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Biomedical subjects

R Ferrari

Publications and source records attributed to R Ferrari.

At least 235 records · Page 13Linked to original sources

How do calcium antagonists differ in clinical practice?

The majority of calcium antagonists used clinically belong to three distinct chemical classes: the phenylalkylamines, the dihydropyridines, and the benzothiazepines. In recent years their mode of action has been unravelled, their limitations recognized, and their efficacy and use in the management of patients with a broad spectrum of cardiovascular and other disorders defined. It is clear, however, that these drugs are not all alike, providing an explanation for their differing effects. The final therapeutic effect in humans depends on the mechanisms of action at the molecular level, the tissue selectivity, and the hemodynamic changes of each agent. All these aspects are examined in detail in this article. Concepts that are highlighted are as follows: (a) Molecular biology has allowed recognition of the polypeptide components of the alpha 1 subunit of the L-type Ca2+ channel and the finding of peptide segments covalently labelled by all three classes of drugs. (b) The location of these segments within the peptides is different: Binding sites for dihydropyridines are located externally, whereas those for verapamil and diltiazem are located internally, in the cytosolic part of the membrane. (c) Dihydropyridine binding is voltage dependent. This explains the selectivity of this class of drugs for vascular smooth muscle, which is more depolarized than cardiac muscle. (d) Phenylalkylamines and benzothiazepines reach their receptors at the internal surface of the sarcolemma through the channel lumen. Their binding is facilitated by the repetitive depolarization of atrioventricular and cardiac tissue, a phenomenon described as use dependence. This explains why these drugs are not highly selective, but equipotent for the myocardium, the atrioventricular conducting tissue, and the vasculature. (e) Dihydropyridines act through selective vasodilatation and may increase heart rate and contractility via a reflex mechanism. On the contrary, phenylalkylamines and diltiazem act through a combination of effects, including reduction of afterload, heart rate, and contractility. When taken together, all these differences distinguish the preferential clinical utilization of one of these compounds for a given cardiovascular pathology.

Binding Sites↗

Left ventricular dysfunction due to stunning and hibernation in patients.

Left ventricular dysfunction is in most cases the consequence of myocardial ischemia. It may occur transiently during an attack of angina and usually it is reversible. It may persist over hours or even days in patients after an episode of ischemia followed by reperfusion, leading to the so-called condition of stunning. In patients with persistent limitation of coronary flow, left ventricular dysfunction may be present over months and years, or indefinitely in subjects with fibrosis, scar formation, and remodeling after myocardial infarction. However, chronic left ventricular dysfunction does not mean permanent or irreversible cell damage. Hypoperfused myocytes can remain viable but akinetic. This type of dysfunction has been called hibernating myocardium. The dysfunction due to hibernation can be partially or completely restored to normal by reperfusion. It is, therefore, important to clinically recognize a hibernating myocardium. In the present article we evaluate stunning and hibernation with respect to clinical decision making and, when possible, we refer to our ongoing clinical experience.

Humans↗

Hypertension, aging, and myocardial synthesis of heat-shock protein 72.

We determined the temperature-induced synthesis of the 72-kD heat-shock protein (hsp72) in hearts of normotensive and spontaneously hypertensive rats (SHR) subjected to whole-body hyperthermia (42.0 +/- 0.5 degrees C for 15 minutes). The animals were studied at three different ages: young (2 months), adult (6 months), and old (18 months). The hsp72 was determined by Western blot analysis using a monoclonal antibody. The results were calculated densitometrically as a percentage of a commercial standard. Young SHR responded to hyperthermic stress with increased synthesis of hsp72 compared with age-matched normotensive rats (298.8 +/- 70.0% versus 88.3 +/- 25.5%). This trend was maintained in adult rats (118.1 +/- 31.0% versus 54.8 +/- 21.3%) but not in old rats (65.3 +/- 29.4% versus 43.6 +/- 15.1%). Aging caused a reduction of hsp72 expression in response to hyperthermic stress in both SHR (4.6-fold) and normotensive rats (twofold). These data show that hearts of young and adult SHR respond to heat shock with enhanced synthesis of hsp72. This abnormal response, attenuated by aging, is independent of the presence and degree of hypertension or hypertrophy and is potentially linked to the genetic determination of the disease.

Aging↗

A unique electrocardiographic finding in a patient after esophagectomy.

An unusual electrocardiographic finding was seen in a patient with total esophagectomy. The ECG showed an undulating baseline in the anteroseptal leads, and it is postulated that because the surgical result positioned the stomach in the anterior mediastinum, the electrical activity of gastric contractions was being recorded.

Adult↗

[Evolution of myocardial ischemia therapy: calcium antagonists and ACE-inhibitors].

We have considered the possibility that the association between Ca(2+)-antagonists and ACE-inhibitors may be useful to treat patients with myocardial infarction. The two classes of drugs have synergic and complementary effects in terms of mechanism and site of action and of cardioprotective properties. In clinical trials Ca(2+)-antagonists failed to improve prognosis of patients with myocardial infarction, except verapamil which reduces mortality in patients with myocardial infarction and without pulmonary congestion. ACE-inhibitors are effective only in patients with myocardial infarction and congestive heart failure. Thus the two classes of drugs could be useful to treat patients with myocardial infarction but this hypothesis has to be confirmed with properly designed clinical trials.

