1.Vascular Transcriptome Profiling Reveals Aging-Related Genes in Angiotensin Ⅱ-Induced Hypertensive Mouse Aortas.
Shuang Jie LV ; Yang Nan DING ; Xiao Ya PEI ; Xiang ZHAO ; De Long HAO ; Zhu Qin ZHANG ; Hou Zao CHEN ; De Pei LIU
Chinese Medical Sciences Journal 2020;35(1):43-53
		                        		
		                        			
		                        			Objective Angiotensin Ⅱ (Ang Ⅱ)-induced vascular damage is a major risk of hypertension. However, the underlying molecular mechanism of AngⅡ-induced vascular damage is still unclear. In this study, we explored the novel mechanism associated with Ang II-induced hypertension. Methods We treated 8- to 12-week-old C57BL/6J male mice with saline and Ang Ⅱ(0.72 mg/kg·d) for 28 days, respectively. Then the RNA of the media from the collected mice aortas was extracted for transcriptome sequencing. Principal component analysis was applied to show a clear separation of different samples and the distribution of differentially expressed genes was manifested by Volcano plot. Functional annotations including Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway were performed to reveal the molecular mechanism of Ang Ⅱ-induced hypertension. Finally, the differentially expressed genes were validated by using quantitative real-time PCR. Results The result revealed that a total of 773 genes, including 599 up-regulated genes and 174 down-regulated genes, were differentially expressed in the aorta of Ang Ⅱ-induced hypertension mice model. Functional analysis of differentially expressed genes manifested that various cellular processes may be involved in the Ang Ⅱ-induced hypertension, including some pathways associated with hypertension such as extracellular matrix, inflammation and immune response. Interestingly, we also found that the differentially expressed genes were enriched in vascular aging pathway, and further validated that the expression levels of insulin-like growth factor 1 and adiponectin were significantly increased (P<0.05). Conclusion We identify that vascular aging is involved in Ang Ⅱ-induced hypertension, and insulin-like growth factor 1 and adiponectin may be important candidate genes leading to vascular aging.
		                        		
		                        		
		                        		
		                        			Aging
		                        			;
		                        		
		                        			Angiotensin II
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Aorta/physiopathology*
		                        			;
		                        		
		                        			Blood Pressure/genetics*
		                        			;
		                        		
		                        			Gene Expression Profiling/methods*
		                        			;
		                        		
		                        			Gene Ontology
		                        			;
		                        		
		                        			Hypertension/genetics*
		                        			;
		                        		
		                        			Male
		                        			;
		                        		
		                        			Mice, Inbred C57BL
		                        			;
		                        		
		                        			Reverse Transcriptase Polymerase Chain Reaction
		                        			
		                        		
		                        	
2.Advances in molecular mechanism of vascular remodeling in pulmonary arterial hypertension.
Journal of Zhejiang University. Medical sciences 2019;48(1):102-110
		                        		
		                        			
		                        			Pulmonary arterial hypertension (PAH) is a clinical hemodynamic syndrome characterized by elevated pulmonary arterial pressure and pulmonary vascular resistance leading to right heart failure and death. Vascular remodeling is the most prominent histopathological feature of PAH, which is regulated by many factors. Endoplasmic reticulum stress, calcium disorder and mitochondrial dysfunction are involved in the vascular cell proliferation and apoptosis by regulating intracellular calcium homeostasis and cellular metabolism. Epigenetic phenomenon such as DNA damage and abnormal expression of miRNA are also involved in the regulation of abnormal proliferation of vascular cells. Vascular cell phenotype switching including endothelial-mesenchymal transition and smooth muscle cell phenotype switching play an important role in abnormal proliferation of vascular cells. Vascular remodeling is produced by a variety of cells and molecular pathways, and aiming at multiple targets which is expected to find a new breakthrough in the treatment of PAH,and to improve abnormal vascular remodeling, delay or even reverse the progression of PAH.
		                        		
