1.Antihypertensive effect and mechanism of Dendrobium officinale flos on high-blood pressure rats induced by high glucose and high fat compound alcohol.
Kai-Lun LIANG ; Ping FANG ; Qiu-Qiu SHI ; Jie SU ; Bo LI ; Su-Hong CHEN ; Gui-Yuan LV
China Journal of Chinese Materia Medica 2018;43(1):147-153
This study aimed to investigate the antihypertensive effect and possible mechanism of Dendrobium officinale flos on hypertensive rats induced by high glucose and high fat compound alcohol. The hypertensive models were successfully made by high-glucose and high-fat diet, with gradient drinking for 4 weeks, and then divided into model control group, valsartan (5.7 mg·kg⁻¹) positive control group and D. officinale flos groups (3,1 g·kg⁻¹). After 6 weeks of treatment, the blood pressure of rats was measured regularly. After the last administration, endothelin-1 (ET-1), thromboxane B₂ (TXB₂), prostacyclin (PGI₂) and nitric oxide (NO) were tested. Endothelial nitric oxide synthase (eNOS) expression and lesion status in thoracic aorta were detected. The vascular endothelium dependent dilation of the thoracic aorta was detected by the isolated vascular loop tension test. The results showed that D. officinale flos could significantly reduce systolic blood pressure and mean arterial pressure in hypertensive rats, inhibit the thickening of thoracic aorta and the loss of endothelial cells, reduce plasma content of ET-1 and TXB₂, and increase the content of PGI₂ and NO. After long-term administration, vascular endothelium dependent dilation of the thoracic aorta was significantly increased, and could be blocked by the eNOS inhibitor (L-NAME) and increase the expression of eNOS. Therefore, D. officinale flos has an obvious antihypertensive effect on high glucose and high fat compound alcohol-induced hypertensive rats. Its mechanism may be correlated with the improvement of vascular diastolic function by protecting vascular endothelial cells, and finally resist hypertension.
Animals
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Antihypertensive Agents
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pharmacology
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Blood Pressure
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Dendrobium
;
chemistry
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Diet, High-Fat
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Drugs, Chinese Herbal
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pharmacology
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Endothelin-1
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blood
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Endothelium, Vascular
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drug effects
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Epoprostenol
;
blood
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Glucose
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Hypertension
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chemically induced
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drug therapy
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Nitric Oxide
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blood
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Nitric Oxide Synthase Type III
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metabolism
;
Rats
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T-Box Domain Proteins
;
blood
;
Vasodilation
2.Silencing of endothelin-1 suppresses growth, migration, and invasion of nasopharyngeal carcinoma cells in vitro.
Shao-Xiong LIN ; Yong ZHANG ; Juan LU ; Xiong LIU ; Xiang-Ping LI
Journal of Southern Medical University 2016;36(7):915-920
OBJECTIVETo explore the role of endothelin-1 (ET-1) gene in regulating the proliferation, migration and invasion of nasopharyngeal carcinoma cells.
METHODSA lentivirus-mediated shRNA-ET-1 vector was infected into 5-8F cells, and the interference efficiency was examined with Western blotting. MTT assay, cell cycle analysis, plate colony formation assay, Transwell assay, Boyden chamber assay and tumor growth assay were carried out to analyze the changes in cell proliferation, migration and invasion. The expressions of genes related with epithelial-mesenchymal transition (EMT) were examined using Western blotting.
RESULTSshRNA-ET-1 transfection significantly inhibited the expression of ET-1, and suppressed the growth, migration and invasion of 5-8F cells. ET-1 knockdown enhanced the expression of E-cadherin and CK18 and inhibited the expression of N-cadherin and vimentin.
CONCLUSIONET-1 promotes cell growth, migration and invasion by modulating the genes associated with epithelial-mesenchymal transition in nasopharyngeal carcinoma cells.
