1.Chemical constituents of Nauclea officinalis.
Fenxia ZHU ; Jingjing WANG ; Jie SONG ; Shumin DING ; Xiaobin JIA
Acta Pharmaceutica Sinica 2013;48(2):276-80
In order to study the chemical constituents in the water extract of the stem of Nauclea officinalis, column chromatography over D101 macroporous resin and silica gel and an automatic purification system were used to isolate and purify the chemical constituents from the extract. Nine compounds were obtained. By analysis of the physicochemical properties and spectral data, their structures were identified as naucleamide G (1), 3, 4-dimethoxyphenol-beta-D-apiofuranosyl (1-->6)-beta-D-glucopyranoside (2), kelampayoside A (3), 3alpha, 5alpha-tetrahydrodeoxycordifoline lactam (4), naucleamide A-10-O-beta-D-glucopyranoside (5), pumiloside (6), 3-epi-pumiloside (7), strictosamide (8) and vincosamide (9), separately. Among them, compound 1 is a new compound, compound 2 was found in plants of the genus Nauclea for the first time, and compounds 3 and 4 were isolated from this plant for the first time.
2.Anti-inflammatory effect of corynoline isolated from Corydalis bungeana Turcz.
Hao ZHANG ; Muzi LI ; Xiaoting ZHAI ; Fenxia ZHU
Journal of China Pharmaceutical University 2017;48(6):715-720
To isolate corynoline from Corydalis bungeana Turcz.and study its anti-inflammatory mechanism via TLRs/NF-κB signal pathway.Corynoline was extracted by 80% ethanol and purified by silicagel column chromatography.The structure and purity of corynoline was determined by UPLC,MS,1H NMR and 13C NMR.In the course of experiment,the cytotoxicity of corynoline was evaluated by MTT assay.And the inflammation model was established by RAW264.7 macrophages induced by lipopolysaccharide(LPS),which was intervened by coryno line.The expression levels of TLR4,TLR2 and nuclear transcription factor-κB(NF-κB) signaling pathways related proteinsin RAW264.7 macrophages were detected by Western blot.Furthermore,the expressionof NF-κB p65 mRNA and nuclear p65 were determined by the real-time fluorescence quantitative PCR(RT-qPCR) and Western blot.Results showed that 5-40 μmol/L corynoline reduced the expression level of TLR4 and TLR2,and inhibited the phosphorylation level of IκBα and the phosphorylation and nuclear translocation of p65 at gene and protein levelin a dose-dependent manner in LPS-induced RAW264.7 cells.This study indicated the protective effect of corynoline on LPS-induced RAW264.7 macrophages may be related with the inhibition of TLRs/NF-κB inflammatory signaling pathway.
3.Preparation of pumiloside and identification of its metabolites in rats by UPLC-QTOF/MS
Jiaquan CHEN ; Hui WANG ; Zhiyuan ZHANG ; Xiaoting ZHAI ; Rong YIN ; Fenxia ZHU
Journal of China Pharmaceutical University 2015;46(6):677-682
In this paper, water extract of Nauclea officinalis was absorbed by AB-8 macroporous resin and subsequently gradient-eluted with alcoholic solution of different proportion to prepare pumiloside monomer of high purity. The metabolites in urine, feces and bile of rats with gavage administration were analyzed by UPLC-QTOF/MS. Accurate MS/MS data of all components were collected with full scan mode, and analyzed by MetaboLynx software. Results showed that the monomer of high-purity pumiloside was prepared and four metabolites in rats were identified.
