Article(id=1304414731696107549, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304414700964443026, articleNumber=null, orderNo=null, doi=10.7501/j.issn.0253-2670.2026.04.031, pmid=null, cstr=null, oa=null, hot=0, price=null, onlineType=0, articleFormat=0, articleType=null, articleTypeStr=null, receivedDate=1758556800000, receivedDateStr=2025-09-23, revisedDate=null, revisedDateStr=null, acceptedDate=null, acceptedDateStr=null, onlineDate=1788926306890, onlineDateStr=2026-09-09, pubDate=null, pubDateStr=null, doiRegisterDate=null, doiRegisterDateStr=null, onlineIssueDate=1788926306890, onlineIssueDateStr=2026-09-09, onlineJustAcceptDate=null, onlineJustAcceptDateStr=null, onlineFirstDate=null, onlineFirstDateStr=null, sourceXml=null, magXml=null, createTime=1788926306890, creator=13701087609, updateTime=1788926306890, updator=13701087609, issue=Issue{id=1304414700964443026, tenantId=1146029695717560320, journalId=1302319053441957962, year='2026', volume='57', issue='4', pageStart='1209', pageEnd='1596', issueExtLink='null', onlineDate='null', pubDate='1772208000000', pubDateStr='2026-02-28', beforeIssueId=null, nextIssueId=null, price=null, status=1, issueComplete=1, articleOrder=1, issueType=-1, specialIssue=null, createTime=1788926299563, creator='13701087609', updateTime=1788926573099, updator='13701087609', preIssue=null, nextIssue=null, articleTotal=null, ext={EN=IssueExt(id=1304415848316297970, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304414700964443026, language=EN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=), CN=IssueExt(id=1304415848316297971, tenantId=1146029695717560320, journalId=1302319053441957962, issueId=1304414700964443026, language=CN, specialIssueTitle=, coverIllustrator=null, specialIssueEditor=, specialIssueAbout=)}, issueFiles=null, downloadFileDto=null}, startPage=1559, endPage=1569, ext={EN=ArticleExt(id=1304414732019068959, articleId=1304414731696107549, tenantId=1146029695717560320, journalId=1302319053441957962, language=EN, title=Stabilization mechanism and regulation strategy of volatile oil based on nanophase self-assembly of traditional Chinese medicine, columnId=null, journalTitle=Chinese Traditional and Herbal Drugs, columnName=null, runingTitle=null, highlight=null, articleAbstract=The self-assembly of active components of traditional Chinese medicine has been confirmed to exist in decoctions, which ensures the effectiveness of active components of traditional decoctions, improves bioavailability, and has the effect of enhancing efficacy and reducing toxicity. As an important pharmacodynamic component, essential oil is widely used in traditional Chinese medicine prescriptions such as relieving exterior syndrome, resolving dampness, inducing resuscitation and regulating qi. Although essential oil has the characteristics of easy volatilization, it does not completely volatilize during the decoction process and continues to exert its efficacy. This phenomenon suggests that essential oil may form an “oil-active molecule” complex through self-assembly with other components in a complex decoction system to achieve the stabilization of essential oil molecules. Based on the theory of molecular self-assembly of traditional Chinese medicine, it is speculated that the stable state of “compatible combination” may be related to the structure of essential oil, the interaction of multiple components and the solution state. Based on the research status and challenges in the field of self-assembly of traditional Chinese medicine, this paper focuses on the “oil-active molecule” complexes existing in the decoction co-decoction system, aiming to clarify the active components, forces and regulatory strategies of self-assembly, and systematically explore the potential and progress of self-assembly technology applied to the stabilization of essential oil of traditional Chinese medicine., authors=WANG Qiyu, LEI Ruting, PEI Zhaoyang, LIU Ying, WAN Na, ZHANG Huang, HU Huiquan, CHEN Shibin, WU Zhenfeng, authorsList=WANG Qiyu, LEI Ruting, PEI Zhaoyang, LIU Ying, WAN Na, ZHANG Huang, HU Huiquan, CHEN Shibin, WU Zhenfeng, 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=1304414731918405662, articleId=1304414731696107549, tenantId=1146029695717560320, journalId=1302319053441957962, language=CN, title=基于中药纳米相态自组装的挥发油稳定化机制与调控策略, columnId=1304140194685415572, journalTitle=中草药, columnName=综述, runingTitle=null, highlight=null, articleAbstract=中药药效成分自组装已被研究证实存在于汤剂中,保证了传统汤剂药效成分的有效性,提高了生物利用度,且有增效减毒的作用。挥发油作为一类重要的药效成分,被广泛应用于中药解表、化湿、开窍、理气等方剂。尽管挥发油具有易挥发的特点,但其在汤剂煎煮过程中并未完全挥发而继续发挥药效,这一现象暗示挥发油在复杂汤剂体系中可能通过与其他成分的自组装形成了“油-活性分子”配合体,实现了挥发油分子的稳定化。基于中药分子自组装理论,“配伍组合体”的稳定状态可能与挥发油结构、多种成分相互作用以及溶液状态有关。基于中药自组装领域的研究现状与挑战,聚焦于汤剂共煎体系中所存在的“油-活性分子”配合体,旨在阐明其自组装的活性成分、作用力与调控策略,并系统探讨自组装技术应用于中药挥发油稳定化的潜力与进展。, authors=王琦瑀1,2, 雷茹婷1,2, 裴朝阳3, 刘英1,2, 万娜1, 张凰1,2, 胡恢权1,2, 陈世彬3, 伍振峰1,2,4, authorsList=王琦瑀, 雷茹婷, 裴朝阳, 刘英, 万娜, 张凰, 胡恢权, 陈世彬, 伍振峰, authorCompany=1 江西中医药大学 现代中药制剂教育部重点实验室, 江西 南昌 330004;
