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1.
AIM:To explore the effects of levcromakalim(Lev) on pulmonary arterial endothelial cells (PAEC) and smooth muscle cells (PASMC) exposed to hypoxia and the mechanisms involved.METHODS:The effects of Lev on [Ca2+]i, and expression of PKCα, eNOS, iNOS and PDGF-B mRNA and protein levels were observed. The nitrite (NO2-) and entothelin-1(ET-1) concentrations in supernatant in cultured PAEC and PASMC were measured. The proliferation and apoptosis of PASMC was also detected.RESULTS:When PASMC were exposed to hypoxia, Lev reduced concentration of ET-1 in cultured cell supernatant, lowed the expression of PKCα, iNOS and PDGF-B both at mRNA and protein levels, decreased [Ca2+]i concentration, increased proliferation and promoted the apoptosis in PASMC. However, in the presence of Lev, the [Ca2+]i concentration was not changed in the hypoxic PAEC. The NO2- concentration in cultured cell supernant and expression of eNOS at mRNA and protein levels in hypoxic PASMC and PAEC were also unchanged. The downregulated ET-1 activity in PASMC and PAEC and proliferation in PASMC involved in the inhibition of PKCα signaling pathway.CONCLUSIONS:Lev reduce some disadvatage effect of hypoxia on PASMC and PAEC. The mechanism of Lev action may partly involve in the downregulation of PKCα signaling functions.  相似文献   

2.
AIM:To study the effect of safflower injection on expression of COX-2 mRNA in chronic hypoxic hypercapnic rat pulmonary arterioles.METHODS: Sprague-Dawley rats were randomly divided into normal control group, hypoxic hypercapnic group (B), hypoxic hypercapnia+ safflower injection group (C). The concentration of TXB2 and 6-Keto-PGF1α in plasma and in lung were detected by the technique of radioimmunoassay. COX-2 mRNA was observed in arterioles from rats by the technique of in situ hybridization. RESULTS: ① Mean pulmonary arterial pressure(mPAP), weight ratio of right ventricle (RV) to left ventricle plus septum (LV+S) were much higher in B group than those in control group. No significant difference of mean carotid arterial pressure(mCAP) was observed in three groups. ② The concentration of TXB2 and the ratio of TXB2/6-keto-PGF1α were significantly higher in B group than those in control group. ③ Light microscopy showed that vessel wall area/total area, the density of medial smooth muscle cells and the thickness of medial smooth cell layer were significantly higher in B group than those in control group. Electron microscopy showed proliferation of medial smooth muscle cells and collagenous fibers in pulmonary arterioles in B group. Safflower injection reversed the changes mentioned above. ④ Expression of COX-2 mRNA in pulmonary arterioles was much higher in C group than those in B group. Differences of COX-1 mRNA in pulmonary arterioles were not significant between these two groups.CONCLUSION:Safflower injection increases the expression of COX-2 mRNA in chronic hypoxic hypercapnic rat pulmonary arterioles, indicating an important mechanism that safflower injection inhibits the formation of hypoxic hypercapnia pulmonary hypertension and pulmonary vessel remodeling.  相似文献   

3.
AIM: To investigate the role of α1 and β2 adrenoceptors(α1AR and β2AR) in the proliferation of hypoxic pulmonary artery smooth muscle cells (PASMCs).METHODS: PASMCs were isolated by an explant method from neonatal bovine pulmonary arteries. The cultured PASMCs were exposed to 6.6% O2 for 6 h, 12 h and 24 h. The method of -TdR incorporation was used to measure the proliferation of PASMCs. i was assayed with Fura-2/AM. The mRNA expression of α1AR, β2AR, c-fos and c-myc was determined by Northern blotting. The effects of activation of α1AR and β2AR, and inhibition of α1AR on the above indexes were observed by treating PASMCs with different AR agonists and antagonists under hypoxic condition.RESULTS: Significant increase in TdR incorporation in hypoxic PASMCs with α1AR activation was observed, and marked decrease in that was induced by α1AR inhibition. However, no significant change was found after β2AR activation. i , the mRNA expression of c-fos, c-myc, α1AR and β2AR in PASMCs were increased after hypoxia.CONCLUSION: Hypoxia induces the increase in i and mRNA expression of c-fos and c-myc, leading to the proliferation of PASMCs. The hypoxic proliferation of PASMCs is intervened by α1AR, but not β2AR. The remodeling of pulmonary arteriole and pulmonary hypertension may be involved in the processes of pulmonary arteriole constriction and proliferation induced by hypoxia through up-regulation of α1AR.  相似文献   