Antigens, CD ; metabolism ; Cadherins ; metabolism ; Carcinoma ; genetics ; pathology ; Cell Cycle ; Cell Line, Tumor ; Cell Movement ; Cell Proliferation ; Endothelin-1 ; genetics ; Epithelial-Mesenchymal Transition ; Gene Silencing ; Humans ; Lentivirus ; Nasopharyngeal Neoplasms ; genetics ; pathology ; Neoplasm Invasiveness ; RNA, Small Interfering ; genetics ; Transfection ; Vimentin ; metabolism
3.Effect of electroacupuncture stimulation on expression of angiotensinogen, angiotensin II type 1 receptor, endothelin-1, and endothelin a receptor mRNA in spontaneously hypertensive rat aorta.
Ze-Jun HUO ; Dong LI ; Jia GUO ; Sai LI ; Ning DING ; Zhi-Xin LI
Chinese journal of integrative medicine 2016;22(10):778-782
OBJECTIVETo observe the effect of electroacupuncture (EA) stimulation on the expressions of angiotensinogen (AGT), angiotensin II type 1 receptor (AT1R), endothelin-1 (ET1), and endothelin A receptor (ETAR) mRNA in spontaneously hypertensive rat (SHR) aorta.
METHODSEighteen male SHRs were randomly divided into three groups, an SHR group, an SHR Baihui (DU 20) and Zusanli (ST 36) acupoint (SHR-AP) group, and an SHR non-acupoint (SHR-NAP) group, with 6 rats in each group. Six Wistar rats were used as a control. Rats in the SHR-AP group were stimulated by DU 20 and ST 36 acupoints, both of which were connected with EA. EA was handled one time every Monday, Wednesday and Friday, for total 24 times (8 weeks). SHRNAP rats were acupointed at a 15°angle flat into 0.5 cm to two points, which were 1 and 2 cm from rail tip separately. EA parameters were the same as the SHR-AP rats. SHR control rats and Wistar rats were fixed without EA. Real-time quantitative polymerase chain reaction (PCR) was used to measure AGT, AT1R, ET1, and ETAR mRNA expression in rat aorta.
RESULTSEA stimulation significantly reduced rat aorta vascular AGT, ET1, ETAR and AT1R mRNA expressions in the SHR-AP and SHR-NAP groups (P <0.01). Among these four genes, AT1R mRNA expression was significantly lower in the SHR-AP than in the SHR-NAP group (P <0.01).
CONCLUSIONEA could reduce the AT1R mRNA expression in SHR-AP rat aorta, indicating a potential mechanism for the hypotensive effects of EA.
Angiotensinogen ; genetics ; metabolism ; Animals ; Aorta ; metabolism ; physiopathology ; Blood Pressure ; Electroacupuncture ; Endothelin-1 ; genetics ; metabolism ; Gene Expression Regulation ; Male ; RNA, Messenger ; genetics ; metabolism ; Rats, Inbred SHR ; Receptor, Angiotensin, Type 1 ; genetics ; metabolism ; Receptor, Endothelin A ; genetics ; metabolism
4.Effects of electroacupuncture at different acupoints on apoptosis and the expression of miRNAs in myocardial cells in rats model of myocardial ischemia.
Hua WANG ; Jidong LU ; Song WU ; Shuxia YANG ; Lushan WANG ; Huanjiao ZHOU ; Yimeng FU ; Jianmin LIU
Chinese Acupuncture & Moxibustion 2016;36(3):281-286
OBJECTIVETo observe the effects of electroacupuncture (EA) at different acupoints on apoptosis-related serum and expression of microRNA (miRNA) in rats with myocardial ischemia, so as to explore its mechanism of action.
METHODSA total of 48 male Wistar rats were randomly divided into a normal group, a model group, a Neiguan group and a acupoint compatibility group, 12 rats in each group. Isoprenaline hydrochloride (ISO) with a daily dose of 2 mg/kg was subcutaneously injected for 14 days to establish the myocardial ischemia model in the model group, Neiguan group and acupoint compatibility group. Rats in the normal group were subcutaneously injected with an equal volume of normal saline. After modeling, rats in the Neiguan group were treated with EA at "Neiguan" (PC 6), while rats in the acupoint compatibility group were treated with EA at "Guanyuan" (CV 4), "Zusanli" (ST 36) and "Neiguan" (PC 6). Rats in the normal group and model group were treated with immobilization, once day for 21 days. The contents of creatine kinase-MB (CK-MB), vascular cell adhesion molecule-1 (VCAM-1) and endothelin-1 (ET-1) in serum were detected by enzyme-linked immunosorbent assay (ELISA); apoptosis index (AI) of myocardial cells was detected by TUNEL method; the expressions of miRNA-1, miRNA-133, miRNA-208 and miRNA-499 were detected by real-time PCR method.