		                        		
		                        		
		                        			Cell Proliferation
		                        			;
		                        		
		                        			Cells, Cultured
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Hypertension, Pulmonary
		                        			;
		                        		
		                        			physiopathology
		                        			;
		                        		
		                        			MicroRNAs
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			Myocytes, Smooth Muscle
		                        			;
		                        		
		                        			pathology
		                        			;
		                        		
		                        			Pulmonary Artery
		                        			;
		                        		
		                        			pathology
		                        			;
		                        		
		                        			Vascular Remodeling
		                        			;
		                        		
		                        			genetics
		                        			
		                        		
		                        	
3.Vascular protective effects of aqueous extracts of Tribulus terrestris on hypertensive endothelial injury.
Yue-Hua JIANG ; Jin-Hao GUO ; Sai WU ; Chuan-Hua YANG
Chinese Journal of Natural Medicines (English Ed.) 2017;15(8):606-614
		                        		
		                        			
		                        			Angiotensin II (Ang II) is involved in endothelium injury during the development of hypertension. Tribulus terrestris (TT) is used to treat hypertension, arteriosclerosis, and post-stroke syndrome in China. The present study aimed to determine the effects of aqueous TT extracts on endothelial injury in spontaneously hypertensive rats (SHRs) and its protective effects against Ang II-induced injury in human umbilical vein endothelial cells (HUVECs). SHRs were administered intragastrically with TT (17.2 or 8.6 g·kg·d) for 6 weeks, using valsartan (13.5 mg·kg·d) as positive control. Blood pressure, heart rate, endothelial morphology of the thoracic aorta, serum levels of Ang II, endothelin-1 (ET-1), superoxide dismutase (SOD) and malonaldehyde (MDA) were measured. The endothelial injury of HUVECs was induced by 2 × 10 mol·L Ang II. Cell Apoptosisapoptosis, intracellular reactive oxygen species (ROS) was assessed. Endothelial nitric oxide synthase (eNOS), ET-1, SOD, and MDA in the cell culture supernatant and cell migration were assayed. The expression of hypertension-linked genes and proteins were analyzed. TT decreased systolic pressure, diastolic pressure, mean arterial pressure and heart rate, improved endothelial integrity of thoracic aorta, and decreased serum leptin, Ang II, ET-1, NPY, and Hcy, while increased NO in SHRs. TT suppressed Ang II-induced HUVEC proliferation and apoptosis and prolonged the survival, and increased cell migration. TT regulated the ROS, and decreased mRNA expression of Akt1, JAK2, PI3Kα, Erk2, FAK, and NF-κB p65 and protein expression of Erk2, FAK, and NF-κB p65. In conclusion, TT demonstrated anti-hypertensive and endothelial protective effects by regulating Erk2, FAK and NF-κB p65.
		                        		
		                        		
		                        		
		                        			Angiotensin II
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Antihypertensive Agents
		                        			;
		                        		
		                        			administration & dosage
		                        			;
		                        		
		                        			Apoptosis
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Blood Pressure
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Endothelium, Vascular
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Human Umbilical Vein Endothelial Cells
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Hypertension
		                        			;
		                        		
		                        			drug therapy
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			physiopathology
		                        			;
		                        		
		                        			Male
		                        			;
		                        		
		                        			NF-kappa B
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Nitric Oxide Synthase Type III
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Oxidative Stress
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Plant Extracts
		                        			;
		                        		
		                        			administration & dosage
		                        			;
		                        		
		                        			Proto-Oncogene Proteins c-akt
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Rats
		                        			;
		                        		
		                        			Rats, Inbred SHR
		                        			;
		                        		
		                        			Rats, Inbred WKY
		                        			;
		                        		
		                        			Reactive Oxygen Species
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Tribulus
		                        			;
		                        		
		                        			chemistry
		                        			
		                        		
		                        	
