1.Study on chemical constituents of Artemisia sphaerocephala.
Jie ZHANG ; Linxi LI ; Xiuhua LIU ; Yong WANG ; Dongbao ZHAO
China Journal of Chinese Materia Medica 2012;37(2):238-242
Further study on the chemical constituents of Artemisia sphaerocephala led to the isolation of fifteen compounds. These compounds were isolated and purified by repeated column chromatography on silica gel and Sephadex LH-20. Their structures were determined by physicochemical properties and spectral data analysis. These compounds were identified as 5-hydroxy-7,4'-dimethoxyflavanone (1), 5-hydroxy-7, 4'-dimethoxyflavone (2), 5-hydroxy-7, 4'-dimethoxyflavanonol (3), 5,3'-dihydroxy-7, 4'-dimethoxyflavanone (4), 5,7-dihydroxy-6,4'-dimethoxyflavone (5), isosakuranetin (6), hesperetin (7), navingenin (8), acacetin (9), chrysoeroil (10), 5,7-dihydroxy-4'-methoxyflavone-6,8-di-C- -glucopyranoside (11), didymin (12), acacetin-7-O-rutinoside (13), piceine (14), and capillarin (15). Compounds 1-3, 5, 7, 8, 10-15 were isolated from this plant for the first time.
Artemisia
;
chemistry
;
Chromatography
;
methods
;
Flavones
;
analysis
;
isolation & purification
;
Flavonoids
;
analysis
;
isolation & purification
;
Glucosides
;
analysis
;
isolation & purification
;
Plant Extracts
;
analysis
;
isolation & purification
2.New diterpenoids isolated from Leonurus japonicus and their acetylcholinesterase inhibitory activity.
Han-Kui WU ; Ting SUN ; Feng ZHAO ; Li-Ping ZHANG ; Gang LI ; Jie ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2017;15(11):860-864
Three new labdane diterpenoids, leojaponicone A (1), isoleojaponicone A (2) and methylisoleojaponicone A (3), were isolated from the herb of Leonurus japonicus. The chemical structures of these secondary metabolites were elucidated on the basis of 1D and 2D NMR, including HMQC, and HMBC spectroscopic techniques. All the new compounds were tested in vitro for their acetylcholinesterase and α-glucosidase inhibitory activity. Compounds 1-3 exhibited low inhibitory effects on α-glucosidase with respect to acarbose and exhibited high inhibitory effects on acetylcholinesterase with respect to huperzine A.
Acetylcholinesterase
;
metabolism
;
Cholinesterase Inhibitors
;
chemistry
;
isolation & purification
;
pharmacology
;
Diterpenes
;
chemistry
;
isolation & purification
;
pharmacology
;
Glycoside Hydrolase Inhibitors
;
chemistry
;
isolation & purification
;
pharmacology
;
Leonurus
;
chemistry
;
Magnetic Resonance Spectroscopy
;
Molecular Structure
;
Plant Extracts
;
chemistry
;
pharmacology
3.Effects of the ITPR1 gene overexpression on Ca²⁺ concentration, lipid content and calcium transport-related genes in duck uterine epithelial cells.
Minfang YOU ; Yuanyu QIN ; Yiyu ZHANG ; Chaomei LIAO ; Guanghui TAN ; Jiezhang LI ; Wangui LI
Chinese Journal of Biotechnology 2021;37(7):2443-2452
Inositol 1,4,5-trisphosphate receptor 1 (ITPR1) is an important intracellular channel for releasing Ca²⁺. In order to investigate the effects of the ITPR1 overexpression on Ca²⁺ concentration and lipid content in duck uterine epithelial cells and its effects on calcium transport-related genes, the structural domain of ITPR1 gene of duck was cloned into an eukaryotic expression vector and transfected into duck uterine epithelial cells. The overexpression of the ITPR1 gene, the concentration of Ca²⁺, the lipid content, and the expression of other 6 calcium transport-related genes was determined. The results showed that the concentration of Ca²⁺ in uterine epithelial cells was significantly reduced after transfection (P<0.05), the triglyceride content was significantly increased (P<0.01), and the high-density lipoprotein content was significantly decreased (P<0.01). The correlation analysis results showed that the overexpression of the C-terminal half of the ITPR1 gene was significantly positively correlated with the total cholesterol content (P<0.01), which was significantly positively correlated with the low-density lipoprotein content (P<0.05). The overexpression of the N-terminal half of the ITPR1 gene was significantly positively correlated with the triglyceride content (P<0.01), which was significantly negatively correlated with the concentration of Ca²⁺ (P<0.05). RT-qPCR results of 6 calcium transport-related genes showed that the overexpression of the C-terminal half of the ITPR1 gene significantly inhibited the expression of the IP3R2, VDAC2 and CAV1 genes, and the overexpression of the N-terminal half of the ITPR1 gene significantly promoted the expression of the IP3R3 and CACNA2D1 genes. In conclusion, the ITPR1 gene overexpression can promote Ca²⁺ release in duck uterus epithelial cells, promote the synthesis of triglyceride, low-density lipoprotein and cholesterol, and inhibit the production of high-density lipoprotein, and the ITPR1 gene overexpression affected the expression of all 6 calcium transport-related genes.
Animals
;
Calcium/metabolism*
;
Ducks/genetics*
;
Epithelial Cells
;
Female
;
Inositol
;
Inositol 1,4,5-Trisphosphate Receptors
;
Lipids
;
Uterus
4.Effects of SCD-1 gene overexpression on the content of calcium ion and lipids in duck uterine epithelial cells.
Jiezhang LI ; Hualun LUO ; Guanghui TAN ; Lei WU ; Yuanyu QIN ; Yiyu ZHANG
Chinese Journal of Biotechnology 2020;36(5):899-907
Stearoyl-CoAdesaturase-1 (SCD-1) is a key regulator of monounsaturated fatty acid synthesis. It plays a vital role in lipid synthesis and metabolism. Ca²⁺ is an important cation in the body and plays an important role in the organism. The aims of this study were to investigate the correlation of SCD-1 gene overexpression with lipid indexes and calcium ion level. The pcDNA3.1 (+) + SCD-1 +Flag eukaryotic expression vector and cultured duck uterine epithelial cells were co-transfected. The overexpression of SCD-1 gene was measured using the Flag Label Detection Kit. Ca ions and lipid contents were detected through Fluo-3/AM Calcium Ion Fluorescence Labeling method and Lipid Measuring Kit, respectively. SCD-1 gene overexpression was negatively correlated with triglyceride (TG) and high-density lipoprotein cholesterol (HDL-C), and positively correlated with Ca ion, total cholesterol (TC), very low-density lipoprotein cholesterol (VLDL-C) and low density lipoprotein cholesterol (LDL-C) levels. Meanwhile, Ca ion was positively correlated with TG, LDL-C and HDL-C contents, and negatively correlated with TC and VLDL-C levels. Overexpression of SCD-1 gene could regulate Ca ion secretion, as well as lipid synthesis and transport in duck uterine epithelial cells.
Animals
;
Calcium
;
metabolism
;
Coenzyme A Ligases
;
genetics
;
Ducks
;
Epithelial Cells
;
chemistry
;
enzymology
;
Gene Expression
;
Ions
;
Lipids
;
genetics
;
Triglycerides
;
metabolism