| Literature DB >> 29159314 |
Sergei N Orlov1,2, Svetlana V Gusakova3, Liudmila V Smaglii3, Svetlana V Koltsova2, Svetalana V Sidorenko2.
Abstract
OBJECTIVES: This study examined the dose-dependent actions of hydrogen sulfide donor sodium hydrosulphide (NaHS) on isometric contractions and ion transport in rat aorta smooth muscle cells (SMC).Entities:
Keywords: CO, carbon monoxide; COX, cyclooxygenase; CSE, cystathionine-γ-lyase; Ca2+ influx; Contraction; EC, endothelial cells; EDHF, endothelium-derived hyperpolarizing factor; H2S, hydrogen sulfide; Hydrogen sulfide; KATP, ATP-sensitive potassium channels; KCa, Ca2+-activated potassium channels; NKCC, Na+,K+,2Cl- cotransport; NO, nitric oxide; Na+,K+,2Cl-cotransport; NaHS, sodium hydrosulphide; PE, phenylephrine; PSS, physiologically-balanced salt solution; RAEC, endothelial cells from rat aorta; RASMC, smooth muscle cells from rat aorta; Rat aorta; SMC, smooth muscle cells; Smooth muscle cells; TEA, tetraethylammonium chloride; VSMC, vascular smooth muscle cells; VSMR, vascular smooth muscles from rat; cGMP, cyclic guanosine monophosphate; sGC, soluble guanylyl cyclase
Year: 2017 PMID: 29159314 PMCID: PMC5683885 DOI: 10.1016/j.bbrep.2017.09.010
Source DB: PubMed Journal: Biochem Biophys Rep ISSN: 2405-5808
Effect of NaHS, bumetanide, TEA and nicardipine on the rate of 45Ca influx in cultured smooth muscle cells.
| 1. None (control) | 100 | 278±23 |
| 2. Nicardipine, 2 | 121±15 | 96±11 |
| 3. Bumetanide, 10 | 106±13 | 186±28 |
| 4. TEA, 104 | 87±9 | 268±18 |
| 5. NaHS, 100 | 110±20 | 387±25 |
| 9. NaHS, 1000 | 106±15 | 177±18 |
Means ± S.E. obtained in 5 independent experiments performed in quadruplicates are shown. The rate of Ca2+ influx at [K+]o = 5 mM and in the absence of any additions listed in the left column varied from 389 and 425 nmol / mg protein / 5 min was taken as 100%.
p<0.05 compared to 45Ca influx at [K+]o = 5 mM.
- p < 0.05 compared to control at [K+]o = 30 mM (at [K+]o = 5 mM, there was no significant differences of Ca2+ influx in the presence of additions in comparison with control).
Fig. 1Dose-dependent actions of NaHS on contractions of endothelium-denuded aortic rings at extracellular KCl concentration of 30, 60, 90 and 120 mM. and in the presence of 10 µM phenylephrine. Maximal contractions in the absence of NaHS were taken as 100%. Means and standard errors obtained in 6 independent experiments are shown. * - p <0.05.
Fig. 2Dose-dependent actions of acetylcholine (A and C) and NaHS (B and D) on contractions of intact (A and B) and endothelium-denuded (C and D) rat aortic rings in the presence and absence of 10−5 M bumetanide. Maximal contractions in the absence of acetylcholine and NaHS were taken as 100%. Means and standard errors obtained in 6 independent experiments are shown. * p < 0.05 compared to bumetanide-treated rings.
Fig. 3Effect of TEA on contractions of rat aortic rings in the presence and absence of 10−4 M and 10−3 M NaHS. Contractions were evoked by elevation of [K+]o up to 30 mM. Maximal contractions in the absence of NaHS were taken as 100%. Means and standard errors obtained in 6 independent experiments are shown. * - p < 0.05 compared to TEA-untreated rings.
Fig. 4K+ (86Rb) influx in smooth muscle cells from the rat aorta. A. Absolute values of the activity of Na+,K+-pump (ouabain-sensitive component of the rate of 86Rb-influx), NKCC (ouabain-resistant, bumetanide-sensitive component of the rate of 86Rb-influx) and passive permeability for K+ (ouabain+bumetanide)-resistant 86Rb influx). B. Dose-dependent actions of NaHS on Na+/K+-pump (1), NKCC (2) and the rate (ouabain+bumetanide)-resistant K+ (86Rb) influx (3). The values obtained in the absence of NaHS were taken as 100%. Means and standard errors obtained in 5 independent experiments are shown. * p < 0.05 compared to controls.
Fig. 5K+ (86Rb) influx in cultured endothelial cells from the rat aorta. A. Absolute values of the activity of Na+,K+-pump (ouabain-sensitive component of the rate of 86Rb-influx), NKCC (ouabain-resistant, bumetanide-sensitive component of the rate of 86Rb-influx) and passive permeability for K+ (ouabain+bumetanide)-resistant 86Rb influx). B. Dose-dependent actions of NaHS on Na+/K+-pump (1), NKCC (2) and the rate (ouabain+bumetanide)-resistant K+ (86Rb) influx (3). The values obtained in the absence of NaHS were taken as 100%. Means and standard errors obtained in 5 independent experiments are shown. * - p < 0.05 compared to controls.
Effect of 100 µM NaHS, bumetanide, TEA and nicardipine on the rate of 45Ca influx in cultured smooth muscle cells.
| 1. None (control) | 100 | 278±23 |
| 2. NaHS, 100 | 110±20 | 387±25 |
| 3. NaHS, 100 + bumetanide, 10 | 101±17 | 289±22 |
| 4. NaHS, 100 + TEA, 104 | 108±19 | 367±30 |
| 5. NaHS, 100 + nicardipine, 2 | 125±21 | 104±10 |
Means±S.E. obtained in 5 independent experiments performed in quadruplicates are shown. The rate of Ca2+ influx at [K+]o = 5 mM and in the absence of any additions listed in the left column varied from 389 and 425 nmol / mg protein / 5 min was taken as 100%.
- p < 0.05 compared to 45Ca influx at [K+]o = 5 mM.
- p<0.05 compared to control at [K+]o = 30 mM in the presence of 100 μM NaHS ( there was no significant differences of Ca2+ influx in the presence of additions at [K+]o = 5 mM).
Effect of 1000 µM NaHS, bumetanide, TEA and nicardipine on the rate of 45Ca influx in cultured smooth muscle cells.
| 1. None (control) | 100 | 278±23 |
| 2. NaHS, 1000 | 106±15 | 177±18 |
| 3. NaHS, 1000 + bumetanide, 10 | 113±21 | 170±25 |
| 4. NaHS, 1000 + TEA, 104 | 112±16 | 277±18 |
| 5. NaHS, 1000 + nicardipine, 2 | 88±14 | 100±12 |
Means ± S.E. obtained in 5 independent experiments performed in quadruplicates are shown. The rate of Ca2+ influx at [K+]o = 5 mM and in the absence of any additions listed in the left column varied from 389 and 425 nmol / mg protein / 5 min was taken as 100%.
- p < 0.05 compared to 45Ca influx at [K+]o = 5 mM.
p<0.05 compared to control at [K+]o = 30 mM, in the presence of 1000 μM NaHS ( there was no significant differences of Ca2+ influx in the presence of additions at [K+]o = 5 mM).