4.Effect of heat shock protein 70 on pulmonary vascular remodeling in neonatal rats with hypoxic pulmonary hypertension.
Kun-Zhen LIU ; Le WANG ; Ming-Xia LI
Chinese Journal of Contemporary Pediatrics 2016;18(2):152-158
OBJECTIVETo investigate the effect of heat shock protein 70 (HSP70) on pulmonary arterial pressure and pulmonary vascular remodeling in neonatal rats with hypoxic pulmonary hypertension (HPH).
METHODSA total of 128 Wistar neonatal rats were randomly divided into HPH model and blank control groups. According to the transfection solution, the HPH model group was further divided into normal saline group, empty virus group (viral vectors marked with a green fluorescent signal and not carrying the target gene), and virus+HSP70 group (viral vectors marked with a green fluorescent signal and carrying the target gene). The HPH model was established by inhalation of nitrogen-oxygen mixture (1.5 L/minutes and 8% oxygen). Pulmonary arterial pressure (mPAP) and the indicators of pulmonary vascular remodeling (MT% and MA%) were measured on days 3, 7, 10, and 14 of hypoxia.
RESULTSOn days 3, 7, and 10 of hypoxia, the normal saline and empty virus groups had significantly enhanced expression of HSP70 compared with the blank control group (P<0.01), and the virus+HSP70 group had significantly higher expression of HSP70 than the blank control, normal saline, and empty virus groups (P<0.01). On day 14 of hypoxia, the expression of HSP70 showed no significant difference between these groups (P>0.05). On days 3, 7, and 10 of hypoxia, the normal saline and empty virus groups showed continuous increases in mPAP compared with the blank control group (P<0.05). There was no significant difference in mPAP between the virus+HSP70 and blank control groups (P>0.05). On day 14 of hypoxia, there was no significant difference in mPAP among three subgroups of the HPH model group (P>0.05), but the mPAP in the three subgroups was significantly higher than in the blank control group (P<0.05). After 7 days of hypoxia, the normal saline and empty virus groups showed significantly higher MT% and MA% than the blank control group (P<0.05), but the two indicators showed no significant differences between the virus+HSP70 and the blank control groups (P>0.05). On day 14 of hypoxia, there were no significant differences in MT% and MA% among three subgroups of the HPH model group (P>0.05), but the MT% and MA% in the three subgroups were higher than in the blank control group (P<0.05).
CONCLUSIONSHSP70 may reduce pulmonary arterial pressure and pulmonary vascular remodeling in neonatal rats with HPH.
Animals ; HSP70 Heat-Shock Proteins ; genetics ; metabolism ; Humans ; Hypertension, Pulmonary ; cerebrospinal fluid ; metabolism ; physiopathology ; Hypoxia ; genetics ; metabolism ; physiopathology ; Oxygen ; metabolism ; Pulmonary Artery ; metabolism ; Rats ; Rats, Wistar ; Vascular Remodeling
5.Prophylactic effects of alkaloids from Ba lotus seeds on L-NNA-induced hypertension in mice.
Peng SUN ; Kai ZHU ; Cun WANG ; Wei-Wei LIU ; De-Guang PENG ; Xin ZHAO
Chinese Journal of Natural Medicines (English Ed.) 2016;14(11):835-843
		                        		
		                        			
		                        			Alkaloids from Ba lotus seeds (ABLS) are a kind of important functional compounds in lotus seeds. The present study was designed to determine its hypertension prophylactic effects in the L-NNA-induced mouse hypertension model. The mice were treated with ABLS, the serum and tissues levels of NO, MDA, ET-1, VEGF, and CGRP were determined using the experimental kits, the mRNA levels of various genes in the heart muscle and blood vessel tissues were further determined by RT-PCR assay. ABLS could reduce the systolic blood pressure (SBP), mean blood pressure (MBP), and diastolic blood pressure (DBP), compared to that of the model control group. After ABLS treatment, the NO (nitric oxide) contents in serum, heart, liver, kidney and stomach of the mice were higher than that of the control mice, but the MDA (malonaldehyde) contents were lower than that of the control mice. The serum levels of ET-1 (endothelin-1), VEGF (vascular endothelial growth factor) were decreased after ABLS treatment, but CGRP (calcium gene related peptide) level was increased. The ABLS treated mice had higher mRNA expressions of HO-1, nNOS, and eNOS and lower expressions of ADM, RAMP2, IL-1β, TNF-α, and iNOS than the control mice. Higher concentration of ABLS had greater prophylactic effects, which were close to that of the hypertension drug captopril. These results indicated the hypertension prophylactic effects of ABLS could be further explored as novel medicine or functional food in the future.
		                        		