RESULTSCompared with the normal group, the serum CK-MB, VCAM-1 and ET-1 were significantly increased in the model group, Neiguan group and acupoint compatibility group (all P < 0.01), and the apoptosis index was significantly increased (all P < 0.01). The CK-MB, VCAM-1 and ET-1 in the Neiguan group and acupoint compatibility group were significantly lower than those in the model group (all P < 0.01); the AI was reduced, which was more significant in the acupoint compatibility group (P < 0.05). Compared with the normal group, the expression of miRNA-133 was reduced (P < 0.01) and those of miRNA-208, miRNA-1 and miRNA-499 were significantly increased in the model group (all P < 0.01). Compared with the model group, the expression of miRNA-133 was increased (both P < 0.01) and that of miRNA-208, miRNA-1 and miRNA-499 were significantly reduced (all P < 0.01) in the Neiguan group and acupoint compatibility group. Compared with the Neiguan group, the expression of miRNA-133 was increased (P < 0.01) and those of miRNA-208, miRNA-1 and miRNA-499 were significantly reduced in the acupoint compatibility group (P < 0.01, P < 0.05).
CONCLUSIONEA at acupoints, especially acupoint compatibility group, could effectively prevent and treat myocardial ischemia, and the protective effect is possibly correlated to the double regulation on increasing the expression of miRNA-133 and inhibiting the expression of miRNA-1, miRNA-208, miRNA-499.
Acupuncture Points ; Animals ; Apoptosis ; Disease Models, Animal ; Electroacupuncture ; Endothelin-1 ; genetics ; metabolism ; Humans ; Male ; MicroRNAs ; genetics ; metabolism ; Myocardial Ischemia ; genetics ; metabolism ; physiopathology ; therapy ; Myocytes, Cardiac ; metabolism ; Rats ; Rats, Wistar
5.Protective effect of peperphentonamine injection through the otocyst against gentamicin- induced cochlear damage in guinea pigs.
Bo-Bo LI ; Jian WU ; Jing CHEN ; Hao CHEN ; Yong-He LI
Journal of Southern Medical University 2016;36(4):557-561
OBJECTIVETo explore the relationship of gentamicin-induced cochlear damage with autophagy-related protein LC3, beclin1, Na(+-)K(+-)2Cl(-) cotransporter (NKCC1) mRNA and endothelin-1 (ET-1), and investigate the protective mechanism of PPTA against gentamicin-induced cochlear damage.
METHODSSixty guinea pigs were randomly divided into control group (with saline and artificial perilymph injections), model group (with gentamicin and artificial perilymph injections), concurrent treatment group (with gentamicin and PPTA injections), model control group (with artificial perilymph injection 7 days after gentamicin injection) and delayed treatment group (with PPTA injection 7 days after gentamicin injection). Saline and gentamicin (160 mg/kg) were injected intraperitoneally, and artificial perilymph and PPTA were injected into the otocysts on a daily basis for 7 consecutive days. Hearing impairment of the guinea pigs was analyzed with ABR, and the protein expressions of beclin1 and LC3 in cochlear tissue were tested. The expression of NKCC1 mRNA was detected with RT-PCR, and the expression of ET-1 was detected immunohistochemically.
RESULTSThe ABR thresholds in the model group and model control group were similar (P>0.05) , but significantly higher than those in the other 3 groups (P<0.05); the threshold was significantly lower in concurrent treatment group than in delayed treatment group (P<0.05). Compared with those in the other 4 groups, the expressions of LC3 II, beclin1, and NKCC1 mRNA were significantly increased in the model group (P<0.05); and those in delayed treatment group were significantly lower than those in the model control group (P<0.05). The expressions of ET-1 in the Corti organ, striavascularis and spiral ganglion were significantly higher in the model group but significantly lower in the control group than those in the other 4 groups; ET-1 expression was significantly lower in delayed treatment group than in the model control group.
