7α-Hydroxy-8β,9β-H- cis- bicyclo[4,3,0]non-4-ene-4-aldehyde, a nonane compound with novel skeleton, named tsaokoin, was isolated from the fruits of Amomum tsao-ko. Its structure was established on the basis of spec...7α-Hydroxy-8β,9β-H- cis- bicyclo[4,3,0]non-4-ene-4-aldehyde, a nonane compound with novel skeleton, named tsaokoin, was isolated from the fruits of Amomum tsao-ko. Its structure was established on the basis of spectral analysis.展开更多
以“草果”“菌”“病毒”“化学成分”“作用机制”“Amomum tsao-ko”“Antibacterial”“Antimicrobial”“Virus”“Chemical composition”“Mechanism”等为关键词,在中国知网、维普数据库、中国专利网、PubMed、Web of Science...以“草果”“菌”“病毒”“化学成分”“作用机制”“Amomum tsao-ko”“Antibacterial”“Antimicrobial”“Virus”“Chemical composition”“Mechanism”等为关键词,在中国知网、维普数据库、中国专利网、PubMed、Web of Science等数据库中组合查询到2011~2023年中的有效文献57篇,对草果抗菌物质基础、抗菌活性与机理、抗病毒活性等方面进行归纳与总结。表明草果具有广谱的抗微生物活性,对细菌、真菌和HSV-1病毒均具有不同程度的体外抑制作用和体内抗感染作用,其中挥发油、酚酸、黄酮及双环壬烷类为草果抗菌物质基础,作用机制主要表现为破坏细胞壁、细胞膜的完整性及抑制病原菌的呼吸代谢过程。但目前对草果抗微生物作用多局限于粗提物的体外抑制,体内各个药物组分之间的相互作用并不明确,且缺乏毒理学和药动学的相关研究,其安全性及药效物质基础尚需进一步深入探索。展开更多
Tsaokols A(1)and B(2),two complicated flavanol-monoterpenoid hybrids,were isolated from the dried fruits of Amomum tsao-ko under the guidance of LCMS and bioassay.Their structures were determined by extensive spectros...Tsaokols A(1)and B(2),two complicated flavanol-monoterpenoid hybrids,were isolated from the dried fruits of Amomum tsao-ko under the guidance of LCMS and bioassay.Their structures were determined by extensive spectroscopic analyses and electronic circular dichroism(ECD)calculations.Compounds 1 and2 shared a flavanol backbone fused with 5/7 and 5/6 bicyclic monoterpenoid scaffolds,which were biogenetically condensed by Michael addition and acetalization.Compounds 1 and 2 exhibited significantα-glucosidase inhibitory activity with IC_(50)values of 18.8 and 38.6μmol/L(acarbose,IC_(50)=213μmol/L).Docking study supported the strong interactions of 1 and 2 bonding with enzyme by mainly hydrophobic and hydrogen-bond effects.Compounds 1 and 2 could be fast distinguished by the diagnostic ions at m/z 289 and 313 in negative MS^(2)experiments.展开更多
文摘7α-Hydroxy-8β,9β-H- cis- bicyclo[4,3,0]non-4-ene-4-aldehyde, a nonane compound with novel skeleton, named tsaokoin, was isolated from the fruits of Amomum tsao-ko. Its structure was established on the basis of spectral analysis.
文摘以“草果”“菌”“病毒”“化学成分”“作用机制”“Amomum tsao-ko”“Antibacterial”“Antimicrobial”“Virus”“Chemical composition”“Mechanism”等为关键词,在中国知网、维普数据库、中国专利网、PubMed、Web of Science等数据库中组合查询到2011~2023年中的有效文献57篇,对草果抗菌物质基础、抗菌活性与机理、抗病毒活性等方面进行归纳与总结。表明草果具有广谱的抗微生物活性,对细菌、真菌和HSV-1病毒均具有不同程度的体外抑制作用和体内抗感染作用,其中挥发油、酚酸、黄酮及双环壬烷类为草果抗菌物质基础,作用机制主要表现为破坏细胞壁、细胞膜的完整性及抑制病原菌的呼吸代谢过程。但目前对草果抗微生物作用多局限于粗提物的体外抑制,体内各个药物组分之间的相互作用并不明确,且缺乏毒理学和药动学的相关研究,其安全性及药效物质基础尚需进一步深入探索。
基金supported by the Yunnan Wanren Project(Nos.YNWR-KJLJ-2019-002 and YNWR-QNBJ-2018-061)the Yunnan Science Fund for Excellent Young Scholars(No.2019FI017)+1 种基金the Program of Yunling Scholar,the Youth Innovation Promotion Association,CAS(No.Y201756)the Reserve Talents of Young and Middle-aged Academic and Technical Leaders in Yunnan Province。
文摘Tsaokols A(1)and B(2),two complicated flavanol-monoterpenoid hybrids,were isolated from the dried fruits of Amomum tsao-ko under the guidance of LCMS and bioassay.Their structures were determined by extensive spectroscopic analyses and electronic circular dichroism(ECD)calculations.Compounds 1 and2 shared a flavanol backbone fused with 5/7 and 5/6 bicyclic monoterpenoid scaffolds,which were biogenetically condensed by Michael addition and acetalization.Compounds 1 and 2 exhibited significantα-glucosidase inhibitory activity with IC_(50)values of 18.8 and 38.6μmol/L(acarbose,IC_(50)=213μmol/L).Docking study supported the strong interactions of 1 and 2 bonding with enzyme by mainly hydrophobic and hydrogen-bond effects.Compounds 1 and 2 could be fast distinguished by the diagnostic ions at m/z 289 and 313 in negative MS^(2)experiments.