4.
AIM: To investigate the role of potassium channels in the regulation of intracellular free calcium concentration ( [Ca2+]i) of pulmonary artery smooth muscle cells (PASMCs) in rats. METHODS: The fluorescence Ca2+ indicator Fura-2/AM was used to observe [Ca2+]i of rat PASMCs in normal and chronic hypoxic condition. The influences of potassium channels on PASMCs proliferation were assessed by MTT assay. RESULTS: 1. In normoxic condition, [Ca2+]i was (156.91±8.60) nmol/L, and in hypoxic condition, [Ca2+]i was (294.01±16.81) nmol/L. 2. In normoxic condition, the voltage-dependent K+-channel antagonist 4-aminopyridine (4AP), but not the Ca2+-activated K+-channel antagonist tetraethylammonium (TEA) and the ATP-sensitive K+-channel antagonist glibenclamide (Glib) increased [Ca2+]i. 3. In hypoxic condition, 4AP and TEA caused the rise in [Ca2+]i , but Glib had no effect on [Ca2+]i. 4. MTT assay showed that 4AP increased the value of absorbing light degree (A value) in normoxic and hypoxic condition (0.582±0.062,0.873±0.043,respectively, P<0.01), TEA increased A value only in hypoxic condition, and Glib had no effect on the proliferation of PASMCs. CONCLUSIONS: KV plays an important role in the regulation of [Ca2+]i and proliferation of PASMCs. KCa serves as distinct responsive roles in the regulation of proliferation of PASMCs in hypoxic condition. KATP has no effect on [Ca2+]i and proliferation of PASMCs in normoxic and hypoxic conditions.  相似文献   

5.
AIM: To investigate the effect of diltiazem on mean pulmonary arterial pressure (mPAP) and nitric oxide synthase (NOS) in arterioles in chronic hypoxic hypercapnic rats. METHODS: Twenty-four rats were randomly divided into three groups: control group (A), hypoxic hypercapnic group (B), hypoxic hypercapnia+ diltiazem group (C), constitutive endothelial NOS (ceNOS) were observed in arterioles of rats using the technique of immunohistochemistry, ceNOS mRNA were observed by the technique of in situ hybridization. RESULTS: (1) mPAP was significantly higher in rats of B group than that of A and C group(P<0.01). Differences of mCAP were not significant between A group and B groups (P>0.05), but mCAP was lower in rats of C group than that in B group. (2) Light microscopy showed WA/TA (vessel wall area/total area) was significantly lower in rats of C group than that of B group (P<0.01), electron microscopy showed that diltiazem inhibited the proliferation of smooth muscle cells and collageous fibers of pulmonary arterioles in chronic hypoxic hypercapnic rats. (3) Immunohistochemistry showed the average value of integral light density (LD) of ceNOS in pulmonary arterioles was significantly higher in rats of C group than that of B group (P<0.01), in situ hybridization showed LD of ceNOS mRNA in pulmonary arterioles was significantly higher in rats of C group than that of B group (P<0.01). CONCLUSION: Diltiazem inhibited pulmonary hypertension, the proliferation of smooth muscle cells and collagenous fibers of pulmonary arterioles in chronic hypoxic hypercapnic rats by incresing the expression of ceNOS in pulmonary arterioles.  相似文献   