		                        		
		                        		
		                        			Alkaloids
		                        			;
		                        		
		                        			administration & dosage
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Blood Pressure
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Disease Models, Animal
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Hypertension
		                        			;
		                        		
		                        			chemically induced
		                        			;
		                        		
		                        			drug therapy
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			physiopathology
		                        			;
		                        		
		                        			Interleukin-1beta
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Male
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Mice, Inbred ICR
		                        			;
		                        		
		                        			Nitroarginine
		                        			;
		                        		
		                        			Nymphaeaceae
		                        			;
		                        		
		                        			chemistry
		                        			;
		                        		
		                        			Seeds
		                        			;
		                        		
		                        			chemistry
		                        			;
		                        		
		                        			Tumor Necrosis Factor-alpha
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			;
		                        		
		                        			Vascular Endothelial Growth Factor A
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			metabolism
		                        			
		                        		
		                        	
6.Calpain mediated pulmonary vascular remodeling in hypoxia induced pulmonary hypertension.
Weifang ZHANG ; Tiantian ZHU ; Aizhen XIONG ; Xiaoyue GE ; Ruilai XU ; Shegui LU ; Changping HU
Journal of Central South University(Medical Sciences) 2016;41(9):929-936
		                        		
		                        			OBJECTIVE:
		                        			To explore the role of calpain in pulmonary vascular remodeling in hypoxia-induced pulmonary hypertension and the underlying mechanisms.
		                        		
		                        			METHODS:
		                        			Sprague-Dawley rats were randomly divided into the hypoxia group and the normoxia control group. Right ventricular systolic pressure (RVSP) and mean pulmonary artery pressure (mPAP) were monitored by a method with right external jugular vein cannula. Right ventricular hypertrophy index was presented as the ratio of right ventricular weight to left ventricular weight (left ventricle plus septum weight). Levels of calpain-1, -2 and -4 mRNA in pulmonary artery were determined by real-time PCR. Levels of calpain-1, -2 and -4 protein were determined by Western blot. Primary rat pulmonary arterial smooth muscle cells (PASMCs) were divided into 4 groups: a normoxia control group, a normoxia+MDL28170 group, a hypoxia group and a hypoxia+MDL28170 group. Cell proliferation was detected by MTS and flow cytometry. Levels of Ki-67 and proliferating cell nuclear antigen (PCNA) mRNA were determined by real-time PCR.
		                        		
		                        			RESULTS:
		                        			RVSP, mPAP and right ventricular remodeling index were significantly elevated in the hypoxia group compared to those in the normoxia group. In the hypoxia group, pulmonary vascular remodeling was significantly developed, accompanied by up-regulation of calpain-1, -2 and -4. MDL28170 significantly inhibited hypoxia-induced proliferation of PASMCs concomitant with the suppression of Ki-67 and PCNA mRNA expression.
		                        		
		                        			CONCLUSION
		                        			Calpain mediates vascular remodeling via promoting proliferation of PASMCs in hypoxia-induced pulmonary hypertension.
		                        		
		                        		
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Calpain
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			physiology
		                        			;
		                        		
		                        			Cell Proliferation
		                        			;
		                        		
		                        			Dipeptides
		                        			;
		                        		
		                        			physiology
		                        			;
		                        		
		                        			Hypertension, Pulmonary
		                        			;
		                        		
		                        			chemically induced
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			physiopathology
		                        			;
		                        		
		                        			Hypertrophy, Right Ventricular
		                        			;
		                        		
		                        			Hypoxia
		                        			;
		                        		
		                        			Ki-67 Antigen
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Myocytes, Smooth Muscle
		                        			;
		                        		
		                        			physiology
		                        			;
		                        		
		                        			Proliferating Cell Nuclear Antigen
		                        			;
		                        		