4.Differential expression profile of miRNAs in maternal amniotic fluid exosomes in fetuses with isolated ventriculomegaly
Fenxia LI ; Haosheng LIN ; Yilin LI ; Wenqian ZHU ; Yuanjie SUN ; Yuan HUANG ; Yuwen QIU ; Xia QIN ; Qingxian CHANG
Journal of Southern Medical University 2024;44(11):2256-2264
Objective To investigate the role of miRNAs in maternal amniotic fluid exosomes in development of isolated ventriculomegaly(VM)in fetuses.Methods Amniotic fluid samples were collected from 9 cases of moderate isolated VM and 8 normal control cases to extract exosomal miRNA,and miRNA sequencing technique was used to identify differentially expressed miRNAs between the two groups.Three miRNAs with significant differential expression between the two groups,whose high expression was associated with VM,were selected for verification with RT-qPCR.Dual luciferase reporter assays were used to verify the regulatory effect of miR-122-5p on its predicted target genes AKT3 and CCDC88C.Gene ontology(GO)and KEGG pathway analyses were performed to explore the possible roles of the top 40 significant differential miRNAs in the pathophysiology of VM.Results We identified a total of 272 differentially expressed miRNAs in VM cases,including 43 up-regulated and 229 down-regulated miRNAs.The target genes of these differential miRNAs were associated with DNA and transcription factor binding,transmembrane transporter and nucleic acid binding transcription factor activity,and cell developmental process.These miRNAs were mostly enriched in the MAPK,cGMP-PKG and Wnt signaling pathways.Verification with RT-qPCR showed that miR-122-5p expression level was significantly lower in VM group than in the control group(P<0.05),which was consistent with miRNA sequencing results;let-7b-5p expression level was significantly lower in VM group,which was contrary to miRNA sequencing result.Dual luciferase reporter assays showed that miR-122-5p was not capable of regulating AKT3 or CCDC88C expressions.Conclusions The highly abundant differentially expressed miRNAs in maternal amniotic fluid exosomes play important roles in the occurrence of fetal VM possibly by regulating the MAPK,PI3K-Akt,Wnt and cGMP-PKG signaling pathways.
5.Differential expression profile of miRNAs in maternal amniotic fluid exosomes in fetuses with isolated ventriculomegaly
Fenxia LI ; Haosheng LIN ; Yilin LI ; Wenqian ZHU ; Yuanjie SUN ; Yuan HUANG ; Yuwen QIU ; Xia QIN ; Qingxian CHANG
Journal of Southern Medical University 2024;44(11):2256-2264
Objective To investigate the role of miRNAs in maternal amniotic fluid exosomes in development of isolated ventriculomegaly(VM)in fetuses.Methods Amniotic fluid samples were collected from 9 cases of moderate isolated VM and 8 normal control cases to extract exosomal miRNA,and miRNA sequencing technique was used to identify differentially expressed miRNAs between the two groups.Three miRNAs with significant differential expression between the two groups,whose high expression was associated with VM,were selected for verification with RT-qPCR.Dual luciferase reporter assays were used to verify the regulatory effect of miR-122-5p on its predicted target genes AKT3 and CCDC88C.Gene ontology(GO)and KEGG pathway analyses were performed to explore the possible roles of the top 40 significant differential miRNAs in the pathophysiology of VM.Results We identified a total of 272 differentially expressed miRNAs in VM cases,including 43 up-regulated and 229 down-regulated miRNAs.The target genes of these differential miRNAs were associated with DNA and transcription factor binding,transmembrane transporter and nucleic acid binding transcription factor activity,and cell developmental process.These miRNAs were mostly enriched in the MAPK,cGMP-PKG and Wnt signaling pathways.Verification with RT-qPCR showed that miR-122-5p expression level was significantly lower in VM group than in the control group(P<0.05),which was consistent with miRNA sequencing results;let-7b-5p expression level was significantly lower in VM group,which was contrary to miRNA sequencing result.Dual luciferase reporter assays showed that miR-122-5p was not capable of regulating AKT3 or CCDC88C expressions.Conclusions The highly abundant differentially expressed miRNAs in maternal amniotic fluid exosomes play important roles in the occurrence of fetal VM possibly by regulating the MAPK,PI3K-Akt,Wnt and cGMP-PKG signaling pathways.