6.
AIM: To study the effect of chronic hypoxic hypercapnia on expression of heme oxygenase-1 (HO-1). METHODS: Sprague-Dawley rats were randomly divided into three groups: control group(A),hypoxic hypercapnic group(B), hypoxic hypercapnia+hemin group(C). HO-1 and HO-1 mRNA were observed in pulmonary arterioles by the technique of immunohistochemistry and in situ hybridization. RESULTS: ① mPAP and weight ratio of right ventricle (RV) to left ventricle plus septum (LV+S) were significantly higher in rats of B group than those of A and C group (P<0.01). Differences of mCAP were not significant in three groups(P>0.05). ② Blood CO concentration was significantly higher in rats of B group than that of A group (P<0.01), it was much higher in C group than that of B group(P<0.01). ③ Light microscopy showed that vessel well area/total area (WA/TA), density of medial smooth muscle cell (SMC) and media thickness of pulmonary arterioles were much higher in rats of B group than those of A and C group (P<0.01). ④ The observation by electron microscopy showed proliferation of medial smooth muscle cells and collageous fibers of pulmonary arterioles in rats of B group, hemin could reverse the changes mentioned above. ⑤ HO-1 and HO-1 mRNA in pulmonary arterioles was significantly higher in rats of B group than those of A group(P<0.01), and they were significantly higher in rats of C group than those of B group (P<0.01). CONCLUSION: Expression of HO-1 mRNA and HO-1 in pulmonary arterioles was enhanced by hypoxic hypercapnia. Hemin partly inhibited pulmonary hypertension and pulmonary vessel remodeling by enhancing the expression of HO-1 mRNA and HO-1.  相似文献   

7.
AIM:To investigate the change of reactive oxygen species (ROS) production in hypoxic pulmonary arterial smooth muscle cells (PASMCs) of rats, the effect of ROS on the expression of extracellular signal-regulated kinase (ERK)1/2 protein, and the role of ROS and ERK1/2 in the imbalance between proliferation and apoptosis of PASMCs.METHODS: Primary cultures of PASMCs were established and cells between passages 2 to 3 were used for experiments. PASMCs were treated with tiron, a membrane permeable ROS scavenger, and PD98059, an ERK1/2 inhibitor, under normoxia or hypoxia condition. The ROS production was measured by DCFH-DA and NBT reduction. The expression of phosphorylated-ERK1/2 (p-ERK1/2) protein was detected by immunofluorescence. Cell proliferation was examined by MTT colorimetric assay and the expression of PCNA. Cell apoptosis was detected by TUNEL.RESULTS: (1)Compared with control group, the ROS levels in hypoxia group were significantly increased (P<0.01). (2) In hypoxia group, the proliferative capacity was higher and the apoptosis index was lower than those in control group (P<0.01). Tiron significantly attenuated hypoxia-induced cell proliferation (P<0.05) and also significantly raised the apoptosis index in hypoxia cells (P<0.01). (3) The expression of p-ERK1/2 in hypoxia group were higher than that in control group (P<0.01), which were significantly suppressed by tiron (P<0.01).(4) PD98059 significantly attenuated hypoxia-induced cell proliferation (P<0.05) and also significantly raised the apoptosis index in hypoxia cells (P<0.01). The proliferative capacity and apoptosis index was similar in hypoxia+tiron+PD98059 group to those in hypoxia+tiron group (P>0.05).CONCLUSION:The hypoxia-mediated increase in PASMCs proliferation and the decrease in PASMCs apoptosis are related to the overproduction of intracellular ROS through downstream activation of ERK1/2. ROS and ERK1/2 play important roles in the hypoxic remodeling of pulmonary artery.  相似文献   

