1.Short-term intensive atorvastatin therapy improves endothelial function partly via attenuating perivascular adipose tissue inflammation through 5-lipoxygenase pathway in hyperlipidemic rabbits.
Xiaoqiao WANG ; Yongqin LIN ; Niansang LUO ; Zhongqing CHEN ; Miaoning GU ; Jingfeng WANG ; Yangxin CHEN ;
Chinese Medical Journal 2014;127(16):2953-2959
BACKGROUNDAtherosclerosis is a kind of disease with multiple risk factors, of which hyperlipidemia is a major classical risk factor resulting in its pathogenesis and development. The aim of this study was to determine the effects of short-term intensive atorvastatin (IA) therapy on vascular endothelial function and explore the possible mechanisms that may help to explain the clinical benefits from short-term intensive statin therapy.
METHODSAfter exposure to high-fat diet (HFD) for 8 weeks, the animals were, respectively, treated with IA or low-dose atorvastatin (LA) for 5 days. Blood lipids, C-reactive protein (CRP), tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6), nitric oxide (NO), endothelin-1 (ET-1), and endothelium-dependent vasorelaxation function were, respectively, measured. mRNA and protein expression of CRP, TNF-α, IL-6, macrophage chemoattractant protein-1 (MCP-1), and 5-lipoxygenase (5-LO) were also evaluated in pericarotid adipose tissue (PCAT) and cultured adipocytes.
RESULTSHFD increased serum inflammatory factor levels; induced significant hyperlipidemia and endothelial dysfunction, including imbalance between NO and ET-1; enhanced inflammatory factors and 5-LO expression; and promoted macrophage infiltration into adipose tissue. Five-day IA therapy could significantly decrease serum inflammatory factor levels and their expression in PCAT; restore the balance between NO and ET-1; and improve endothelial function and macrophage infiltration without significant changes in blood lipids. However, all of the above were not observed in LA therapy. In vitro experiment found that lipopolysaccharide (LPS) enhanced the expression of inflammatory factors and 5-LO in cultured adipocytes, which could be attenuated by short-time (6 hours) treatment of high-dose (5 µmol/L) but not low-dose (0.5 µmol/L) atorvastatin. In addition, inhibiting 5-LO by Cinnamyl-3,4-dihydroxy-α-cyanocinnamate (CDC, a potent and direct 5-LO inhibitor) could significantly downregulate the above-mentioned gene expression in LPS-treated adipocytes.
CONCLUSIONShort-term IA therapy could significantly ameliorate endothelial dysfunction induced by HFD, which may be partly due to attenuating inflammation of PCAT through inhibiting 5-LO pathway.
Adipose Tissue ; drug effects ; immunology ; Animals ; Arachidonate 5-Lipoxygenase ; metabolism ; Atorvastatin Calcium ; Heptanoic Acids ; therapeutic use ; Hyperlipidemias ; drug therapy ; immunology ; Inflammation ; drug therapy ; immunology ; Lipid Metabolism ; drug effects ; Male ; Pyrroles ; therapeutic use ; Rabbits
2.Establishment of UPLC characteristic chromatogram and component analysis of the volatile oil in the standard decoction of Qingshang juantong decoction
Zhiying FAN ; Qianqian ZHU ; Xiehe WANG ; Yanjuan ZHAI ; Huimin WANG ; Yangxin GU ; Haiqin ZHOU ; Tulin LU ; Kewei ZHANG ; Song LI
China Pharmacy 2024;35(9):1082-1086
OBJECTIVE To establish the characteristic chromatogram of the volatile oil in the standard decoction of Qingshang juantong decoction, and preliminarily infer the main active components of volatile oil that affect the clinical therapeutic effect. METHODS The volatile oil in the standard decoction of Qingshang juantong decoction was extracted by steam distillation. The ultra-high performance liquid chromatography (UPLC) characteristic chromatograms of 15 batches of samples were established by the Similarity Evaluation System of TCM Chromatographic Fingerprint (2012 edition), and the similarity evaluation was carried out. The volatile oil of standard decoction was identified by UPLC coupled with quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF/MS). Then the volatile oil components were analyzed by GC-MS. RESULTS The similarities of UPLC characteristic chromatograms for volatile oil of 15 batches of Qingshang juantong decoction were between 0.949 and 0.997. A total of 12 common peaks were obtained. According to the UPLC-Q-TOF/MS, the main components were methyl eugenol, E-ligustilide, E-butylidenephthalide and so on. A total of 23 components were identified by GC-MS, which were mainly 3,4,5-trimethoxy- methylbenzene, patchouli alcohol, Z-ligustilide and so on. CONCLUSIONS The characteristic chromatograms of the volatile oil in the standard decoction of Qingshang juantong decoction is established, and it is inferred that methyl eugenol, ligustilide, E- butylidenephthalide, patchouli alcohol, 3,4,5-trimethoxy-methylbenzene might be the main active components affecting the clinical therapeutic effect of the volatile oil of Qingshang juantong decoction.