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F Simko

Publications and source records attributed to F Simko.

At least 19 recordsLinked to original sources

Effect of spironolactone and captopril on nitric oxide and S-nitrosothiol formation in kidney of L-NAME-treated rats.

Although angiotensin-converting enzyme (ACE) inhibitors are well-established drugs in the treatment of hypertension, they are not supposed to be sufficient in the inhibition of aldosterone formation. The present study analyzes the effect of aldosterone receptor antagonist, spironolactone and ACE inhibitor, captopril on nitric oxide (NO) and S-nitrosothiol formation in the kidney of N(G)-nitro-L-arginine methyl ester (L-NAME)-treated rats. Male Wistar rats were divided into six groups: (1) controls, (2) L-NAME (40 mg/kg/day), (3) spironolactone (200 mg/kg/day), (4) captopril (100 mg/kg/day), (5) L-NAME+spironolactone, and (6) L-NAME+captopril. After 4 weeks, NO synthase (NOS) activity, protein expression of endothelial NOS, inducible NOS and concentration of thiol and S-nitrosothiol groups were determined in the kidney. Besides the increase in systolic blood pressure (by 32%) and the decrease in NOS activity (by 37%), L-NAME treatment lowered the concentration of thiols (by 32%) and S-nitrosothiols (by 36%) in the renal tissue. Simultaneous treatment with spironolactone preserved NOS activity and S-nitrosothiols on the control level, whereas captopril did not affect these parameters modified by L-NAME treatment. Moreover, spironolactone increased expression of endothelial NOS protein without affecting inducible NOS protein expression. In conclusion, both captopril and spironolactone prevented L-NAME-induced hypertension and the decline of the antioxidant potential of the kidney tissue. However, only spironolactone improved NOS activity which led to the S-nitrosothiols formation. Both NO itself and S-nitrosothiols may contribute to the preventive effect of spironolactone against development of L-NAME-induced hypertension.

Angiotensin-Converting Enzyme Inhibitors↗

Hereditary hypertriglyceridemic rat: a suitable model of cardiovascular disease and metabolic syndrome?

Hypertriglyceridemia and hypertension seem to be very important cardiovascular risk factors. The Prague hereditary hypertriglyceridemic (hHTG) rat was developed as a model of human hypertriglyceridemia. It was demonstrated that these rats are not obese, they are hypertensive and insulin resistant and they have some disturbances in glucose metabolism. Several QTLs were identified for blood pressure, its particular components (dependent on major vasoactive systems) and plasma triglycerides throughout the genome of hHTG rats by using of F(2) hybrids strategy. It is evident that hHTG rats are a suitable model for the study of metabolic disturbances in relation to blood pressure as well as for the search of genetic determinants of these abnormalities. Numerous abnormalities of blood pressure regulation as well as alterations in the structure and function of cardiovascular apparatus (heart, conduit and resistance arteries) were found in hHTG rats. A special attention was paid to possible changes in the efficiency of various vasoactive systems such as nitric oxide, renin-angiotensin-aldosterone system and sympathetic nervous system, which seem to contribute substantially to cardiovascular and/or metabolic abnormalities observed in Prague hereditary hypertriglyceridemic rats.

Animals↗

L-arginine fails to protect against myocardial remodelling in L-NAME-induced hypertension.

BACKGROUND: We investigated whether the substrate for nitric oxide synthesis L-arginine is able to modify hypertension and left ventricular hypertrophy development induced by chronic blockade of nitric oxide synthase activity by NG-nitro-L-arginine-methyl ester (L-NAME). MATERIAL AND METHODS: Four groups of rats were investigated: control, L-arginine 1.5 g kg-1, L-NAME 40 mg kg-1, and L-NAME +L-arginine in corresponding doses. Systolic blood pressure was measured by non-invasive tail-cuff plethysmography each week. After 4 weeks, the animals were sacrificed and hydroxyproline and coenzyme Q9 and Q10 concentrations in the left ventricle, and nitric oxide synthase activity in the left ventricle, kidney and brain were investigated. RESULTS: In the L-NAME group, nitric oxide synthase activity was decreased in the left ventricle, kidney and brain, and hypertension, left ventricular hypertrophy and fibrosis developed. Heart remodelling was associated with the decrease of coenzyme Q9 and Q10 concentrations in the left ventricle. Simultaneous treatment with L-NAME and L-arginine prevented nitric oxide synthase activity diminution in the left ventricle but not in the kidney and brain, and completely failed to prevent hypertension, left ventricular hypertrophy and fibrosis. Nevertheless, l-arginine prevented the diminution of coenzyme Q9 and Q10 concentrations in the left ventricle. CONCLUSIONS: We conclude that L-arginine failed to prevent hypertension, left ventricular hypertrophy and fibrosis development despite restoration of nitric oxide synthase activity in the left ventricle. However, L-arginine prevented the diminution of coenzyme Q levels in the left ventricle.