8.
9.
AIM AND METHODS: Using Ca2+-sensitive fluorescent probe Fura-2,we measured the changes of [Ca2+]iin cultured rat pulmonary artery endothelial cells (PAEC) and porcine pulmonary artery smooth muscle cells (PASMC) from normoxic (NC group) or chronic hypoxic group (CH group) when they were exposed to acute hypoxia. RESULTS: The increase in [Ca2+]iin 6th passage of PASMC caused by acute hypoxia in CH group was significantly lower than that in the same passage of NC group (P<0.05).On the contrary, in PAEC, the acute hypoxia induced increase in _i, which was significantly higher in 5th passage of CH group than that in NC group (P<0.05). CONCLUSION: The decrease of the elevation of [Ca2+]icaused by acute hypoxia in PASMC of CH group indicated that it functioned to lower the constrictive response to hypoxia.The intensive increase in [Ca2+]icaused by acute hypoxia in PAEC of CH group might lead to more relaxing factors derived from PAEC,which results in a decrease in HPV.  相似文献   

10.
AIM: To study the effect of chronic hypoxic hypercapnia on gene expression of thromboxane synthase and prostacyclin synthase in pulmonary arterioles. METHODS: Sprague-Dawley rats were randomly divided into two groups: control group and hypoxic hypercapnic group. TXS mRNA and PGI2-SmRNA were observed in pulmonary arterioles by in situ hybridization. RESULTS: mPAP, weight ratio of right ventricle (RV) to left ventricle plus septum(LV+S), contents of TXB2 and 6-keto-PGF1α in plasma and lung and TXS mRNAin pulmonary arterioles were much higher in rats of hypoxic hypercapnic group than those of control group. Differences of PGI2-SmRNA in pulmonary arterioles were not significant in two groups. Light microscopy showed hypertrophy of vessel smooth muscle cells and vessel cavity straitness were found in hypoxic hypercapnic group. CONCLUSION: Changes of gene expressions of thromboxane synthase and prostacyclin synthase and imbalance of TXA2/PGI2 may play an important role in hypoxic hypercapnic pulmonary hypertension.  相似文献   

11.
AIM: To investigate the effect of inhibiting myosin light chain kinase(MLCK) on endothelin-1(ET-1) induced proliferation and apoptosis of rat pulmonary artery smooth muscle cells(PASMCs). METHODS: Rat PASMCs were cultured and stimulated with ET-1. The cells were randomly divided into control group, ET-1 group and ET-1+MLCK inhibitor group(ET-1+M). Western blotting, MTT assay, [3H]-TdR incorporation and flow cytometry were employed to test the expression of myosin light chain(MLC) and MLCK, cell proliferation, cell cycle and apoptotic rate of PASMCs,respectively. The phosphorylation of MLC was determined by glycerol-PAGE coupled with Western blotting. RESULTS: Compared with control group, the protein expression of MLCK and MLC phosphorylation significantly enhanced after ET-1 stimulation. ET-1 markedly induced the proliferation and decreased the percentage of apoptotic rate in the PASMCs. However, pretreatment with ML-7, a MLCK inhibitor, significantly reversed the above effects induced by ET-1. CONCLUSION: MLCK inhibitor effectively inhibits the ET-1-induced proliferation and the cell cycle progression.  相似文献   

12.
AIM: To explore the mechanism of bone morphogenetic protein (BMP) and Rho kinase signal pathways on the proliferation of pulmonary artery smooth muscle cells. METHODS: Pulmonary smooth muscle cells were isolated from the rat distal pulmonary artery and cultured. BMP and Rho kinase pathways were activated by BMP-2 and platelet-derived growth factor BB(PDGF-BB),respectively. Rho kinase inhibitor Y-27632 and MEK inhibitor U0126 were also used. Immunofluorescent staining was applied to observe p-Smad1 distribution across the nucleus, and the cells with positive p-Smad1 nuclear accumulation were counted and the nuclear translocation rate was calculated. The total p-Smad1 and its distribution across the nucleus were quantitatively determined by Western blotting. The cell proliferation was analyzed by CCK-8 assay. RESULTS: Exposure to BMP-2 significantly increased both the total amount of p-Smad1 and its nuclear accumulation in pulmonary smooth muscle cells. Pretreatment with PDGF-BB significantly decreased the nuclear accumulation of p-Smad1 induced by BMP-2 without decrease of total p-Smad1. However, pretreatment with Y-27632 or U0126 reversed the inhibitory effect of PDGF-BB on p-Smad1 nuclear accumulation. BMP-2 significantly inhibited the cell proliferation, but PDGF-BB blocked the effect of BMP-2 and significantly increased the cell proliferation. After pretreated with Y-27632 or U0126, the PDGF-BB-activated cell proliferation was suppressed.CONCLUSION: PDGF-BB-activated Rho kinase inhibits BMP-2-induced p-Smad1 nuclear translocation via MEK/ERK1/2, and increases pulmonary artery smooth muscle cell proliferation.  相似文献   