		                        			drug effects
		                        			;
		                        		
		                        			Pulmonary Artery
		                        			;
		                        		
		                        			Rats
		                        			;
		                        		
		                        			Rats, Sprague-Dawley
		                        			;
		                        		
		                        			Real-Time Polymerase Chain Reaction
		                        			;
		                        		
		                        			Up-Regulation
		                        			;
		                        		
		                        			Vascular Remodeling
		                        			;
		                        		
		                        			genetics
		                        			;
		                        		
		                        			physiology
		                        			
		                        		
		                        	
7.Mechanisms for reversal of pulmonary hypertension by rapamycin in rats.
Li YU ; Zhi-Yu FAN ; Liang XIE ; Chun-Yu LI ; Chao-Yi QIN ; Li-Jun LIU ; Han-Min LIU
Chinese Journal of Contemporary Pediatrics 2015;17(7):731-735
OBJECTIVETo investigate the effects of rapamycin (RAP) on pulmonary hypertension (PH) in rats, and to provide new insights into medication selection for the clinical treatment of PH.
METHODSFifty male Sprague-Dawley rats were randomly divided into blank control, PH model, solvent control, RAP 1, and RAP 2 groups. A rat model of PH was induced by left pneumonectomy (PE) and monocrotaline (MCT). At 5 days after PH model establishment, the solvent control group and the RAP 1 group received an intramuscular injection of solvent and RAP, respectively. At 35 days after PH model establishment, the RAP 2 group received an intramuscular injection of RAP. The mean pulmonary artery pressure (mPAP) and the right ventricle/left ventricle plus septum weight ratio (RV/LV+S) were measured in each group. Histopathological changes in the right lung were evaluated by hematoxylin-eosin (HE) staining. The relative expression of alpha-smooth muscle actin (α-SMA) and smooth muscle protein 22-alpha (SM22α) in each group was determined using real-time PCR.
RESULTSAt 35 days after surgery, the PH model and the solvent control groups had significantly higher mPAP and RV/LV+S than the blank control group, while the RAP 1 and the RAP 2 groups had significantly lower mPAP than the solvent control group (P<0.05). The RV/LV+S in the RAP 1 group was significantly lower than that in the solvent control group (P<0.05); however, there was no significant difference in RV/LV+S between the RAP 2 and the solvent control groups (P>0.05). HE staining in the right lung showed the substantially thickened pulmonary artery wall and narrowed arterial lumen in the PH model and the solvent control groups compared with the blank control group. Different degrees of reversal of the pulmonary artery wall thickening were observed after RAP administration. The results of real-time PCR revealed that the relative expression of α-SMA and SM22α in the PH model and the solvent control groups was significantly lower than in the blank control group, while the relative expression of α-SMA and SM22α in the RAP 1 and the RAP 2 groups was significantly higher than in the solvent control group (P<0.05).
CONCLUSIONSRAP can reverse the increase in pulmonary artery pressure and the right ventricular hypertrophy probably by regulation of the phenotypic conversion of vascular smooth muscle cells.
Actins ; genetics ; Animals ; Hemodynamics ; Hypertension, Pulmonary ; drug therapy ; physiopathology ; Hypertrophy, Right Ventricular ; etiology ; Male ; Microfilament Proteins ; genetics ; Muscle Proteins ; genetics ; Pulmonary Artery ; pathology ; RNA, Messenger ; analysis ; Rats ; Rats, Sprague-Dawley ; Sirolimus ; therapeutic use
8.Effect of sesamin on pulmonary vascular remodeling in rats with monocrotaline-induced pulmonary hypertension.
Xian-wei LI ; Yun-xing GAO ; Shu LI ; Jie-ren YANG
China Journal of Chinese Materia Medica 2015;40(7):1355-1361
OBJECTIVETo observe the effect of sesamin (Ses) on pulmonary vascular remodeling in rats with monocrotaline ( MCT)-induced pulmonary hypertension (PH).