Animals↗

Chlamydia pneumoniae antibodies and markers of inflammation in patients with cardiovascular diseases.

BACKGROUND: Chlamydia pneumoniae is suggested to be associated with cardiovascular diseases. OBJECTIVES: To study the presence of IgG, IgA anti-C. pneumoniae antibodies, interleukin-6 (IL-6), and C-reactive protein (CRP) as markers of previous C. pneumoniae infection and inflammation, in sera of patients with acute myocardial infarction (AIM), hypertension (HT), and coronary heart disease (CHD). METHODS: Determination of these markers by ELISA method. RESULTS: Proportion of samples containing both IgG and IgA antibodies as well as IL-6 was significantly higher in all groups of patients than in a control group. The CRP was significantly higher in patients with AIM and HT, however, in other patients, the proportion of positive samples depended on the chosen cut-off value. CONCLUSIONS: The results obtained indicate the feasibility of following chlamydial antibodies on higher number of serum samples extended to direct detection of C. pneumoniae in blood and vascular tissue (Tab. 2, Ref. 24).

Adult↗

Factor V Leiden in patients with venous thrombosis in Slovak population.

Resistance to activated protein C determined by factor V Leiden (FVL) is the most frequent inherited risk factor of venous thrombosis. The purpose of our work was to reveal the frequency of FVL in Slovak patients with venous thromboses, to characterise the nature of venous thromboses in this inherited thrombophilia, and to consider the screening approach to investigation of FVL in patients with venous thromboses. 350 patients with a diagnosis of venous thromboembolic disease from various regions of Slovakia were investigated. FVL, detected by polymerase chain reaction, was found in 128/350 (37%) patients with venous thromboses. 118/128 (92%) patients were heterozygous and 10/128 (8%) were homozygous carriers. In 108/128 (84%) patients with FVL the thromboembolic disease occurred spontaneously. Phlebothrombosis occurred predominantly in the lower limbs--117/128 (91%) patients, atypical localisations were rare. The first thromboembolic event was manifested before 40 years of age in 69% of patients. The family history was positive in 60/128 (47%) FVL carriers with thromboembolic disease. Recurrent thrombosis occurred in 30% of patients with FVL. In agreement with findings in other European countries, the prevalence of FVL was high in Slovak patients with thromboembolic disease. The investigation of FVL seems to be justified in patients before 40 years of age with venous thrombosis of lower limbs, in the absence of triggering factors and with a family history of venous thromboembolic disease.

Factor V↗

ACE-inhibition and angiotensin II receptor blockers in chronic heart failure: pathophysiological consideration of the unresolved battle.

Reducing the effects of angiotensin II by blockade of AT1-receptors may be superior to inhibition of angiotensin II formation by angiotensin converting enzyme (ACE) inhibitors in chronic heart failure (CHF) patients. However, the results of several trials did not fulfil this expectation. In both ELITE II with symptomatic CHF patients and in OPTIMAAL involving high risk patients after acute myocardial infarction, angiotensin II type I (AT1) receptor blocker (ARB) losartan did not prove to be superior to captopril. There are several potential reasons, why ARBs did not fare better than ACE inhibitors. Although AT1-receptor blockade may block the effects of non-ACE pathways of tissue angiotensin II formation, no clinical evidence is available that a more powerful inhibition of the tissue renin-angiotensin system brings improved survival. The choice of patients for clinical trials of HF therapy is not based on the level of neurohumoral activation. Thus, the more effective attenuation of angiotensin II action with ARBs may not bring additional benefits. The potential antiremodeling effect of ARBs through the stimulation of AT2 receptors by angiotensin II could be counterbalanced by a failure of AT1-receptor blockers to enhance bradykinin, nitric oxide and prostacyclin formation with antigrowth properties. Although ACE-inhibitors seem to have slightly better results at present than AT1 blockers in the battle on heart failure patient, future trials will decide which is the definitive winner.

Angiotensin II Type 1 Receptor Blockers↗

Physiologic and pathologic myocardial hypertrophy--physiologic and pathologic regression of hypertrophy?

