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Biomedical subjects

J Pepke-Zaba

Publications and source records attributed to J Pepke-Zaba.

At least 19 recordsLinked to original sources

Semi-quantitative assessment of tricuspid regurgitation on contrast-enhanced multidetector CT.

AIM: To assess whether the early regurgitation of intravenous contrast medium into the inferior vena cava (IVC) and/or hepatic veins on computed tomography (CT), indicates tricuspid regurgitation (TR), and if so, whether it be used to grade severity. MATERIALS AND METHODS: We identified 86 consecutive patients that had been investigated for possible pulmonary endarterectomy at Papworth Hospital. From these, 61 patients were selected in whom CT, transthoracic echocardiography, and right heart catheterization (RHC) had been performed within 6 weeks. Using an arbitrary visual scale, the degree of TR assessed by intravenous contrast-enhanced CT was compared with echocardiography. Results were analysed using a kappa weighted statistical test. In addition, CT and echocardiographic assessments of TR severity were correlated with pulmonary artery pressure measurements obtained by RHC (Spearman's rank correlation coefficient). RESULTS: CT assessment of TR had a sensitivity of 90.4% and a specificity of 100% in detecting echocardiographic TR. For TR graded as more than trivial by echocardiography, sensitivity of CT was 100%. With respect to RHC data, the correlation between severity assessment of TR between CT and echocardiography using the Kappa weighted coefficient was 0.56 (moderately good agreement). With respect to RHC data, the correlation between mean pulmonary pressure and TR grading on CT and echocardiography was r = 0.685 (p < 0.001) and r = 0.727 (p < 0.001), respectively. CONCLUSION: Early opacification of the IVC or hepatic veins on first-pass contrast-enhanced CT almost invariably indicates TR. There is moderately good agreement between CT and echocardiographic assessment of the severity of TR. Both CT and echocardiographic grading of TR correlate well with RHC measurements of pulmonary artery pressure.

Adolescent↗

Atrial septostomy in the treatment of severe pulmonary arterial hypertension.

BACKGROUND: Atrial septostomy (AS) may improve symptoms and haemodynamics in patients with severe pulmonary arterial hypertension (PAH). METHODS: Twenty AS performed in 17 patients with severe progressive PAH (13 primary pulmonary hypertension, two collagen vascular disease, one thromboembolic disease, one vaso-occlusive disease) were analysed. Seven patients were in NYHA class III and 10 in NYHA IV. Fifteen patients were on long term prostanoid treatment. AS was performed under fluoroscopy using graded balloon technique. RESULTS: AS improved clinical symptoms and increased the cardiac index from 1.8 to 2.2 l/min/m(2) and systemic oxygen transport from 263.2 to 329.6 ml/min/m(2) (p<0.001). Procedure related complications included one non-fatal atrial puncture and one unsuccessful septal puncture. Four patients died within 1 week of surgery from uncontrolled tachyarrhythmia (n=1), severe hypoxaemia (n=1), and multiorgan failure (n=2). One further patient died after voluntarily discontinuing renal dialysis. Twelve patients are alive 5-17 months after the operation with five patients undergoing heart-lung transplantation. There were no differences in haemodynamic and functional parameters between the non-survivors and the mid term survivors. However, the non-survivors were significantly older (52 v 36 years, p<0.01) and had a significantly lower creatinine clearance rate (70 ml/min v 48 ml/min, p<0.05). CONCLUSION: Atrial septostomy improves clinical symptoms, cardiac index, and systemic oxygen transport and has the potential to influence the prognosis in selected cases of severe PAH.

Adolescent↗

Role of computed tomographic scanning of the thorax prior to bronchoscopy in the investigation of suspected lung cancer.