CONCLUSIONPPTA offers protection against gantamicin-induced cochlear damage in guinea pigs by inhibiting cell autophagy and suppressing of NKCC1 and ET-1 expressions. Early intervention with PPTA produces better therapeutic effect, suggesting that gantamicin causes irreversible injury of the auditory cells.
3,4-Methylenedioxyamphetamine ; analogs & derivatives ; pharmacology ; Animals ; Apoptosis Regulatory Proteins ; metabolism ; Beclin-1 ; Cochlea ; drug effects ; Endothelin-1 ; metabolism ; Gentamicins ; adverse effects ; Guinea Pigs ; Hearing Loss ; chemically induced ; prevention & control ; Microtubule-Associated Proteins ; metabolism ; Solute Carrier Family 12, Member 2 ; metabolism
6.Suppressive effect of hydrogen sulfide donor on endothelin-1 production in aorta of atherosclerotic rats.
Wei LI ; Junbao DU ; Hongfang JIN ; Email: JINHONGFANG51@126.COM.
Chinese Journal of Pediatrics 2015;53(6):448-452
OBJECTIVETo examine the effect of H2S donor, sodium hydrosulfide (NaHS), on ET-1 level in plasma and aorta in rats with atherosclerosis (AS).
METHODThirty male rats, weighting 200-220 g, were randomly divided into AS, AS+NaHS and control groups, n = 10 in each group.Rats were given a single dose of vitamin D3 (700 000 U/kg) in the first three days and fed with a high-cholesterol diet for 8 weeks to induce AS. Rats in AS+NaHS group were intraperitoneally injected with an H2S donor NaHS, at a dose of 56 µmol/(kg·d) for 8 weeks. At the end of the experiment for 8 weeks, all the rats were sacrificed. The plasma was collected and the aorta and coronary tissues were isolated. The atherosclerotic lesions in both aorta and coronary arteries were detected using oil red O method. H2S concentration in plasma was determined with sulfide-sensitive electrode method. ET-1 levels in plasma and aorta were calculated by radioimmunoassay kit and the localization of ET-1 in the aorta was detected by immunohistochemistry. Plasma nitric oxide synthase (NOS), endothelial NOS (eNOS), inducible NOS (iNOS) were detected with colorimetry.
RESULTAS plaque area in root of aorta of rats in AS group, AS+NaHS group and control group were (11.6±3.3)%, (1.6±1.1)%, (0.0±0.1)% respectively. The difference in AS plaque area in root of aorta among the three groups was statistically significant (F=97.675, P < 0.05). AS plaque area in coronary artery of rats in AS group, AS+NaHS group and control group were (21.4±5.7)%, (4.8±2.5)%, (0.0±0.0)% respectively. The difference in AS plaque area in coronary artery among the three groups was statistically significant (F=97.519, P < 0.05). Plasma H2S level in rats of AS group ((22.0±3.1) µmol/L) was significantly lower than that of control group ((27.9±1.0) µmol/L) and AS+NaHS group ((33.3±6.2) µmol/L, all P < 0.05). Compared with control group ((70.0±10.7) ng/L), plasma ET-1 in rats of AS group ((89.6±14.2) ng/L) and AS+NaHS group ((93.1±15.5) ng/L, P both < 0.05) were increased. However, there was no significant difference in plasma ET-1 content in rats between AS+NaHS group and AS group (P > 0.05). Compared with control group ((3.8±1.2) ng/g), ET-1 content in aorta in rats of AS group ((11.9±4.9) ng/g) and AS+NaHS group ((8.2±2.5) ng/g, both P < 0.05) were increased, and ET-1 content in aorta in rats of AS+NaHS group was decreased compared with AS group (P < 0.05). Immunochemistry results showed that ET expression in cytoplasm in aortic endothelial cells in rats of AS group was strengthened, while ET expression in rats of control group and AS+NaHS group was weak. NOS activity of rats in control group, AS group and AS+NaHS group was (25.4±5.6), (51.8±10.0) and (27.6±6.5) U/ml, eNOS activity (15.3±6.2), (4.5±2.7) and (8.7±3.9) U/ml, and iNOS activity (9.9±4.0), (47.3±10.7) and (19.0±5.2) U/ml, respectively.Differences among the three groups were statistically significant (NOS activity: F=37.231, P < 0.05, eNOS activity: F=14.600, P < 0.05, and iNOS activity: F=72.131, P < 0.05).