Hypertrophy of the left ventricle is an adaptive phenomenon of ambiguous biological value. It enables improvement of the heart performance without substantial enhancement of energetic demands. On the other hand, pathologic left ventricular hypertrophy (LVH) is characterized by increased fibrosis, diminished coronary flow reserve and protein remodeling, resulting in increased cardiovascular morbidity and mortality. Achievement of LVH regression is thus considered a principal therapeutic aim. However, the reversal of LVH is a very complex process in which both hemodynamic and non-hemodynamic alterations participate. Reversal of LVH does not mean the re-expression of the original genotype and normalization of myocardial structure and function. It does not guarantee that the heart will be normal in all aspects. Regression of hypertrophy induced by different therapeutic means may exhibit different properties and patterns, with variable biological implications. Physiologic growth stimulators seem to induce LVH without prognostically undesirable alterations. It is a challenge to determine which approach to treatment of hemodynamic overload and concomitant LVH is optimal.

Humans↗

Impaired endothelial function of thoracic aorta in hereditary hypertriglyceridemic rats.

OBJECTIVE: Hereditary hypertriglyceridemia (hHTG) in rats was found to be associated with metabolic abnormalities and elevation of blood pressure. There is controversy regarding the relation between hHTG and vascular function. The aim of this study was to determine the reactivity and accompanying structural changes in thoracic aorta from hereditary hypertriglyceridemic rats and hHTG rats that were given, for a long time, N(G)-nitro-l-arginine methyl ester (L-NAME) with and without simultaneous captopril treatment. METHODS: Isolated rings of thoracic aorta were mounted in organ chambers for isometric tension recording or for measurement of endothelium-dependent relaxation. Morphological changes of thoracic aorta (wall thickness, diameter) were measured using light microscopy. RESULTS: Endothelium-dependent relaxation (EDR) to acetylcholine (ACh, 10(-5) M) was significantly attenuated in the hHTG group compared to control Wistar rats (59.3 +/- 8.5% vs. 95.8 +/- 6.5%, p < 0.001), but normalized after pretreatment with captopril. EDR to ACh was further inhibited in hHTG rats treated with L-NAME (36.0 +/- 2.3%, p < 0.001). Maximum residual relaxation was only partly restored with captopril treatment (72.4 +/- 5.8%, p < 0.001). Hypertriglyceridemia did not significantly alter the sensitivity of the thoracic aorta to exogenous noradrenaline. The diameter/wall thickness (D/W) ratio in aortas of control Wistar rats averaged 16.25 +/- 0.57. This ratio was significantly lower in hHTG rats (12.52 +/- 0.38, p < 0.01) and was not altered after treatment with captopril. In the hHTG rats treated with L-NAME, the D/W ratio was further significantly decreased (8.25 +/- 0.30, p < 0.001). Simultaneous captopril treatment attenuated the decrement of this ratio (9.80 +/- 0.75, p < 0.05). CONCLUSIONS: Results showed that hHTG is accompanied by functional and morphological alterations in the rat thoracic aorta. These changes in hHTG and in hHTG rats treated with L-NAME could be, at least in part, protected by captopril treatment.

Angiotensin-Converting Enzyme Inhibitors↗

[The ACE inhibitor, captopril, in the light of new clinical studies].

Captopril, the classic inhibitor of the angiotensin converting enzyme, was employed in several large clinical studies in recent years. The effect of captopril was compared either with placebo, or captopril was selected as the reference ACE inhibitor for comparison with another therapy. In the classic study SAVE, captopril administered to patients after myocardial infarction with a dysfunction of the left chamber reduced mortality by 19%. Though in the study ELITE the AT1 blocker losartan was more effective to reduce mortality in patients with chronic heart failure than captopril, the larger and mortality-oriented study ELITE II did not demonstrate a difference in mortality reduction between captopril and losartan. ACE inhibitors thus remain drugs of choice in chronic heart failure. AT1 blockers are to be used in the cases when ACE inhibitors are not tolerated. The study CAPPP has demonstrated that captopril in hypertonic patients not only effectively decreases blood pressure but exerts a similar effect on mortality reduction as the classic treatment with a diuretic and a betablocker, the most effective being captopril in diabetic patients. Administration of captopril in hypertonic patients with diabetes mellitus in the study UKPDS had an effect on mortality reduction as well as micro- and macrovascular complications of diabetes similar to that of atenolol. The ongoing study VALIANT compares the AT1 blocker valsartan or a combination of valsartan and captopril with captopril alone on patients at risk after myocardial infarction. Also at the beginning of the 21st century captopril maintains a stable position in the treatment of the cardiovascular system.