BACKGROUND: Fibreoptic bronchoscopy (FOB) is the usual initial investigation of choice in patients with suspected endobronchial carcinoma, but it is often non-diagnostic. Once a positive diagnosis has been made, many patients undergo staging by computed tomographic (CT) scanning to assess the extent of the disease and its suitability for radical treatment. To determine whether initial CT scanning before FOB is a cost effective way of reducing subsequent unnecessary or unhelpful invasive diagnostic procedures, a study was undertaken in 171 patients with suspected endobronchial carcinoma. METHODS: A randomised two group study was performed with all patients undergoing an initial CT staging scan. In group A the CT scans were reviewed before FOB, allowing cancellation or a change to an alternative invasive procedure if considered appropriate. In group B all patients proceeded to FOB with the bronchoscopist blinded to the result of the CT scan until after the procedure. RESULTS: In group A six of 90 patients (7%) required no further investigations as the CT scan was either normal, consistent with benign disease, or consistent with widespread metastatic disease. Of the remainder, bronchoscopy was diagnostic in 50 of 68 (73%) in group A compared with 44 of 81 (54%) in group B (p = 0.015). Overall, a positive diagnosis was made after a single invasive investigation in 64 of 84 patients (76%) in group A compared with only 45 of 81 patients (55%) in group B (p = 0.005). Only seven of 90 patients (8%) in group A required more than one invasive investigation compared with 15 of 81 patients (18.5%) in group B. In patients with malignancy, bronchoscopy was more likely to be diagnostic in group A (50 of 56 patients (89%)) than in group B (44 of 62 (71%); p = 0. 012), and the diagnosis was more frequently made on the initial invasive investigation (group A, 63 of 70 (90%); group B, 44 of 62 (71%); p = 0.004). Because of the lower number of invasive procedures performed in group A than in group B, the cost of performing CT scans before FOB in all patients in group A would have equated to a projected cost of performing CT scans in 60% of patients after FOB in group B. CONCLUSIONS: Performing initial CT thoracic scans before bronchoscopy in patients with suspected endobronchial malignancy is a cost effective way of improving diagnostic yield from invasive diagnostic procedures and occasionally may obviate the need for any further investigation.

Adult↗

Alpha-adrenoceptor stimulation of porcine pulmonary arteries.

The effects of alpha 1- and alpha 2-adrenoceptors stimulants on vascular tone of 188 isolated rings of pulmonary arteries from 24 pigs have been studied. The rings were pretreated with indomethacin, to inhibit cyclo-oxygenase. Isometric tension was recorded and concentrations of cyclic 3'5'-guanosine monophosphate (cGMP) and cyclic 3'5'-adenosine monophosphate (cAMP) were measured. Rings with endothelium contracted with phenylephrine (10(-5) M) (n = 41) and the alpha 1-adrenoceptor agonist methoxamine (10(-3) M) (n = 24). cGMP did not change with methoxamine, but rose with phenylephrine, peaking at 30 to 45 s. This preceded the maximum rise in tension with phenylephrine which occurred later at 120 to 360 s. The alpha 2-adrenoceptor agonist, clonidine (10(-5) M) (n = 33) and the muscarinic receptor agonist acetylcholine (10(-5) M) (n = 30) relaxed precontracted pulmonary arterial rings, minimum tension occurring after 120 s, whilst cGMP rose after 30-45 s. After removal of endothelium (n = 24), the tension after phenylephrine (10(-5) M) was higher and the rise in cGMP was abolished. The cAMP levels did not change with phenylephrine (10(-5) M), acetylcholine (10(-5) M), clonidine (10(-5) M) nor methoxamine (10(-3) M). Activation of alpha 1-adrenoceptors on pulmonary arteries smooth muscle cause contraction, whilst activation of alpha 2-adrenoceptors on endothelial cells cause relaxation probably through a release of nitric oxide and a rise in cGMP.

Acetylcholine↗

Impairment of pulmonary-artery endothelium-dependent relaxation in chronic obstructive lung disease is not due to dysfunction of endothelial cell membrane receptors nor to L-arginine deficiency.

