploring the underlying mechanisms of obesity and diabetes and the potential of traditional Chinese medicine: An overview of the literature [J]. Front Endocrinol, 2023, 14: 121880 孙孟姊, 聂鹏, 李铁梅, 等. 中国成人肥胖疾病负担与经济负担及趋势预测[J]. 中国预防医学杂志, 2025, 26(8): 1013-1017. Subramaniyan V, Hanim Y U. Role of pancreatic lipase inhibition in obesity treatment: Mechanisms and challenges towards current insights and future directions [J]. Int J Obes, 2025, 49(3): 492-506. 侯旭东, 胡情, 马丽娟, 等. 源于中药的胰脂肪酶抑制剂研究进展[J]. 药学学报, 2020, 55(7): 1478-1493. 黎秋萍, 郝小庆, 刘松. 胃肠道脂肪酶抑制剂治疗肥胖的药理药效研究进展: 以奥利司他为例[J]. 中国现代应用药学, 2022, 39(17): 2287-2292. Holmbäck U, Forslund A, Grudén S, et al. Effects of a novel combination of orlistat and acarbose on tolerability, appetite, and glucose metabolism in persons with obesity [J]. Obes Sci Pract, 2020, 6(3): 313-323. 崔鑫源, 陈晓君, 李毅夫, 等. 奥利司他致草酸盐结晶相关急性肾损伤1例[J]. 中南大学学报(医学版), 2022, 47(5): 583-587. 郑云飞, 陈泽山, 邓鑫. 大黄及其药对的研究进展[J]. 中华中医药学刊, 2026, 44(5): 204-210. 陈廷贵, 魏煜如, 张立伟. 磁珠固定化酶和LC-MS/MS筛选鉴定虎杖中的胰脂肪酶抑制剂[J]. 天然产物研究与开发, 2017, 29(2): 198-205. Kumar D, Karmase A, Jagtap S, et al. Pancreatic lipase inhibitory activity of cassiamin A, a bianthraquinone from Cassia siamea[J]. Nat Prod Commun, 2013, 8(2): 195-198. Quan S H, Wen M Y, Xu P, et al. Efficient screening of pancreatic lipase inhibitors from Rheum palmatum by affinity ultrafiltration-high-performance liquid chromatography combined with high-resolution inhibition profiling [J]. Phytochem Anal, 2024, 35(3): 540-551. Rocha S, Lobo M C, Proença C, et al. Optimization and implementation of spectrophotometric and fluorimetric methodologies to evaluate pancreatic lipase inhibitory using chalcones: A comparative study [J]. J Anal Test, 2025, 9(3): 334-345. 张欣艺, 武晓玉, 陶子豪, 等. 胰脂肪酶抑制剂筛选方法的研究进展[J]. 中国药科大学学报, 2026(2): 163-171. 陈凯华, 朱雪艳, 郭嘉亮, 等. 天然产物中酶抑制剂的快速筛选方法研究进展[J]. 天然产物研究与开发, 2024, 36(7): 1266-1277. 杨玉秀, 李苏颖, 张倩, 等. 固定化技术在中药活性成分筛选中的应用[J]. 药学学报, 2017, 52(2): 198-205.
2026年第57卷第15期
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doi: 10.7501/j.issn.0253-2670.2026.15.004
接收时间:2026-05-28
首发时间:2026-09-09
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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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