Angiotensin-Converting Enzyme Inhibitors↗

Captopril fails to reverse hypertrophy of the left ventricle induced by aortic insufficiency in rabbits.

Angiotensin converting enzyme (ACE) inhibition has been reported to induce regression of hypertrophy in several models of hemodynamic pressure overload. The aim of the present study was to determine whether the ACE inhibitor captopril can reduce hypertrophy of the left ventricle induced by a chronic volume overload and modify collagen composition of the hypertrophied myocardium. Rabbits with four months lasting aortic insufficiency were divided into two groups: treated with captopril (20 mg/kg/day) for five weeks and treated with placebo. The respective control groups were represented by sham-operated animals. Aortic insufficiency induced a decrease of diastolic pressure, an increase of systolic and pulse pressure, hypertrophy of the left and right ventricle, and an increase of hydroxyproline content in the left ventricle without a change of hydroxyproline concentrations in either ventricle. Captopril treatment further enhanced pulse pressure by decreasing diastolic blood pressure. Hypertrophy of the left ventricle, hydroxyproline content and concentration in both ventricles were unaffected by captopril treatment. It is concluded that ACE inhibition did not reverse the left ventricular hypertrophy developed as a result of overload induced by aortic insufficiency. We suggest that mechanisms different from activation of the renin-angiotensin system may play a decisive role in the maintenance of hypertrophy in this particular model of volume hemodynamic overload.

Angiotensin-Converting Enzyme Inhibitors↗

Heart remodeling in the hereditary hypertriglyceridemic rat: effect of captopril and nitric oxide deficiency.

AIM: The hereditary hypertriglyceridemic (hHTg) rat is characterized by insulin resistance, hypertension, and hypertriglyceridemia. Thus, we investigated whether (a) remodeling of the heart left ventricle (LV) is present under the given hypertensive situation and (b) whether this potential alteration could be influenced by an inhibition of the angiotensin converting enzyme (ACE) and/or by a blockade of nitric oxide production. METHODS: Five groups of rats were investigated: control Wistar (C) rats, hHTg rats, hHTg rats given captopril (100 mg/kg/day) (hHTg + CAP) or NG-nitro-l-arginine methyl ester (L-NAME, 40 mg/kg/day) (hHTg + L-NAME), and hHTg rats given the combination of both drugs (hHTg + CAP + L-NAME) for 28 days. Systolic blood pressure (SBP) was measured by tail-cuff plethysmography each week. After cervical dislocation, the relative weights of the left and right ventricles (LV/BW, RV/BW) were obtained, the LV nucleic acid concentrations were analyzed, and the fibrosis amount was quantified with aid of a semiquantitative histological technique. RESULTS: In the hHTg group, the increased SBP (141.7 +/- 4.4 vs. 117.2 +/- 3.1 mmHg in controls) was linked to hypertrophy of the LV (1.63 +/- 0.05 vs. 1.30 +/- 0.03 g/kg in controls) with only a minimum of fibrosis. DNA concentration in the LV was decreased (0.45 +/- 0.03 vs. 0.69 +/- 0.04 mg/g w.w. in controls) in the hHTg group. Captopril normalized SBP and decreased the LV/BW (1.44 +/- 0.04 g/kg). Chronic administration of L-NAME to the hHTg rats additionally enhanced (189.3 +/- 5.9 mmHg) the already raised SBP, stimulated fibrosis development, and increased DNA concentration (0.54 +/- 0.02 mg/g w.w.) in the LV compared to hHTg group, yet without additional weight increase of the LV. The combined treatment of the hHTg rats with CAP and L-NAME resulted in normal SBP and the development of LV hypertrophy, and fibrosis was substantially reduced. CONCLUSIONS: (a) The heart of hHTg rats carries signs of LV hypertrophy with minimal fibrosis. (b) Nevertheless, LV fibrosis was increased in the hHTg + L-NAME group. (c) Captopril normalized SBP and decreased the extent of LV hypertrophy in both the nontreated hHTg and the hHTg + L-NAME groups and (d) substantially reduced the development of LV fibrosis in the hHTg + L-NAME group. LVH in hHTg rats may be induced by sympathoadrenal system activation, circulating volume enlargement, and impairment of nitric oxide (NO) production rather than by activation of the renin-angiotensin-aldosterone system.