1. Endothelium-dependent relaxation mediated by endothelium-derived relaxing factor (EDRF) or nitric oxide (NO), is impaired in pulmonary arteries (PA) of hypoxic patients with chronic obstructive lung disease (COLD). To determine the mechanisms responsible for this impairment, we compared the response of rings of isolated PA from 12 COLD patients and 8 controls to the endothelium-dependent vasodilators acetylcholine (ACh), adenosine diphosphate (ADP), and the calcium ionophore, A23187. The response of PA rings to the endothelium-independent nitro-vasodilator sodium nitroprusside (SNP) was also studied in both groups. The PA rings had been pre-contracted by the alpha-adrenoceptor agonist phenylephrine (PE). 2. Endothelium-dependent relaxation was significantly reduced in PA rings from COLD patients as compared with controls when tested with ACh (37.8 +/- 8.8% vs 73.4 +/- 7.9%), ADP (38.4 +/- 6.7% vs 80 +/- 5.6%), and the calcium ionophore, A23187 (35.8 +/- 6.1% vs 87 +/- 6.6%). Relaxation with SNP was, however, significantly greater in PA rings from COLD patients (99.4 +/- 0.6% vs 90.3 +/- 3.1%), as was the contractile response to PE (1.91 +/- 0.21 g vs 1.33 +/- 0.15 g). Pretreatment with the specific inhibitor of NO formation, NG-monomethyl-L-arginine (L-NMMA; 10(-4) M) significantly reduced the relaxation to ACh in all PA rings. This inhibition could be reversed by L-arginine (10(-3) M), the substrate for NO synthesis. Pretreatment with L-arginine alone, however, did not restore the impaired endothelium-dependent relaxation of PA rings from COLD patients. 3. We conclude that EDRF (NO) production is impaired in PA rings from COLD patients and that this impairment is neither due to endothelial receptors dysfunction nor a defect of L-arginine availability and/or transport. Our hypothesis is that the abnormality must lie within the biosynthesis pathway of NO from L-arginine, possibly involving the endothelial enzyme cell, NO synthase, the normal function of which might be altered by chronic hypoxia.

Acetylcholine↗

In vitro pulmonary vasorelaxant effect of the phosphodiesterase inhibitor enoximone.

Enoximone is a phosphodiesterase inhibitor that has both positive inotropic and systemic vasorelaxant activities. The latter are mediated by an increase in vascular smooth muscle concentration of cyclic 3'5' guanosine monophosphate. However, the effect of enoximone on pulmonary vasoreactivity is not established. The authors, therefore, have studied its effect on endothelium-dependent relaxation mediated by the endothelium-derived relaxing factor nitric oxide (NO), as well as endothelium-independent relaxation of isolated porcine pulmonary arteries. Enoximone (10(-7) to 10(-4) M) caused a dose-dependent relaxation in all pulmonary arterial rings. This relaxation neither required the presence of the endothelium nor was affected by the addition of the inhibitor of NO synthase omega-nitro-L-arginine methyl ester (10(-4) M). Also, the vasorelaxant response of the rings to the endothelium-dependent vasodilator adenosine diphosphate (10(-10) to 10(-5) M) was not affected by pretreatment with enoximone. The authors conclude that enoximone is a potent vasodilator that relaxes pulmonary vascular rings through mechanisms independent of the endothelium. This endothelium-independent vasodilatory effect of enoximone makes it a potentially valuable drug for the treatment of pulmonary hypertension. This particularly applies to diseases in man where NO production by the endothelial cells is impaired.

Animals↗

Exercise increases the release of atrial natriuretic peptide in heart transplant recipients.

It is known that atrial natriuretic peptide (ANP) is synthesized, stored and released from the myocytes of mammalian heart, but the role of cardiac autonomic nerves in triggering the release of ANP has not been fully assessed. We have therefore measured plasma ANP concentrations in the right atrium and the main pulmonary artery, together with pulmonary haemodynamics in 10 heart transplant (HT) recipients who underwent graded submaximal bicycle exercise during right-heart catheterisation. Pulmonary arterial blood samples and haemodynamic measurements were obtained at rest, on peak of exercise, and after ten minutes of recovery. A radioreceptor of alpha-human ANP was used to measure ANP levels. Exercise significantly increased ANP levels in both the right atrium from 24 pM (resting values) to 48.5 pM, and the main pulmonary artery from 27.1 pM (resting values) to 58.4 pM. We conclude that HT recipients still retain the ability to increase ANP release in response to graded submaximal dynamic exercise, and that the mechanisms underlying ANP release depend on other factors than the integrity of cardiac innervation in man.

