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1.
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   

2.
AIM:To study the effect of BQ123 on voltage-gated K+ current in pulmonary artery smooth muscle cells (PASMCs) from chronic hypoxic rats. METHODS:Twelve age and body weight matched Wistar rats were randomly divided into control and chronic hypoxic group. Single PASMCs were obtained with acute enzyme (collagnaseⅠ plus papain) dispersing method. Using the whole cell patch-clamp technique in freshly isolated PASMCs from normorxic and hypoxic rats, the effects of ET-1 and BQ123, a selective ETA receptor antagonist, on voltage-gated K+ current were recorded. RESULTS:(1) ET-1 (10-8 mol·L-1) caused inhibition of K+ current in PASMCs from normoxic and hypoxic rats. The effect of ET-1 on K+ current in PASMCs from hypoxic rats was greater than that from normoxic rats [+50 mV, percent inhibition were (71.04±6.58)% and (60.21±5.32)%, respectively, P<0.01, n=6]. (2) In normoxic PASMCs, neither BQ123 alone produced influence on the IKV (P>0.05, n=5), nor ETA receptor blockade had change of ET-1 mediated IKV inhibition. (3) In chronic hypoxic PASMCs, BQ123 significantly reduced the effect of ET-1 mediated IKV inhibition, from (28.49±6.69) pA/pF to (74.19±9.74) pA/pF at +50 mV (P<0.01, n=6). CONCLUSION:In normoxic condition, the effect of ET-1 on IKV of PASMCs is not mediated by BQ123, a selective ETA receptor antagonist. During exposure to chronic hypoxia, the inhibition of ET-1 on IKV of PASMCs is partly mediated by BQ123, namely, ETA receptor mediates the effect of ET-1 on IKV of chronic hypoxic PASMCs.  相似文献   

3.
AIM: To explore the effect of SOCS3 gene on the expression of c-myc mRNA and proliferation of rat pulmonary arterial smooth muscle cells (PASMCs) under hypoxia conditions. METHODS: PASMCs was cotransfected with pEFSOCS3 and pSV2neo by lipofectamine, and positive cell clones were obtained after being screened with G418. Expressions of SOCS3 protein in PASMCs before and after transfection were detected by immunocytochemistry, respectively. Before and after transfection, PASMCs were exposed to normoxic and hypoxia conditions at various time points, respectively, and the expressions of c-myc mRNA were assessed by semi-quantitive RT-PCR. [3H]-TdR incorporation method was used to detect the cell proliferation. RESULTS: The expression of SOCS3 protein was confirmed by immunocytochemistry in PASMCs transfected with SOCS3 gene. c-myc mRNA level in the SOCS3 gene-transfected cells exposed to hypoxia were remarkablely lower than that in the control cells, respectively (P<0.01). Compared with the control groups at the same time points, [3H]-TdR incorporation in SOCS3 gene-transfected cells was significantly low. CONCLUSION: SOCS3 protein may inhibit the proliferation of PASMCs by downregulating the c-myc gene expression under hypoxia conditions.  相似文献   

4.
AIM: To observe the effect of ginsenoside Rb1 on the proliferation and the expression of serotonin transporter (SERT), 5-hydroxytryptamine 1B receptor (5HT1BR) in rat pulmonary artery smooth muscle cells (PASMCs) under hypoxia condition and the relationship with Rho/Rho-kinase signal pathway.METHODS: PASMCs were isolated from the adult male SD rats and primarily cultured. The subcultured cells from the 4th generation to the 6th generation were harvested and divided into normal group, and hypoxia group, different concentrations of Rb1 incubation groups treated with 50, 100 and 200 mg/L ginsenoside Rb1 under hypoxia (HR50, HR100 and HR200 groups, respectively). The viability of the PASMCs was measured by CCK-8 assay. BrdU positive cells were determined using flow cytometry. The expression of serotonin transporter and 5HT1BR at mRNA and protein levels was detected by RT-PCR and Western blot, respectively. The PASMCs were randomly divided into normal group, hypoxia group, HR200 group and hypoxia+Y-27632 incubation group (HY group). The mRNA expression of Rho-kinase and phosphorylated myosin phosphatase target subunit 1 (p-MYPT1) protein level were investigated by RT-PCR and Western blot, respectively.RESULTS: Compared with normal group, the proliferation of PASMCs in hypoxia group was significantly increased (P<0.01). The cell viability and the expression of SERT and 5HT1BR at mRNA and protein levels in all different concentrations of Rb1 groups were obviously decreased compared with hypoxia group (P<0.05). The mRNA expression of Rho-kinase and protein level of p-MYPT1 were markedly decreased in HR200 group, and no significant difference compared with HY group was observed (P<0.01).CONCLUSION: Treatment with ginsenoside Rb1 might prevent hypoxia-induced proliferation of PASMCs and over-expression of SERT and 5HT1BR through inhibiting the Rho/Rho-kinase pathway.  相似文献   