Angiotensin-Converting Enzyme Inhibitors↗

[The significance of aldosterone in chronic heart failure: the RALES study].

Reduction of excessive neurohumoral activation in chronic heart failure (CHF) improves the prognoses. In addition to reduction of angiotensin production or angiotensin II action and the influence of the sympathoadrenal system also blocking of aldosterone effects becomes part of the therapeutic procedure in patients with CHF. Excessive systemic and probably also local aldosterone production promotes undesirable fluid retention, hypokalaemia and hypomagnesaemia, induction of hypertrophy and fibrosis of the heart muscle and blood vessels and the development of endothelial dysfunction, peripheral vasoconstriction and depression of the baroreflex. In addition to classical effects also the existence of a rapid, so-called non-genomic effect of aldosterone is assumed. Adding a blocker of aldosterone receptors to ACE inhibition was not recommended due to possibility development of hyperkalaemia. Later it was revealed that ACE inhibitors are unable to block sufficiently the action of aldosterone and that addition of spironolactone in small amounts to ACE inhibition and diuretics does not cause in patients with CHF a major increase of the potassium level. In the RALES study (Randomized Aldacton Evaluation Study) comprising 1663 patients with serious heart failure (NYHA III, IV) addition of 25 mg spironolactone to standard treatment with ACE inhibitor, diuretic and as rule also digoxin reduced the mortality by another 30% as compared with the addition of placebo. Undesirable effects were minimal. As to potential protective mechanisms of spironolactone the greatest importance is ascribed to the reduction of excessive fibrosis of the heart muscle. Spironolactone reduces the level of the circulating N-terminal aminopeptide procollagen type III the high level of which is associated with deterioration of the prognosis.

Aldosterone↗

Resistance to activated protein C--frequent etiologic factor for venous thrombosis.

The discovery of the resistance to activated protein C (APCR) has provoked a new insight into the etiopathogenesis of venous and arterial thrombosis. APCR is determined in 95% genetically by point mutation in the gene for factor V resulting in substitution of arginine in the position 506 by glutamine. This change makes the activated form of factor V (factor Va) resistant to the cleavage by protein C in the place, where the cleavage takes place most quickly under normal conditions. The mutant factor V is known as factor V Leiden. Factor V Leiden preserves its procoagulation activity for a longer period, resulting thus into thrombophilia with all its negative consequences. The inherited deficiencies of antithrombin III, protein C and protein S occur in 10% of patients suffering from venous thrombosis, whereas factor V Leiden is present in as many as 20 to 60%. Thus, it seems that factor V Leiden is the most important inherited risk factor of venous thrombosis. The results of several trials did not indicate the participation of APCR in the development of myocardial infarction. On the other hand, APCR seems to be a risk factor of cerebrovascular accidents, especially of stroke and transitory brain ischemia. Factor V Leiden is an important risk factor of abortions, especially those occurring in the second trimester of pregnancy. According to recent results, factor V Leiden is considered to play a role in the pathogenesis of venous and arterial thromboses in children. The significant risk potential of factor V Leiden with respect to venous thrombosis development and relatively simple diagnosis of this mutation predispose the investigation of this disorder to become the screening method in indicated groups of patients. The investigation of APCR is recommended in all patients with either first or reoccurring attacks of venous thrombosis or thromboembolism, in patients with positive family history of thrombosis and thromboembolism and in women with repeated abortions, particularly in the second trimester of pregnancy. The investigation of APCR in selected groups of patients and early prophylactic anticoagulation therapy may be important in thrombosis prevention in situations with an increased thrombotic potential. (Tab. 1, Ref. 78.)

Activated Protein C Resistance↗

Regression of chronic L -NAME-treatment-induced left ventricular hypertrophy: effect of captopril.