METHODTotally 48 male Sprague-Dawley (SD) rats were fed adaptively for one week and then divided into the normal control group, the MCT group, the MCT +Ses (50 mg x kg(-1)) group and the MCT + Ses (100 mg x kg(-1)) group, with 12 rats in each group. The PH rat model was induced through the subcutaneous injection with MCT(60 mg x kg(-1)). After the administration for four weeks, efforts were made to measure the right ventricular systolic pressure( RVSP) and mean pulmonary artery pressure (mPAP) through right jugular vein catheterization, and isolate right ventricle( RV) and left ventricle( LV) +septum (S) and measure their length to calculate RV/ ( LV + S) and ratio of RV to tibial length. Pathologic changes in arterioles were observed by HE staining. Masson's trichrome stain was used to demonstrate changes in collagen deposition of arterioles. The alpha-smooth muscle actin (alpha-SMA) expression in pulmonary arteries was measured by immunohistochemisty. The total antioxidative capacity (T-AOC) and malondialdehyde (MDA) content in pulmonary arteries were determined by the colorimetric method. The protein expressions of collagen I, NOX2 and NOX4 were analyzed by Real-time PCR and Western blot.
RESULTAfter the administration for 4 weeks, Ses could attenuate RVSP and mPAP induced by MCT, RV/ (LV + S) and ratio of RV to Tibial length, alpha-SMA and collagen I expressions and remodeling of pulmonary vessels and right ventricle. Meanwhile, Ses could obviously inhibit the expressions of NOX2, NOX4 and MDA content and increase T-AOC.
CONCLUSIONSesamin could ameliorate pulmonary vascular remodeling induced by monocrotaline in PH rats. Its mechanism may be related to expressions of NOX2 and NOX4 expression and reduction in oxidative stress injury.
Animals ; Dioxoles ; administration & dosage ; Disease Models, Animal ; Drugs, Chinese Herbal ; administration & dosage ; Humans ; Hypertension, Pulmonary ; drug therapy ; enzymology ; genetics ; physiopathology ; Lignans ; administration & dosage ; Lung ; blood supply ; enzymology ; metabolism ; Male ; Membrane Glycoproteins ; genetics ; metabolism ; Monocrotaline ; adverse effects ; NADPH Oxidase 2 ; NADPH Oxidase 4 ; NADPH Oxidases ; genetics ; metabolism ; Pulmonary Artery ; drug effects ; metabolism ; physiopathology ; Rats ; Rats, Sprague-Dawley ; Vascular Remodeling ; drug effects
9.Effect of panax notoginseng saponins injection on the p38MAPK pathway in lung tissue in a rat model of hypoxic pulmonary hypertension.
Shan ZHAO ; Meng-xiao ZHENG ; Hai-e CHEN ; Cheng-yun WU ; Wan-tie WANG
Chinese journal of integrative medicine 2015;21(2):147-151
OBJECTIVETo investigate the effect of panax notoginseng saponins (PNS) injection on pulmonary artery pressure and the expression of p38MAPK in lung tissue of rats subjected to chronic hypoxia.
METHODSThirty adult male Sprague Dawley rats were randomly divided into three groups (ten in each group): rats in control group were exposed to normoxic condition and the rats in hypoxia group and PNS group were subjected to 4-week hypoxia, and PNS injection (50 mg · kg(-1) · d(-1)) was administrated intraperitoneally at 30 min in the PNS group daily before the rats were kept in the hypoxic chamber, while rats in the other two groups received equal dose of normal saline instead. After chronic hypoxia, mean pulmonary artery pressure (mPAP) and mean carotid artery pressure (mCAP) were measured. The heart and lung tissues were harvested, and right ventricle (RV) and left ventricle plus ventricular septum (LV+S) were weighed to calculate the ratio of RV/(LV+S). The expression of p38MAPK mRNA was determined by reverse transcription-polymerase chain reaction, the quantity of phosphorylated p38MAPK (p-p38MAPK) in rat lung tissues and pulmonary arterioles was determined by Western blot and immunohistochemistry.
RESULTSCompared with the control group, mPAP and the ratio of RV/(LV+S) in the hypoxia group were increased, the expression of p-p38MAPK in pulmonary arterioles and p38MAPK mRNA in the lung were higher (P<0.05). The changes of these parameters in the hypoxia group were significantly attenuated by PNS treatment (P<0.05).
CONCLUSIONPNS injection was shown to prevent hypoxic pulmonary hypertension at least partly by regulating p38MAPK pathway.
Animals ; Arterioles ; drug effects ; metabolism ; Blood Pressure ; drug effects ; Blotting, Western ; Carotid Arteries ; drug effects ; physiopathology ; Disease Models, Animal ; Heart Ventricles ; drug effects ; physiopathology ; Hemodynamics ; drug effects ; Hypertension, Pulmonary ; complications ; enzymology ; physiopathology ; Hypoxia ; complications ; enzymology ; physiopathology ; Injections ; Lung ; drug effects ; enzymology ; pathology ; physiopathology ; MAP Kinase Signaling System ; drug effects ; Male ; Panax notoginseng ; chemistry ; Pulmonary Artery ; drug effects ; physiopathology ; RNA, Messenger ; genetics ; metabolism ; Rats, Sprague-Dawley ; Saponins ; administration & dosage ; pharmacology ; p38 Mitogen-Activated Protein Kinases ; genetics ; metabolism
10.A Polymorphism of the Renin Gene rs6682082 Is Associated with Essential Hypertension Risk and Blood Pressure Levels in Korean Women.
Jongkeun PARK ; Kijun SONG ; Yangsoo JANG ; Sungjoo KIM YOON
Yonsei Medical Journal 2015;56(1):227-234
		                        		