5.
AIM:To study the effect of chronic hypoxia (CH) on the intracellular calcium ([2+i) in pulmonary artery smooth muscle cells (PASMCs) and the role of L-type calcium channel and calcium store. METHODS:The rat chronic hypoxia model was set up and intervene the PASMCs with normal PSS, calcium-free PSS, nifedipine, and heparine respectively. The resting [Ca2+i was determined with the Fura-2/AM calcium imaging technique. RESULTS:(1) The [Ca2+i in CH group in normal PSS was higher than that in control group in normal PSS (P<0.05). The [Ca2+i in CH group in normal PSS was higher than that in calcium-free PSS (P<0.05). (2) No obvious change of [Ca2+i before and after application of nifedipine in PASMCs of CH groups was observed. (3) No difference of [Ca2+i before and after application of heparine in PASMCs of CH groups was detected. CONCLUSION:Chronic hypoxia increased the [Ca2+i in PASMCs. Chronic hypoxia induced increase in [Ca2+i may relate to the influx of extracellular calcium, but not due to the L-type calcium channel or the IP3R modulation only.  相似文献   

6.
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   

7.
AIM:To observe the response of mitochondrial reactive oxygen species (ROS) in rat pulmonary artery smooth muscle cells (PASMCs) under acute hypoxic condition. METHODS:The cultured PASMCs were under normoxic (35 ℃, 5% CO2, 21% O2, 74% N2) or acute hypoxic (35℃, 5% CO2, 1% O2, 94% N2) condition. The cells were incubated with molecular probes chloromethyl dichlorodihydrofluorescein diacetate (CM-H2DCF/DA) and RedoxSensor Red CC-1 to detect the ROS generation by laser scanning confocal microscopy. The mitochondria were isolated and mitochondrial inhibitors were used to detect the ROS generation functional unit sites by spectrophotometry under acute hypoxic condition. RESULTS:Under acute hypoxic condition, the intracellular ROS was significantly increased in hypoxia group with 3.35 folds higher of H2O2 than that in normoxia group. The contents of H2O2 and O-·2 in hypoxia group were 1.61 folds higher than those in normoxia group. Compare with hypoxia goup, pretreatment with the mitochondrial electron transport chain (ETC) complex I inhibitor MPP, the complex II inhibitors NPA and TTFA as well as the complex III pre-ubisemiquinone site inhibitor myxothiazol all remarkably reduced hypoxia-induced increase in ROS generation in PASMCs (reduced by 60%, 73%, 75% and 61%, respectively, P<0.01), whereas the complex III postubisemiquinone site inhibitor antimycin A and the complex IV inhibitor NaN3 had no effect on hypoxia-induced increase in ROS generation (increased by 13% and 9.1%, respectively, P>0.05). Direct detection of mitochondrial ROS showed the same results as the intracellular ROS. CONCLUSION: The intracellular ROS increases significantly in rat PASMCs under acute hypoxic condition. The mitochondrial ETC complex I, complex II and complex III pre-ubisemiquinone sites increase ROS generation, whereas the complex III postubisemiquinone site and complex IV do not produce this effect under acute hypoxic condition.  相似文献   