Adult↗

Inhaled nitric oxide as a cause of selective pulmonary vasodilatation in pulmonary hypertension.

The acute effects of inhaled nitric oxide (NO) (40 ppm in air) on pulmonary (PVR) and systemic (SVR) vascular resistance were compared with those of an intravenous infusion of prostacyclin (24 micrograms/h) in 8 patients with severe pulmonary hypertension and 10 cardiac patients with normal values of PVR. 10 healthy volunteers were studied non-invasively. In the patients with pulmonary hypertension, PVR fell significantly after inhaled NO and after prostacyclin. PVR also fell significantly in the cardiac patients after inhaled NO. Although SVR fell substantially after prostacyclin in patients with pulmonary hypertension, inhaled NO had no effect on SVR in any patient or volunteer. Inhaled NO therefore seems to be both a selective and effective pulmonary vasodilator.

Administration, Inhalation↗

Impairment of endothelium-dependent pulmonary-artery relaxation in chronic obstructive lung disease.

BACKGROUND: Endothelial cells release endothelium-derived relaxing factor (EDRF) in a variety of vascular beds, including the pulmonary circulation. However, the role of EDRF-mediated pulmonary-artery relaxation in chronic hypoxic lung disease is unknown. METHODS: We studied endothelium-dependent relaxation mediated by EDRF in vitro in pulmonary arteries that had been obtained from 22 patients undergoing heart-lung transplantation for end-stage chronic obstructive lung disease. Control pulmonary arteries were obtained from 15 patients undergoing lobectomy for lung carcinoma who did not have evidence of other chronic lung disease. The responses of all vascular rings (external diameter, 1.2 to 3.4 mm) to the endothelium-dependent vasodilators acetylcholine and adenosine diphosphate were studied immediately after lung excision. RESULTS: Pulmonary arterial rings from the patients with chronic lung disease developed a greater tension (2.19 +/- 0.16 g) in response to phenylephrine (10(-6) M) than the rings from control patients (1.28 +/- 0.18 g, P less than 0.05). Inhibition of EDRF synthesis by treatment with NG-monomethyl-L-arginine (10(-4) M) eliminated this difference, increasing the tension in the rings from the controls (P less than 0.01) but not in those from the patients with chronic lung disease. Rings from control patients relaxed in response to cumulative doses (10(-10) to 10(-5) M) of acetylcholine (maximal relaxation, 81.3 +/- 3.9 percent) and adenosine diphosphate (maximal relaxation, 85.3 +/- 2.6 percent). By contrast, rings from patients with chronic obstructive lung disease achieved only 41.3 +/- 4.8 percent of maximal relaxation in response to acetylcholine (n = 32) and 49.4 +/- 5.5 percent in response to adenosine diphosphate (n = 24) (P less than 0.001, as compared with control rings). Rings from both the controls and the patients with chronic lung disease relaxed similarly in response to the endothelium-independent vasodilator sodium nitroprusside (10(-4) M). There was an inverse correlation between the degree of intimal thickening and the level of maximal relaxation of the rings from the patients with chronic lung disease (r = -0.60, P less than 0.001). Maximal relaxation was also related directly to the partial pressure of arterial oxygen before transplantation (r = 0.68, P less than 0.01) and inversely to the partial pressure of arterial carbon dioxide before transplantation (r = -0.55, P less than 0.01), but not to the forced expiratory volume in one second (r = 0.19, P not significant). CONCLUSIONS: Endothelium-dependent pulmonary-artery relaxation in vitro is impaired in arteries from patients with end-stage chronic obstructive lung disease. Such impairment may contribute to the development of pulmonary hypertension in chronic hypoxic lung disease.

Acetylcholine↗

Validation of impedance cardiography measurements of cardiac output during limited exercise in heart transplant recipients.

Twenty-one patients were studied at rest and during exercise after heart transplantation to compare cardiac output measured by thermodilution and impedance cardiography. Exercise was performed on a bicycle ergometer over a limited range of work load (25 and 50 watt) whilst metabolic gas exchange was recorded. One patient was studied at rest whilst his circulation was maintained by a Jarvik-7 artificial heart. The values of cardiac output measured by impedance cardiography corresponded closely with the flow rate from the artificial heart. There was also close agreement between the impedance and thermodilution measurements of cardiac output at rest and during exercise. Both measurements followed the changes in heart rate and oxygen consumption. Both thermodilution and impedance cardiography methods elicited good reproducibility of cardiac output measurements at rest and during exercise. These observations suggest that the noninvasive and continuous record of cardiac output obtained by impedance cardiography can be used for the postoperative monitoring of heart transplant recipients.