2 经典名方现代中药创制全国重点实验室, 江西南昌 330004;
3 华润三九医药股份有限公司, 广东深圳 518110;
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基于中药纳米相态自组装的挥发油稳定化机制与调控策略
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中草药 | 综述 2026,57(4): 1559-1569
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中草药 |综述 2026 , 57 (4) : 1559 -1569
基于中药纳米相态自组装的挥发油稳定化机制与调控策略
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王琦瑀1,2, 雷茹婷1,2, 裴朝阳3, 刘英1,2, 万娜1, 张凰1,2, 胡恢权1,2, 陈世彬3, 伍振峰1,2,4
作者信息
    1 江西中医药大学 现代中药制剂教育部重点实验室, 江西 南昌 330004;
    2 经典名方现代中药创制全国重点实验室, 江西南昌 330004;
    3 华润三九医药股份有限公司, 广东深圳 518110;
    4 江西省中药绿色制造技术创新中心, 江西 南昌 330029
通讯作者:
陈世彬
作者简介:
王琦瑀: 王琦瑀,硕士研究生,研究方向为中药制剂与评价技术。E-mail:13977059790@163.com
Stabilization mechanism and regulation strategy of volatile oil based on nanophase self-assembly of traditional Chinese medicine
  • WANG Qiyu, LEI Ruting, PEI Zhaoyang, LIU Ying, WAN Na, ZHANG Huang, HU Huiquan, CHEN Shibin, WU Zhenfeng
  • Affiliations
    doi: 10.7501/j.issn.0253-2670.2026.04.031
    文章导航
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    中药药效成分自组装已被研究证实存在于汤剂中,保证了传统汤剂药效成分的有效性,提高了生物利用度,且有增效减毒的作用。挥发油作为一类重要的药效成分,被广泛应用于中药解表、化湿、开窍、理气等方剂。尽管挥发油具有易挥发的特点,但其在汤剂煎煮过程中并未完全挥发而继续发挥药效,这一现象暗示挥发油在复杂汤剂体系中可能通过与其他成分的自组装形成了“油-活性分子”配合体,实现了挥发油分子的稳定化。基于中药分子自组装理论,“配伍组合体”的稳定状态可能与挥发油结构、多种成分相互作用以及溶液状态有关。基于中药自组装领域的研究现状与挑战,聚焦于汤剂共煎体系中所存在的“油-活性分子”配合体,旨在阐明其自组装的活性成分、作用力与调控策略,并系统探讨自组装技术应用于中药挥发油稳定化的潜力与进展。
    挥发油  /  稳定性  /  汤剂  /  自组装  /  纳米相态  /  “油-活性分子”配合体
    The self-assembly of active components of traditional Chinese medicine has been confirmed to exist in decoctions, which ensures the effectiveness of active components of traditional decoctions, improves bioavailability, and has the effect of enhancing efficacy and reducing toxicity. As an important pharmacodynamic component, essential oil is widely used in traditional Chinese medicine prescriptions such as relieving exterior syndrome, resolving dampness, inducing resuscitation and regulating qi. Although essential oil has the characteristics of easy volatilization, it does not completely volatilize during the decoction process and continues to exert its efficacy. This phenomenon suggests that essential oil may form an “oil-active molecule” complex through self-assembly with other components in a complex decoction system to achieve the stabilization of essential oil molecules. Based on the theory of molecular self-assembly of traditional Chinese medicine, it is speculated that the stable state of “compatible combination” may be related to the structure of essential oil, the interaction of multiple components and the solution state. Based on the research status and challenges in the field of self-assembly of traditional Chinese medicine, this paper focuses on the “oil-active molecule” complexes existing in the decoction co-decoction system, aiming to clarify the active components, forces and regulatory strategies of self-assembly, and systematically explore the potential and progress of self-assembly technology applied to the stabilization of essential oil of traditional Chinese medicine.
    volatile oil  /  stability  /  decoction  /  self-assembly  /  nano-phase state  /  “oil-active molecule” complex
    王琦瑀, 雷茹婷, 裴朝阳, 刘英, 万娜, 张凰, 胡恢权, 陈世彬, 伍振峰. 基于中药纳米相态自组装的挥发油稳定化机制与调控策略. 中草药, 2026 , 57 (4) : 1559 -1569 . DOI: 10.7501/j.issn.0253-2670.2026.04.031
    WANG Qiyu, LEI Ruting, PEI Zhaoyang, LIU Ying, WAN Na, ZHANG Huang, HU Huiquan, CHEN Shibin, WU Zhenfeng. Stabilization mechanism and regulation strategy of volatile oil based on nanophase self-assembly of traditional Chinese medicine[J]. Chinese Traditional and Herbal Drugs, 2026 , 57 (4) : 1559 -1569 . DOI: 10.7501/j.issn.0253-2670.2026.04.031

      国家自然科学基金面上项目 (82474091); 国家自然科学基金 (82560781); 国家级高层次人才支持计划

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    2026年第57卷第4期
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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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