8.
AIM: To explore the effects of Gax gene transfection on expressions of c-fos and c-jun mRNA and proliferation of pulmonary arterial smooth muscle cells (PASMCs) in rat under hypoxia.METHODS: PASMCs were transfected with Gax gene by Ad-Gax.Under normal oxygentention (21% O2) or hypoxia (2.5% O2) for 12 h condition,expressions of Gax mRNA and protein in PASMCs were detected by RT-PCR and immunocytochemistry.The expressions of c-fos and c-jun mRNA were evaluated by RT-PCR.[3H]-TdR incorporation was used to measure the PASMCs proliferation.RESULTS: The Gax overexpression in transfection group was confirmed by RT-PCR and immunocytochemistry.Under normal oxygentention or hypoxia,the c-fos and c-jun mRNA levels in transfection group were lower than those in the non-transfection group,respectively (P<0.05).[3H]-TdR incorporation in the transfection group was lower than that in non-transfection group (P<0.05,P<0.01).CONCLUSION: Gax overexpression might inhibit the PASMCs proliferation induced by hypoxia through downregulating the expressions of c-fos and c-jun.  相似文献   

9.
AIM:To investigate the effects of voltage-dependent K+ channel 1.5 (Kv1.5) on the proliferation and apoptosis of rat pulmonary artery smooth muscle cells (PASMCs) under hypoxia+hypercapnia condition and the relationship with mitogen-activated protein kinase(MAPK) signal pathway. METHODS:The PASMCs isolated from the male SD rat were cultured under hypoxia+hypercapnia condition, and randomly divided into normal group (N group), hypoxia+hypercapnia group (HH group), hypoxia+hypercapnia+DMSO incubation group (HD group), hypoxia+hypercapnia+U0126 (an extracellular signal-regulated kinase 1/2 inhibitor) incubation group (HU group), hypoxia+hypercapnia+SB203580 (a p38 mitogen-activated protein kinase inhibitor) incubation group (HS group), and hypoxia+hypercapnia+anisomycin (an agonist of MAPK) incubation group (HA group). Cell Counting Kit-8 was used to detect the cell viability. The protein expression of Kv1.5, PCNA and Bax was detected by Western blotting. RESULTS:Compared with N group, the cell viability and PCNA protein expression in HH group and HD group were significantly raised (P<001), but Kv1.5 and Bax proteins were significantly decreased (P<0.01). No difference between HH group and HD group was observed (P>005). Compared with HD group, the cell viability and PCNA protein expression in HU group, HS group and HA group were decreased (P<0.05 or P<0.01), but Kv1.5 protein and Bax protein were raised (P<0.01), with the most significant changes in HA group. CONCLUSION:The regulation of Kv1.5 to the proliferation and apoptosis of PASMCs under hypoxia+hypercapnia condition might have a relationship with the activation of MAPK signal pathway.  相似文献   

10.
AIM To investigate the effect of exosomes derived from hypoxia-preconditioned human umbilical cord mesenchymal stem cells (hUCMSCs) on proliferation, migration and tube formation of human umbilical vein endothelial cells (HUVECs). METHODS hUCMSCs and HUVECs were isolated, cultured and identified. Exosomes derived from hUCMSCs were extracted by ultracentrifugation. The morphological change of exosomes was observed under transmission electron microscope. The particle size and concentration of exosomes were detected by nanoparticle tracking analysis, and the surface specific marker proteins of exosomes were determined by Western blot. hUCMSCs were divided into normoxia group and hypoxia group. The viability of hUCMSCs was measured by CCK-8 assay. HUVECs were divided into control group, normoxic exosome group and hypoxic exosome group. The proliferation of HUVECs was detected by EdU assay. The migration ability was detected by cell scratch assay and Transwell experiment. Tube formation ability was evaluated by tube formation experiment. RESULTS Compared with normoxia group, hypoxia pretreatment enhanced the viability and exosome release of hUCMSCs. Compared with normoxic exosome group, hypoxic exosomes enhanced the proliferation, migration and tube formation of HUVECs. CONCLUSION Exosomes derived from hUCMSCs under hypoxia enhances the proliferation, migration and tube formation of HUVECs.  相似文献   