		                        			
		                        			PURPOSE: The aim of the present study was to investigate associations between the renin gene (REN) and the risk of essential hypertension and blood pressure (BP) levels in Koreans. MATERIALS AND METHODS: To outline the functional role of a single nucleotide polymorphism in the transcription of the REN gene, we conducted a case-control study of 1975 individuals: 646 hypertension (HT) patients and 1329 ethnically and age-matched normotensive subjects. RESULTS: Logistic regression analysis indicated that the genotypes AA/AG were strongly associated with risk of HT (odds ratio, 1.493; 95% confidence interval, 1.069-2.086, p=0.018) in female subjects. The genotypes AA/AG also showed significant association with higher blood pressure levels, both systolic and diastolic, in postmenopausal HT women (p=0.003 and p=0.017, respectively). Analysis of the promoter containing rs6682082 revealed a 2.4+/-0.01-fold higher activity in the A variant promoter than the G variant promoter, suggesting that rs6682082 is itself a functional variant. CONCLUSION: We suggest that the A allele of rs6682082 is a positive genetic marker for predisposition to essential hypertension and high BP in Korean women and may be mediated through the transcriptional activation of REN.
		                        		
		                        		
		                        		
		                        			Alleles
		                        			;
		                        		
		                        			Asian Continental Ancestry Group/*genetics
		                        			;
		                        		
		                        			Blood Pressure/*genetics
		                        			;
		                        		
		                        			Case-Control Studies
		                        			;
		                        		
		                        			Diastole/genetics
		                        			;
		                        		
		                        			Female
		                        			;
		                        		
		                        			Gene Frequency
		                        			;
		                        		
		                        			*Genetic Association Studies
		                        			;
		                        		
		                        			*Genetic Predisposition to Disease
		                        			;
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Hypertension/*genetics/*physiopathology
		                        			;
		                        		
		                        			Luciferases/metabolism
		                        			;
		                        		
		                        			Middle Aged
		                        			;
		                        		
		                        			Polymorphism, Single Nucleotide/*genetics
		                        			;
		                        		
		                        			Promoter Regions, Genetic/genetics
		                        			;
		                        		
		                        			Renin/*genetics
		                        			;
		                        		
		                        			Republic of Korea
		                        			;
		                        		
		                        			Risk Factors
		                        			;
		                        		
		                        			Systole/genetics
		                        			;
		                        		
		                        			Transfection
		                        			
		                        		
		                        	
            
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