13.
AIM:To investigate the possible interactions between microRNA-210 (miR-210) and mitogen-activated protein kinase phosphatase 1 (MKP-1) and the effect on the proliferation of hypoxic human pulmonary artery smooth muscle cells (hPASMCs). METHODS:hPASMCs were cultured in 21% O2 and 5% CO2 (normoxia) or 1% O2 and 5% CO2 (hypoxia) for 48 h, and then transfected with mimic or inhibitor of miR-210 or MKP-1 small interfering RNA (si-RNA). The levels of RNA, miRNA and protein were isolated separately. RESULTS:The level of miR-210 was significantly increased in cultured hPASMCs exposed to 1% O2 for 48 h, and the expression of MKP-1 at mRNA and protein levels was also increased. Furthermore, inhibition of miR-210 expression increased the mRNA and protein levels of MKP-1 in the hPASMCs and decreased the cell proliferation under hypoxia. Conversely, over-expression of miR-210 prevented hypoxia-induced MKP-1 expression with no effect on the cell proliferation. Knockdown of MKP-1by siRNA abolished the preventive effect of miR-210 inhibitor on the cell proliferation under hypoxia. CONCLUSION: MKP-1 is a target of miR-210 and mediates the negative regulation of miR-210 inhibitor in hypoxic hPASMCs.  相似文献   

14.
AIM:To study the effect of farrerol (Far) on nicotine-induced proliferation of rat pulmonary smooth muscle cells (PASMCs), and further to explore its relationship with voltage-dependent potassium channels (Kv) 1.5 and Kv2.1. METHODS:Firstly, the effect of nicotine on the proliferation of PASMCs was detected by cell counting method, and the optimal concentration of nicotine was selected. Primary cultured PASMCs were randomly divided into 5 groups:normal control group, nicotine (1 μmol/L)group, nicotine (1 μmol/L) + Far (10-6 mol/L, 10-5 mol/L and 10-4 mol/L) Far group. The activity of caspase-3 was measured by apoptosis kit, the cell viability was measured by CCK-8 assay, the apoptotic rate was analyzed by flow cytometry. The expression of Kv1.5 and Kv2.1, and apoptosis-related factors Bcl-2 and Bax at mRNA and protein levels was determined by RT-qPCR and Western blot respectively. RESULTS:Nicotine at 1 μmol/L increased the number of PASMCs to the maximum extent (P<0.01). Nicotine at 1 μmol/L significantly reduced the caspase-3 activity and enhanced the cell viability of the PASMCs (P<0.01). Farrerol at 10-6~10-4 mol/L eliminated the effect of PASMCs induced by nicotine in a concentration dependent manner. Compared with control group, nicotine at 1 μmol/L significantly increased the proliferation and inhibited the apoptotic rate of rat PASMCs (P<0.01). The apoptotic rate of PASMCs in farrerol intervention group was significantly higher than that in nicotine group (P<0.01). Nicotine at 1 μmol/L significantly inhibited the expression of Kv1.5, Kv2.1 and Bax but increased the expression of Bcl-2 in PASMCs (P<0.01). Farrerol at 10-5 mol/L obviously inhibited the effect of PASMCs induced by nicotine. CONCLUSION:Farrerol eliminates nicotine-induced inhibition of caspase-3 and Bax, and enhancement of Bcl-2 in PASMCs by enhancing Kv1.5 and Kv2.1 expression.  相似文献   