Long-term administration of N(G)-nitro- L -arginine methyl ester (L -NAME) induces development of NO-deficient hypertension and left ventricular (LV) hypertrophy. In this work, we examined the effect of spontaneous and captopril-induced recovery on LV hypertrophy and protein composition in rats with developed L -NAME-induced hypertension. Four groups of rats were investigated: control L -NAME 40 mg/kg/day for 4 weeks (L -NAME) L -NAME 40 mg/kg/day for 4 weeks followed by 3-week spontaneous recovery (L -NAME+R) L -NAME 40 mg/kg/day for 4 weeks followed by 3 weeks of captopril treatment at a dose of 100 mg/kg/day (L -NAME+C). LV hypertrophy in the L -NAME group was associated with an increase in content and concentration of left ventricular DNA and RNA, concentration of metabolic proteins (MP) and soluble collagenous proteins (SCP). Spontaneous recovery period reduced the hypertension, without regression of LV hypertrophy. Left ventricular DNA and RNA content were increased in the L -NAME+R group. In this group, concentrations of MP, contractile proteins (CP), and collagenous proteins did not differ from those in the L -NAME group. Captopril treatment caused total regression of hypertension and LV hypertrophy and decreased both content and concentration of DNA and RNA, as well as the contents of MP, CP and SCP v the L -NAME group. However, after captopril treatment, concentration of collagenous and non-collagenous protein fractions remained increased v control. We conclude that spontaneous regression of L -NAME-induced hypertension is not associated with regression of LV hypertrophy. LV hypertrophy was regressed only in captopril-treated animals.

Angiotensin-Converting Enzyme Inhibitors↗

Effect of angiotensin-converting enzyme inhibitors on non-diseased myocardium of experimental animals: potential clinical implications.

Angiotensin-converting enzyme (ACE) inhibitors protect the hearts of patients with different levels of cardiac disorder. The greatest benefit seems to be achieved in subjects with most severe heart failure. Moreover, ACE inhibition is protective also in patients without manifested heart failure but with severe systolic left ventricular dysfunction. Data are presented that ACE inhibitors can alter the composition of the myocardium also in control: healthy animals. In rats and rabbits with non-diseased heart, chronic ACE inhibition reduced fibrotic tissue concentration in the left ventricle. We speculate that if this were applied to humans, ACE inhibition may prove to be of potential benefit in subjects with normal systolic function but with a trend to left ventricular filling abnormalities caused by increased ventricular stiffness. In these patients reduction of myocardial fibrotic tissue might prevent deterioration of diastolic function.

Angiotensin-Converting Enzyme Inhibitors↗

The potential role of nitric oxide in the hypertrophic growth of the left ventricle.

Left ventricular hypertrophy (LVH) is the result of interaction between a chronic hemodynamic overload and non-hemodynamic factors. There are several lines of evidence presented in this work suggesting that nitric oxide (NO) may participate in the hypertrophic growth of the myocardium. First, endothelial NO production was shown to be decreased in several types of hemodynamically overloaded circulation both in animals and humans. Second, compounds stimulating NO production were able to diminish the extent or modify the nature of LVH in some models of myocardial hypertrophic growth. Third, arterial hypertension can be induced by inhibition of nitric oxide synthase activity. This NO-deficient hypertension is associated with the development of concentric LVH, myocardial fibrosis and protein remodeling of the left ventricle. The mechanism of LVH development in NO-deficient hypertension is complex and involves decreased NO production and increased activation of the renin-angiotensin-aldosterone system. Cardiovascular protection via ACE inhibition in NO-deficient hypertension may be induced by mechanisms not involving an improvement of NO production. In conclusion, the hypertrophic growth of the LV appears to be the result of interaction of vasoconstrictive and growth stimulating effects of angiotensin II on the one hand and of vasodilating and antiproliferative effects of nitric oxide on the other.

Animals↗

Passive smoking impairs endothelium-dependent relaxation of isolated rabbit arteries.

The aim of the present study was to examine the effect of prolonged passive smoking (lasting 3 weeks) on plasma catecholamine levels and reactivity of isolated rabbit arteries. Plasma noradrenaline, adrenaline and dopamine levels were determined radioenzymatically. Isolated rings of the thoracic aorta and carotid artery were suspended in organ chambers and connected to a force transducer for the recording of isometric tension. Plasma noradrenaline levels were found to be significantly elevated in rabbits subjected to passive smoking for 3 weeks. Plasma adrenaline and dopamine levels were not changed. Transmural nerve stimulation of arterial rings evoked frequency-dependent contractions. Prolonged passive smoking did not affect neurogenic contractions of the arteries tested. On the other hand, endothelium-dependent relaxations of phenylephrine-precontracted arteries were significantly impaired. Furthermore, hypertrophy of the left ventricle was observed. In conclusion, passive smoking impairs endothelium-dependent relaxations but not neurogenic contractions of systemic arteries. The impaired relaxations of arteries may be, at least in part, mediated through the degradation of released nitric oxide by superoxide anions derived from cigarette smoke.

Animals↗