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Analysis on Therapeutic Potential and Action Mechanism of Folium Pyrrosiae Based on Biolabel Pattern
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作者 Zhentao LYU Wenyao ZOU +4 位作者 Shuai DOU Mingxing WEI Wenya TANG Xuzhao LI Wude YANG 《Agricultural Biotechnology》 2023年第6期93-98,共6页
[Objectives]The therapeutic potential and action mechanism of Folium Pyrrosiae were analyzed based on the biolabel pattern.[Methods]The chemical components of Folium Pyrrosiae were analyzed by liquid chromatography-ma... [Objectives]The therapeutic potential and action mechanism of Folium Pyrrosiae were analyzed based on the biolabel pattern.[Methods]The chemical components of Folium Pyrrosiae were analyzed by liquid chromatography-mass spectrometry(LC-MS).Ten databases,including Pubchem,CTD,BindingDB,HERB,TCMIP,ETCM,SwissTargetPrediction,SuperPred webserver,TargetNet and SEA,were used in turn to retrieve the targets of related components,and key components were obtained according to the enrichment degree of targets.The obtained targets were imported into the STRING database to obtain PPI information and screen out core targets.The DAVID database was employed to analyze KEGG pathways of core targets and obtain key pathways.A key component-core target-key pathway network of Folium Pyrrosiae was constructed by Cytoscape3.10.1 software.The obtained KEGG pathways were input into the CTD database to predict corresponding diseases,and discussion and analysis were carried out.[Results]Ten key components,30 potential targets and 10 key pathways were screened out,and they participated in many diseases,of which five diseases were mainly analyzed.[Conclusions]Folium Pyrrosiae had the characteristic of multi-component,multi-target and multi-pathway synergistic effect in the treatment of lung cancer,type 2 diabetes,atherosclerosis,liver cancer,prostate cancer and other diseases,and the therapeutic potential and action mechanism of Folium Pyrrosiae were analyzed through the biolabel pattern.This study provides a research basis for further developing new functions of Folium Pyrrosiae. 展开更多
关键词 Biolabel pattern Folium pyrrosiae TARGET PATHWAY Therapeutic potential Material basis
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Molecular structure and phylogenetic analyses of the complete chloroplast genomes of three original species of Pyrrosiae Folium 被引量:2
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作者 YANG Chu-Hong LIU Xia +5 位作者 CUI Ying-Xian NIE Li-Ping LIN Yu-Lin WEI Xue-Ping WANG Yu YAO Hui 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2020年第8期573-581,共9页
Pyrrosia petiolosa,Pyrrosia lingua and Pyrrosia sheareri are recorded as original plants of Pyrrosiae Folium(PF)and commonly used as Chinese herbal medicines.Due to the similar morphological features of PF and its adu... Pyrrosia petiolosa,Pyrrosia lingua and Pyrrosia sheareri are recorded as original plants of Pyrrosiae Folium(PF)and commonly used as Chinese herbal medicines.Due to the similar morphological features of PF and its adulterants,common DNA barcodes cannot accurately distinguish PF species.Knowledge of the chloroplast(cp)genome is widely used in species identification,molecular marker and phylogenetic analyses.Herein,we determined the complete cp genomes of three original species of PF via highthroughput sequencing technologies.The three cp genomes exhibited a typical quadripartite structure with sizes ranging from 158165 to 163026 bp.The cp genomes of P.petiolosa and P.lingua encoded 130 genes,whilst that of P.sheareri encoded 131 genes.The complete cp genomes were compared,and five highly divergent regions of pet A-psb J,mat K-rps16,ndh C-trn M,psb M-pet N and psa Cndh E were screened as potential DNA barcodes for identification of Pyrrosia genus species.The phylogenetic tree we obtained indicated that P.petiolosa and P.lingua are clustered in a single clade and,thus,share a close relationship.This study provides invaluable information for further studies on the species identification,taxonomy and phylogeny of Pyrrosia genus species. 展开更多