CONCLUSIONH2S donor NaHS reduced the AS plaque in AS rats. The mechanisms might involve the protective effect of H2S on the vascular endothelial cell, decreasing ET-1 production in aortal endothelium of atherosclerotic rats.
Animals ; Aorta ; metabolism ; pathology ; Atherosclerosis ; metabolism ; pathology ; Coronary Vessels ; pathology ; Disease Models, Animal ; Endothelin-1 ; blood ; metabolism ; Hydrogen Sulfide ; pharmacology ; Male ; Nitric Oxide Synthase Type II ; metabolism ; Nitric Oxide Synthase Type III ; metabolism ; Random Allocation ; Rats ; Sulfides ; pharmacology
7.The Effect of Umbilical Cord Blood Derived Mesenchymal Stem Cells in Monocrotaline-induced Pulmonary Artery Hypertension Rats.
Hyeryon LEE ; Jae Chul LEE ; Jung Hyun KWON ; Kwan Chang KIM ; Min Sun CHO ; Yoon Sun YANG ; Wonil OH ; Soo Jin CHOI ; Eun Seok SEO ; Sang Joon LEE ; Tae Jun WANG ; Young Mi HONG
Journal of Korean Medical Science 2015;30(5):576-585
Pulmonary arterial hypertension (PAH) causes right ventricular failure due to a gradual increase in pulmonary vascular resistance. The purposes of this study were to confirm the engraftment of human umbilical cord blood-mesenchymal stem cells (hUCB-MSCs) placed in the correct place in the lung and research on changes of hemodynamics, pulmonary pathology, immunomodulation and several gene expressions in monocrotaline (MCT)-induced PAH rat models after hUCB-MSCs transfusion. The rats were grouped as follows: the control (C) group; the M group (MCT 60 mg/kg); the U group (hUCB-MSCs transfusion). They received transfusions via the external jugular vein a week after MCT injection. The mean right ventricular pressure (RVP) was significantly reduced in the U group after the 2 week. The indicators of RV hypertrophy were significantly reduced in the U group at week 4. Reduced medial wall thickness in the pulmonary arteriole was noted in the U group at week 4. Reduced number of intra-acinar muscular pulmonary arteries was observed in the U group after 2 week. Protein expressions such as endothelin (ET)-1, endothelin receptor A (ERA), endothelial nitric oxide synthase (eNOS) and matrix metalloproteinase (MMP)-2 significantly decreased at week 4. The decreased levels of ERA, eNOS and MMP-2 immunoreactivity were noted by immnohistochemical staining. After hUCB-MSCs were administered, there were the improvement of RVH and mean RVP. Reductions in several protein expressions and immunomodulation were also detected. It is suggested that hUCB-MSCs may be a promising therapeutic option for PAH.
Animals
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Cytokines/metabolism
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Disease Models, Animal
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Endothelin-1/metabolism
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Fetal Blood/*cytology
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Gene Expression Regulation/drug effects
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Hemodynamics
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Humans
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Hypertension, Pulmonary/chemically induced/*therapy
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Hypertrophy, Right Ventricular/physiopathology
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Immunohistochemistry
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Lung/metabolism/pathology
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Male
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Matrix Metalloproteinase 2/metabolism
;
*Mesenchymal Stem Cell Transplantation
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Mesenchymal Stromal Cells/*cytology/metabolism
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Monocrotaline/toxicity
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Nitric Oxide Synthase Type III/metabolism
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Pulmonary Artery/pathology
;
Rats
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Rats, Sprague-Dawley
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Receptor, Endothelin A/metabolism
8.Effect of Magnesium Sulfate, Nifedipine Tablet Combined Salvia Injection on ET-1/NO, TXA2/PGI2 and Hemorheology of Preeclampsia Patients.