11.
CAO Xue-wu  GAO Yu-qi 《园艺学报》2006,22(3):452-455
AIM: To determine the effect of agmatine on the proliferation of pulmonary artery smooth muscle cells (PASMCs) induced by hypoxia. METHODS: Primary culture of rat PASMCs was prepared from adult male Wistar rat pulmonary artery by the method of tissue block anchorage. PASMCs were divided into two groups: control group and agmatine-treated group. The activity of LDH in the medium was measured by chromatometry. [3H]-TdR incorporation was measured by liquid scintillation counting. The cell cycle was measured by flow cytometry, and the PCNA content was measured by image analysis. RESULTS: Agmatine did not exert significant effect on the activity of LDH in the medium, but significantly decreased the [3H]-TdR incorporation and PCNA content of PASMCs. Agmatine significantly decreased the cell ratio of G2/M phase and increased the cell ratio of G0/G1 phase. With the increment of the concentration of agmatine, [3H]-TdR incorporation was significantly decreased. CONCLUSION: Agmatine has no significant cytotoxic effect on PASMCs and agmatine dose-dependently inhibits the proliferation of rat PASMCs induced by hypoxia.  相似文献   

12.
13.
AIM:To establish a fast, accurate and economical technique for culturing mouse pulmonary arteriolar smooth muscle cells (PASMCs), and to explore the effects of hypoxia on the proliferation and apoptosis of the PASMCs. METHODS:In sterile condition, the pulmonary artery was isolated from the male BALB/c mice by digesting with collagenase I, and the cells were cultured in fetal bovine serum-coated flask. Centrifugal procedure was not used during the cell passage. The cell morphology was observed under an inverted phase-contrast microscope. α-Smooth muscle actin was identified by immunocytochemistry and immunofluorescence. The effects of hypoxia on the proliferation and apoptosis of the PASMCs were detected by CCK-8 assay and TUNEL assay. RESULTS:PASMCs were identified by the methods of immunocytochemistry, immunofluorescence staining and observation of morphology. Unlike the rat PASMCs with typical subcultured peak-vally pattern, the mouse PASMCs showed a lot different without a peak-vally pattern. The cells could be subcultured after 5 d to 7 d and there was 3 to 5 generations depending on the activity of the cells. CCK-8 assay demonstrated that the A values of PASMCs exposed to hypoxia increased after 24 h (P<0.05) as compared with normoxia. TUNEL result showed that the apoptotic index of the PASMCs in hypoxia decreased after 24 h (P<0.05). CONCLUSION:This technique for obtaining cultured mouse PASMCs is simple, fast, accurate and economical. The digestion time is easy to control. Hypoxia promotes the proliferation and inhibits the apoptosis of PASMCs.  相似文献   

14.
15.
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   

16.
AIM: To observe whether EGLN1 gene is involved in the growth of pulmonary arterial smooth muscle cells (PASMCs) during hypoxia when EGLN1 gene expression was interference by siRNA. METHODS: The rat primary pulmonary arterial smooth muscle cells were cultured, and the specific lipidosome of EGLN1 siRNA was constructed and transfected into the PASMCs. The transfected PASMCs were cultured under hypoxia or normoxia conditions, respectively. The viability of the PASMCs was detected by CCK-8 assay. The protein expression of EGLN1 and vascular endothelial growth factor (VEGF) was determined by Western blot. RESULTS: The viability of the PASMCs was increased and the protein expression of VEGF was up-regulated in the PASMCs under hypoxic condition in a time-dependent manner. In hypoxia or normoxia condition, the viability and VEGF protein expression of the PASMCs were suppressed by EGLN1 siRNA. CONCLUSION: EGLN1 gene may involve in the growth of rat PASMCs by regulating VEGF protein level under hypoxic condition.  相似文献   