Adult↗

Impairment of pulmonary endothelium-dependent relaxation in patients with Eisenmenger's syndrome.

A comparison has been made between the endothelium-dependent relaxation of pulmonary arteries (PA) obtained at heart-lung transplantation from 4 patients with Eisenmenger's syndrome and secondary pulmonary hypertension, and PA obtained at lobectomy from 4 patients with lung carcinoma, the controls. All vascular rings were studied immediately after lung excision. PA rings from control patients dose-dependently relaxed to cumulative doses of acetylcholine (ACh, 10(-10) to 10(-5) M), achieving a maximal relaxation of 80 +/- 5% (mean +/- s.e. mean) from precontraction with phenylephrine. By contrast, PA rings from Eisenmenger's syndrome patients achieved a maximal relaxation of only 34 +/- 12% (P less than 0.05, unpaired t test), with even paradoxical contraction at high doses of ACh (10(-6) to 10(-5) M). Sodium nitroprusside (10(-4) M) relaxed all PA rings, with and without endothelium (carefully removed before study), obtained from both control and Eisenmenger's syndrome patients. These results provide the first evidence that endothelium-dependent relaxation of PA mediated by endothelium-derived relaxing factors is impaired in Eisenmenger's syndrome patients with secondary pulmonary hypertension.

Acetylcholine↗

Atrial natriuretic peptide in primary pulmonary hypertension.

Plasma levels of atrial natriuretic peptide (ANP) were determined during cardiac catheterization in nine patients with primary pulmonary hypertension (PPH) and the effect of prostacyclin infusion via a right heart catheter studied. The role of hypoxia on the release of ANP was investigated in a control group of six normal subjects who underwent an acute hypoxic challenge. Patients showed the typical haemodynamic changes of primary pulmonary hypertension with elevation of mean (SD) pulmonary artery pressure, 71.3 (13.8) mmHg, and low cardiac index, 1.9 (0.5) l.min-1.m-2. Plasma ANP was also elevated; mean pulmonary artery plasma ANP was 96.3 (77.6) pmol.l-1 in PPH patients compared with mean venous plasma ANP of 8.9 (5.6) pmol.l-1 in normal subjects. Prostacyclin infusion in PPH patients and hypoxic challenge in normal subjects did not significantly alter plasma ANP levels. The elevated levels of ANP in PPH are due to the altered haemodynamics secondary to increased pulmonary vascular resistance and may be responsible for the lack of peripheral oedema seen in this condition.

Adult↗

Acetylcholine and adenosine diphosphate cause endothelium-dependent relaxation of isolated human pulmonary arteries.

Endothelium-dependent vasorelaxation mediated by endothelium-derived relaxing factors (EDRF) has been extensively studied in animals but only limited studies in man are available. Demonstration of EDRF-mediated dilatation of human vessels is fundamental for understanding the mechanisms of vascular diseases in man. We have investigated endothelium-dependent relaxation of isolated human pulmonary arteries. Vascular segments, taken from uninvolved regions of resected lung from eight patients undergoing lobectomy for lung carcinoma, were cut into rings. In rings precontracted with phenylephrine, both acetylcholine (ACh) and adenosine diphosphate (ADP) induced dose-dependent relaxation in the presence of endothelium but not when the endothelium had been carefully removed. The rings without endothelium relaxed completely with sodium nitroprusside, a vasodilator agent acting directly on vascular smooth muscle. Pre-incubation with indomethacin, a cyclo-oxygenase inhibitor which blocks production of prostacyclin, did not alter the vasorelaxant responses to ACh and ADP, suggesting that one (or several) non-prostanoid EDRF(s) are responsible for the endothelium-dependent relaxation of isolated human pulmonary arteries.

Acetylcholine↗