Xiao-ying ZHENG ; Jing YAO ; Jia-mei ZHU ; Mei LI ; Shu-qiong QIU ; Zhao-xia ZHU ; Ming ZHANG
Chinese Journal of Integrated Traditional and Western Medicine 2015;35(8):962-965
OBJECTIVETo observe the effect of magnesium sulfate, Nifedipine Tablet (NT) combined Salvia Injection (SI) on endothelin-1 (ET-1), nitric oxide (NO), thromboxane A2(TXA2), prostacyclin I2(PG2), and hemorheology of preeclampsia patients.
METHODSTotally 704 preeclampsia patients were randomly assigned to the treatment group and the control group, 352 cases in each group. All patients were treated with magnesium sulfate combined NT (on the first day: slow intravenous injection of magnesium sulfate 5 g + intravenous dripping of magnesium sulfate injection 10 g + oral administration of NT 30 mg; on the second and third day, intravenous dripping of magnesium sulfate injection 10 g + oral administration of NT 30 mg), while those in the treatment group were dripped with SI additionally at 20 mL per day for 3 consecutive days. Before and after treatment plasma levels of endothelin-1 (ET-1), nitric oxide (NO), TXA2, PGi2, and hemorheology indicators [such as high blood viscosity (HBV), low blood viscosity (LBV), plasma viscosity (PV), erythrocyte rigidity index (ERI), fibrinogen (FIB)] of two groups were detected.
RESULTSCompared with the same group before treatment, serum levels of ET-1, TXA2, HBV, LBV, PV, ERI, and FIB decreased in the two groups after treatment (P <0. 05), but levels of NO and PG2 increased (P <0. 05). Compared with the control group in the same period, levels of ET-1, TXA2, HBV, LBV, PV, ERI, and FIB decreased in the treatment group after treatment (P <0. 05), but levels of NO and PGI2 increased (P <0. 05).
CONCLUSIONMagnesium sulfate, NT combined SI could effectively regulate the balance of ET-1/NO and TXA2/PGI2, and improve hemorheology of preeclampsia patients.
Drug Therapy, Combination ; Drugs, Chinese Herbal ; pharmacology ; therapeutic use ; Endothelin-1 ; metabolism ; Epoprostenol ; metabolism ; Female ; Hemorheology ; Humans ; Injections ; Magnesium Sulfate ; administration & dosage ; pharmacology ; therapeutic use ; Nifedipine ; administration & dosage ; pharmacology ; therapeutic use ; Nitric Oxide ; metabolism ; Pre-Eclampsia ; drug therapy ; Pregnancy ; Salvia ; Tablets ; Thromboxane A2 ; metabolism
9.The changes of vascular active substances in pulmonary embolism rats and a comparative study of anticoagulant drugs.
Ying ZHANG ; Wei FENG ; Cun-zi YAN ; Ai-mu-xi-ka-mai-er Ai-he-mai-ti XI ; Yong LIN ; Hui LU
Chinese Journal of Applied Physiology 2015;31(2):178-185
OBJECTIVETo establish the rat model of acute pulmonary embolism, and study the changes of vascular active substances in pulmonary embolism rats, and investigate the interventive effect of anticoagulant drugs on vascular active substances.
METHODSOne hundred and twenty-eight rats were randomly divided into four groups: control group, model group, low-molecular-weight heparin and warfarin treated group and rivaroxaban-treated group (n = 32 in each group). The method of autologous thrombosis was used to establish the animal model of acute pulmonary embolism. The animals were treated with saline or different anticoagulant drugs. The physiological and biochemical parameters were detected at different time points after embolization. The rats were killed after embolism of 24 h, 3 d, 5 d or 1 week respectively and the pathologic samples of lung tissues were collected to analyze the pulmonary pathological changes in different groups.