17.
AIM:To investigate effects of hypoxic response elements (HRE) on expression of hVEGF165 gene transferred to myocardiocyte under anoxic and normoxic conditions in vitro.METHODS:Myocardiocytes from neonatal SD rats were isolated and cultured in serum-free medium.The r-AAV vector packaged with 293T cells was used to transfer cultured myocardiocytes.Myocardiocytes were divided into eight groups: Group Ⅰ: myocardiocytes were cultured for 24 hours under normoxic conditions as control;Group Ⅱ: cells was cultured under hypoxia for 8 hours;Group Ⅲ: infected cells were cultured for 24 hours under normoxic conditions;Group Ⅳ: infected cells were cultured under hypoxia for 8 hours;GroupⅤ: infected cells were cultured under hypoxia for 8 hours and normoxia for 4 hours;GroupⅥ: infected cells were cultured under hypoxia for 8 hours and normoxia for 8 hours;GroupⅦ: infected cells were cultured under hypoxia for 8 hours and normoxia for 12 hours;Group Ⅷ: infected cells were cultured under hypoxia only for 20 hours.hVEGF165 protein was quantified from culture medium using ELISA,hVEGF165 protein in myocardiocytes was detected with immunofluorescence and expression of hVEGF165 mRNA was also determined by RT-PCR.RESULTS:95% myocardiocytes showed beating rhythmically with 86% of cTn-I positive staining.87% virual transferred efficiency was achieved.The contents of hVEGF165 protein in group Ⅳ,Ⅴ and Ⅷ were higher than those in other groups (P<0.01).Immunofluorescence positive cells were observed in group Ⅳ,Ⅴ and group Ⅷ.RT-PCR revealed that a 484 bp strip was also found in the same groups.CONCLUSION:rAAV-HRE9-hVEGF165 vector infected cultured myocardiocyte successfully.Under hypoxia,expression of hVEGF165mRNA and hVEGF165 protein were regulated by HRE,whereas under normoxic conditions the expression of hVEGF165 mRNA and hVEGF165 protein were ceased.  相似文献   

18.
AIM: To explore the role of calcium-sensing receptor (CaSR) in rat pulmonary artery smooth muscle cells (PASMCs) and its effect on hypoxia-induced proliferation of PASMCs. METHODS: The expression and distribution of CaSRs were detected by Western blotting and immunofluorescence observation. The intracellular concentration of free calcium ([Ca]i) was determined by confocal laser scanning microscopy. The cell viability was analyzed by MTT assay. The expression of PCNA and CaSRs was determined by Western blotting. RESULTS: CaSR protein was expressed in rat PASMCs. Hypoxia significantly increased the expression of CaSR and PCNA,[Ca]i and the cell viability. GdCl3 (an agonist of CaSR) or NPS2390 (an antagonist of CaSR) amplified or weakened the effect of hypoxia, respectively.CONCLUSION: CaSR is expressed in rat PASMCs. The activation of CaSR is involved in the proliferation of PASMCs induced by hypoxia.  相似文献   

19.
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   

20.
AIM:To investigate the expression of volume-activated chloride channel (CLC3) in rat pulmonary artery smooth muscle cells (PASMCs) treated with hypoxia and hypercapnia and its relationship with MAPK pathway. METHODS:The method of enzyme digestion was used to isolate the PASMCs in male SD rat for cell primary culture. The cells were identified by immunofluorescence cytochemical method with mouse anti-rat α-smooth muscle actin antibody. The rat model of hypoxia and hypercapnia was established. The protein expression of CLC3 was detected by Western blotting. The mRNA expression of CLC3 was determined by RT-PCR. RESULTS:Compared with control group, the mRNA and protein expression of CLC3 in PASMCs was significantly raised in hypoxia and hypercapnia group. Compared with hypoxic and hypercapnic group, the expression of CLC3 was significantly reduced in ERK inhibitor U0126+ hypoxia and hypercapnia group, and was up-regulated in p38 inhibitor SB203580+ hypoxia and hypercapnia group. p38 activator anisomycin significantly decreased the expression of CLC3 at mRNA and protein levels in hypoxia and hypercapnia group. CONCLUSION:The expression of CLC3 at mRNA and protein levels in PASMCs increases under hypoxia and hypercapnia conditions. The ERK1/2 pathway mediates CLC3 expression in PASMCs induced by hypoxia and hypercapnia. Activation of p38 MAPK pathway down-regulates the expression of CLC3 at mRNA and protein levels induced by hypoxia and hypercapnia.  相似文献   

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