15.
16.
AIM: To explore the mechanism of notoginsenoside monomer R1 (R1) against hypoxic hypercapnia-induced pulmonary vasoconstriction (HHPV) by investigating the effect of R1 on p38 mitogen-activated protein kinase (p38MAPK) signaling pathway in pulmonary arterial smooth muscle cells (PASMCs) under the condition of hypoxia and hypercapnia. METHODS: Primary cultured PASMCs, which were isolated from Sprague-Dawley rats, were incubated in logarithmic growth phase from the 2nd to 5th generation with different concentrations (8, 40 and 100 mg/L) of R1 under the condition of 6% CO2 plus 1% O2 for 24 h. The expression of p38 at mRNA and protein levels was detected by RT-PCR and Western blotting,respectively. RESULTS: The results of Western blotting and RT-PCR analysis indicated that the protein and mRNA expression levels of p-p38 MAPK were significantly higher in hypoxic hypercapnia group with DMSO control than those in normoxia control group (P<0.01). In R1 treatment groups, the levels of p-p38 MAPK protein and p38 MAPK mRNA were markedly decreased (P<0.01) in a dose-dependent manner. CONCLUSION: p38 MAPK signaling pathway may mediate hypoxic hypercapnia pulmonary vasoconstriction in rats. Notoginsenoside monomer R1 attenuates HHPV, which may be related to blockage of p38 MAPK signal pathway.  相似文献   

17.
AIM: To investigate the contribution of diazoxide,an opener of mitochondrial ATP-sensitive K+ channel (MitoKATP),and mitochondrial membrane potential (ΔΨm) to change of H2O2 in rat pulmonary artery smooth muscle cells (PASMCs) and to unbalance between cell proliferation and apoptosis of PASMCs induced by hypoxia.METHODS: The rat PASMCs were isolated from fresh normal lung tissues and cultured,which were divided into 6 groups,as follows: ① control group;② diazoxide group;③ 5-HD group;④chronic hypoxia group;⑤ chronic hypoxia+diazoxide group;⑥ chronic hypoxia +5-HD group.The relative change in mitochondrial potential was detected with rhodamine fluorescence (R-123) technique.The level of H2O2 in rat PASMCs was detected with chemiluminescence method.The proliferation of rat PASMCs was examined by cell cycle analysis and MTT colorimetric assay.RESULTS: After exposed to diazoxide for 24 h,the intensity of R-123 fluorescence,the level of H2O2 and the A value in normoxic rat PASMCs were significantly increased,and the apoptosis of rat PASMCs was significantly decreased as compared with control group (P<0.05).However,there were no significant changes in these tests after the rat PASMCs had been exposed to 5-HD for 24 h.Chronic hypoxia or chronic hypoxia+diazoxide markedly increased the intensity of R-123 fluorescence,the level of H2O2 and the A value in rat PASMCs,and also markedly decreased the apoptosis of rat PASMCs as compared with control group (P<0.05),and these changes were more significant in chronic hypoxia +diazoxide group than those in chronic hypoxia group (P<0.05).5-HD partly weakened the effect of hypoxia on the intensity of R-123 fluorescence,the level of H2O2,the A value and the apoptosis of rat PASMCs (P<0.05).Significant and positive correlations were found between the intracellular H2O2 and the R-123 fluorescence or the A value.Significant and negative correlation was found between the intracellular H2O2 and the apoptosis of rat PASMCs.CONCLUSION: The results suggest that the opening of MitoKATP followed by a depolarization of ΔΨm can contribute to the increase in the level of H2O2 in rat PASMCs and to the proliferation of rat PASMCs induced by hypoxia.This might be a mechanism of the development of hypoxic pulmonary hypertension.  相似文献   