RESULTSRats in embolization group after blood clots injection showed shortness of breath, oral cyanosis; quicken heart rates and other symptoms. All embolization groups had pulmonary hypertension, the levels of type B natriuretic peptide (BNP) were increased significantly. The ratio of endothelin-1 (ET-1)/NO and thromboxane (TXB2) and prostacyclin (6-k-PGFla) were abnormal. After treated with effective anticoagulant drugs, the levels of BNP, ET-1, NO, TXB2 and 6-k-PGF1a were tended to the normal levels in the control group. The pulmonary hypertensions were gradually decreased. The efficacy of rivaroxaban on pulmonary embolism was the same as that of the low molecular weight heparin or warfarin.
CONCLUSIONAnticoagulation therapy can effectively improve endothelial function after pulmonary embolism, reduce pulmonary hypertension, and revise the increased BNP levels to normal levels. The efficacy of rivaroxaban is not inferior to that of low molecular weight heparin and warfarin.
Animals ; Anticoagulants ; pharmacology ; Disease Models, Animal ; Endothelin-1 ; metabolism ; Heparin, Low-Molecular-Weight ; pharmacology ; Hypertension, Pulmonary ; drug therapy ; metabolism ; Lung ; pathology ; Morpholines ; pharmacology ; Pulmonary Embolism ; drug therapy ; metabolism ; Rats ; Rivaroxaban ; Thiophenes ; pharmacology ; Warfarin ; pharmacology
10.Effect of Tripterygium glycosides on expression of hypoxia inducible factor-1α and endothelin-1 in kidney of diabetic rats.
Wei-Dong CHEN ; Bao-Chao CHANG ; Yan ZHANG ; Ping YANG ; Lei LIU
Journal of Southern Medical University 2015;35(4):499-505
OBJECTIVETo observe the effect of Tripterygium glycosides (TG) on the expression of hypoxia-inducible factor-1α and endothelin-1 in the kidney of diabetic rats and explore the possible mechanism underlying the protective effect of TG against diabetic nephropathy.
METHODSSixty 8-week-old male SD rats were randomly divided into normal control group (n=10) and streptozotocin-induced diabetes mellitus (DM) model group (n=50). The diabetic model rats were then randomly divided into DM group, low-dose (8 mg/kg) and high-dose (16 mg/kg) TG treatment groups, and Irbesartan (50 mg/kg) treatment group. After 8 weeks, the levels of blood glucose (BG), 24-h urine protein (24 h Upro), serum creatinine (Scr) and blood urea nitrogen (BUN) were measured. The pathological changes in the renal tissues were examined by optical microscopy, and the mean glomerular area (MGA) and mean glomerular volume (MGV) were measured with pathological image analysis. Immunohistochemical and Western blotting were used to detect the expression of HIF-1α and ET-1 protein in the renal tissue, and their mRNA expressions were detected using real-time fluorescence quantitative PCR.
RESULTSHIF-1α and ET-1 expression increased in the kidney of diabetic rats. Compared with the diabetic model rats, the rats receiving TG and Irbesartan treatment showed decreased levels of Scr, BUN, 24h Upro, MGA and MGV, improved renal histopathology, and reduced expression of HIF-1α and ET-1 mRNA and protein in the renal tissue. These changes were more obvious in high-dose TG treatment group. Correlation analysis showed that the expression of HIF-1α was positively correlated with that of ET-1, and they were both positively correlated with kidney weight index (KW/BW), 24 h Upro, MGA, and MGV.
CONCLUSIONHIF-1α and ET-1 are overexpressed in the kidney of diabetic rats. TG can improve kidney damage in diabetic rats and delay the development of diabetic nephropathy by inhibiting the HIF-1α and ET-1 expression.
Animals ; Biphenyl Compounds ; pharmacology ; Blood Glucose ; Blood Urea Nitrogen ; Creatinine ; blood ; Diabetes Mellitus, Experimental ; metabolism ; Endothelin-1 ; metabolism ; Glycosides ; pharmacology ; Hypoxia-Inducible Factor 1, alpha Subunit ; metabolism ; Kidney ; drug effects ; metabolism ; Male ; Rats ; Rats, Sprague-Dawley ; Tetrazoles ; pharmacology ; Tripterygium ; chemistry

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