关键词 Complete chloroplast genome Pyrrosia petiolosa Pyrrosia lingua Pyrrosia sheareri IDENTIFICATION Phylogenetic relationship
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不同栽培基质对石韦活性成分含量的影响
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作者 陈超君 李莉蓉 +2 位作者 尹小红 张平刚 黄荣韶 《安徽农业科学》 CAS 北大核心 2011年第24期14604-14606,共3页
[目的]筛选适宜石韦(Pyrrosia lingua)人工栽培的基质。[方法]在大田试验条件下,采用随机区组设计,研究石韦在甘蔗渣、蘑菇渣、木糠和炉渣分别与土壤按1∶1比例混合形成的4种栽培基质中扦插苗叶片的活性成分含量。[结果]甘蔗渣混土基质... [目的]筛选适宜石韦(Pyrrosia lingua)人工栽培的基质。[方法]在大田试验条件下,采用随机区组设计,研究石韦在甘蔗渣、蘑菇渣、木糠和炉渣分别与土壤按1∶1比例混合形成的4种栽培基质中扦插苗叶片的活性成分含量。[结果]甘蔗渣混土基质可显著提高石韦叶片的总黄酮、多糖、总皂苷、蒽醌和绿原酸含量;蘑菇渣混土和炉渣混土基质可显著提高多糖和总皂苷含量,但同时会降低总黄酮含量,且对蒽醌和绿原酸含量无显著影响;木糠混土基质可显著提高多糖、总皂苷和绿原酸含量,但对总黄酮和蒽醌含量无显著影响。[结论]甘蔗渣混土是石韦较适宜的人工栽培基质。 展开更多
关键词 栽培基质 石韦(Pyrrosia lingua) 总黄酮 总皂苷 多糖 蒽醌 绿原酸
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Simultaneous determination of seven caffeoylquinic acids and three flavonoids in Pyrrosia petiolosa(Christ) Ching by RP-UFLC-DAD 被引量:3
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作者 任彪 孙洪阳 王弘 《Journal of Chinese Pharmaceutical Sciences》 CAS CSCD 2014年第9期642-648,共7页
An efficient, sensitive, accurate and rapid analytical ultra-fast liquid chromatography (UFLC) method for quality evaluations ofPyrrosia petiolosa (Christ) Ching from 20 regions of China was developed in this stud... An efficient, sensitive, accurate and rapid analytical ultra-fast liquid chromatography (UFLC) method for quality evaluations ofPyrrosia petiolosa (Christ) Ching from 20 regions of China was developed in this study. Ten marker compounds were simultaneously quantified, including 5-caffeoylquinic acid (5-CQA), 3-caffeoylquinic acid (3-CQA), 4-caffeoylquinic acid (4-CQA), 1-caffeoylquinic acid (1-CQA), 3,5-dicaffeoylquinic acid (3,5-diCQA), 4,5-dicaffeoylquinic acid (4,5-diCQA), 3,4-dicaffeoylquinic acid (3,4-diCQA), astragalin, kaempferol-3,7-di-O-glucoside and (±)eriodictyol-7-O-β-D-glucuronide. Chromatography was performed on a Kromasil 100-2.5C18 (100 mm×2.1 mm, 2.5 μm) C18 column with gradient elution. The mobile phases consisted of 0.1% formic acid/water (A) and 0.1% formic acid/methanol (B). The detection wavelength was set at 326 nm and the flow rate was 0.4 mL/min. Ten components were separated well with good linearity (r2〉0.9998), precision, repeatability, stability. The recovery was in the range of 99.08%-102.77%. The results showed that the content determination using RP-UFLC-DAD fingerprint technique provides an efficient, sensitive, accurate and rapid analytical method for quality assessment ofP. petiolosa (Christ) Ching. Cluster analysis and principal components analysis were successfully applied to analyze 20 samples, the results revealed that the method was efficient and authentic to distinguish producing areas and the source of P. petiolosa (Christ) Ching. Keywords: Pyrrosiapetiolosa (Christ) Ching, Caffeoylquinic acids, Flavonoids, Multicomponent determination, UFLC 展开更多
关键词 Pyrrosia petiolosa (Christ) Ching Caffeoylquinic acids FLAVONOIDS Multicomponent determination UFLC
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A New Flavonol Diglycoside from Pyrrosia petiolosa 被引量:4
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作者 Yong Chun YANG, Chun YANG, Shun Yan MO, Jian Gong SHIInstitute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050 《Chinese Chemical Letters》 SCIE CAS CSCD 2003年第9期920-922,共3页
A new flavone diglycoside, named as pyrropetioside A 1 was isolated from Pyrrosia petiolosa. Its structrue was elucidated as 7-O-[6-O-(α-L-arabifuranosyl)-β-D-glucopyranosyl]-gossypetin by means of chemical and spec... A new flavone diglycoside, named as pyrropetioside A 1 was isolated from Pyrrosia petiolosa. Its structrue was elucidated as 7-O-[6-O-(α-L-arabifuranosyl)-β-D-glucopyranosyl]-gossypetin by means of chemical and spectroscopie methods including IR, MS, 1 D and 2D NMR techniques. 展开更多
关键词 Pyrrosia petiolosa flavone diglycoside pyrropetioside A.
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