18.
AIM:To investigate the effect of antisense oligonucleotides(ASON) of c-sis on cellular cycle and proliferation of pulmonary artery vascular smooth muscle cells(VSMC).METHODS:Tissue mass culture was done to get VSMC of pulmonary artery. Different concentrations of antisense oligonucleotides of c-sis were added into the cultures to observe the VSMC proliferation curve using MTT test. The changes of VSMC cellular cycle were also observed by flow cytometry.RESULTS:ASON with mid-to high concentrations restrained the proliferation of VSMC apparently with the peak of cell growth being attenuated or eliminated. Affected by mid-concentration ASON, PDGF-BB showed significant accelerating effect on the proliferation of VSMC. The ratio of G0/G1 in cellular cycle was increased significantly in VSMC culture with ASON in comparison with control. The G0/G1 ratio also showed significant differences among different concentration of ASON groups(P<0.05).CONCLUSION:Mid-to high concentration of ASON was a powerful inhibitor of cellular proliferation for pulmonary artery VSMC. ASON increased the ratio of G0/G1 significantly and the increase seems to be ASON dosage dependent.  相似文献   

19.
Pulmonary hypertension induced by high pulmonary blood flow involves a variety of complex mechanisms, including endothelial damage, pulmonary artery smooth muscle relaxation-contraction disorder and vascular remodeling. Besides, the factor of ion channels in pulmonary artery smooth muscle cells is also highly correlated to vasoconstriction. In recent years, many studies have shown that activation of Ca2+-activated Cl- channels is responsible for the membrane depolarization of pulmonary artery smooth muscle cells, and plays an important role in the regulation of vascular tone and vasoconstriction. This article reviews the biophysical and pharmacological characteristics of Ca2+-activated Cl- channels as well as the influence of Ca2+-activated Cl- channels in high pulmonary blood flow-induced pulmonary hypertension.  相似文献   

20.
AIM: To investigate the effect of hypoxia on the proliferation and apoptosis of pulmonary artery smooth muscle cells (PASMC); and to evaluate the role of hypoxia-inducible factor-1α(HIF-1α), iNOS, P-ERK1/2 protein expression in hypoxic pulmonary hypertension (HPH) pathogenesis.METHODS: Cultured rat PASMC were divided into normoxic group; hypoxic group; hypoxia+ADM(adrenomedulin) group, hypoxia+L-NAME(iNOS inhibitor) group; hypoxia+PD98059 group. Proliferation was investigated by MTT and PCNA. Apoptosis was examined by flow-cytometry. Westen blotting was used to measure protein expression of HIF-1α, P-ERK1/2 and iNOS. RESULTS: (1) A value of 24 h-hypoxia was significantly higher than that in the normoxic group (P<0.01). In the hypoxia+PD98059 group, ADM was significantly lower than that in hypoxia group, whereas A value of the hypoxia+L-NAME was significantly higher than that in hypoxic group and normoxic group (P<0.01). (2) PCNA was positive in PASMC after 24 h hypoxia (P<0.01). PD98059, ADM inhibited the expression of PCNA significantly (P<0.01), whereas L-NAME increased the expression of PCNA significantly (P<0.01). (3) Apoptosis index was not significantly difference among the different groups (P>0.05). (4) HIF-1α, iNOS and P-ERK1/2 expression was poorly positive in normoxic group, positive after hypoxia for 4h (P<0.01), reaching its peak at 8 h hypoxia (P<0.01), HIF-1α, P-ERK1/2 expression declined after 24 h hypoxia. L-NAME promoted the expression of HIF-1α, PD98059 inhibited the expression of HIF-1α, iNOS and P-ERK1/2 partly. ADM inhibited the expression of HIF-1α partly, promoted the expression of iNOS. CONCLUSION: (1) Hypoxia stimulates the proliferation of PASMC, and has no obvious effects on the apoptosis of PASMC. (2) HIF-1 plays an importent role in the proliferation of hypoxic PASMC.  相似文献   

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