Angiotensin-Converting Enzyme Inhibitors↗

Analysis of serum apolipoprotein A-I in elderly non-insulin-dependent diabetic patients.

Quantitative and qualitative modifications of plasma apolipoproteins could provide additional information in predicting coronary heart disease (CHD) in non-insulin-dependent diabetes mellitus (NIDDM). We examined 17 men and 15 women aged over 65 years affected by NIDDM. Alcohol intake, smoking habits, antidiabetic therapy, body weight, stature, and body mass index were considered. Furthermore, serum lipids and apolipoprotein A-I and B levels were determined. Apo A-I was characterized by isoelectric focusing (IEF) and immunoblotting. The men were heavier and taller than the women. The women had significantly higher serum levels of total cholesterol, HDL-cholesterol, and apo A-I than the men. The levels of HDL-cholesterol, apo A-I and B were significantly influenced by an interaction between sex and the duration of diabetes. An invariant pattern was observed for apo A-I isoforms in samples from diabetic subjects of both sexes. The percentage distribution of serum apo A-I isoforms determined by densitometry is quite different from that previously reported in the literature for the general population. Quantitative modification in apo A-I isoforms could be due to the specific pathology and these variations could partly explain reduced levels of HDL-cholesterol in diabetic patients.

Aged↗

[Evaluation of QRS voltage in 12 derivations and Cornell criteria in the diagnosis of left ventricular hypertrophy].

PURPOSE: To search for the existence and degree of correlation between total 12 lead ECG amplitude and the sum of RaVL + SV3 > 28 mm (for men) or > 20mm (for women) and left ventricular hypertrophy (LV mass calculated by echocardiography > 215g for both sexes). METHODS: ECG and echocardiograms of 227 consecutive patients were examined and submitted to statistical analysis searching for correlation between total 12 lead ECG amplitude and Cornell criteria and LV mass (ASE formula modified by Devereux). RESULTS: Patients had ischemic heart disease, hypertension, valvular disease, cardiomyopathy or other less common heart diseases, or had no cardiac illness at all. There was statistically significant association of total 12 lead amplitude > 120mm and Cornell criteria with LV mass > 215g (p = 0.02 and p = 0.01 respectively). Total ECG amplitude showed 74.3% sensitivity, 42.6% specificity, and 52.4% accuracy. Cornell criteria showed values of 37.8%, 82.7% and 68.7% respectively. CONCLUSION: Total 12-lead amplitude presented limited diagnostic performance for detecting LV hypertrophy, as well as did ECG Cornell criteria, although the latter was more specific and more accurate.

Adolescent↗

Effect of lacidipine on ischaemic and reperfused isolated rabbit hearts.

Lacidipine is a new developed dihydropyridine calcium-antagonist, showing a slow onset and long lasting-selective activity. To assess whether the administration of lacidipine protects the myocardium in a dose-dependent manner against ischaemia and reperfusion, isolated rabbit heart were infused with three different concentrations of lacidipine: 10(-10); 10(-9); 10(-8) M. Diastolic and developed pressures were monitored; coronary effluent was collected and assayed for CPK activity and for noradrenaline concentration; mitochondria were harvested and assayed for respiratory activity, ATP production and calcium content and tissue concentration of ATP, creatine phosphate (CP) and calcium were determined. Occurrence of oxidative stress during ischaemia and reperfusion was also monitored in terms of tissue content and release of reduced (GSH) and oxidized (GSSG) glutathione. Treatment with lacidipine at 10(-10) and 10(-9) M had no effects on the hearts when perfused under aerobic condition, whilst the higher dose reduced developed pressure of 36%. The ischaemic-induced deterioration of mitochondrial function was attenuated. On reperfusion treated hearts recovered better than the untreated hearts with respect to left ventricular performance, replenishment of ATP and CP stores and mitochondrial function. The reperfusion-induced tissue and mitochondrial calcium overload, release of CPK and of noradrenaline and oxidative stress were also significantly reduced. The effects of lacidipine were dose-dependent. The lower concentration (10(-10) M) failed to modify ischaemic and reperfusion damage. The dose of 10(-9) M was cardioprotective, but the best effect was found at 10(-8) M. It is concluded that lacidipine infusion provides a dose dependent protection of the heart against ischaemia and reperfusion. Because this protection occurred also at 10(-9) M, in the absence of negative inotropic effect during normoxia and of a coronary dilatory effect during ischaemia, it cannot be attributed to an energy sparing effect or to improvement of oxygen delivery. From our data we can envisage two other major mechanism: -1) membrane protection -2) reduction of oxygen toxicity. The ATP sparing effect occurring at 10(-8) M is likely to be responsable for the further protection.

Animals↗

Levels of atrial natriuretic factor in the plasma and urine of patients with and without heart failure.

We assayed the concentrations of atrial natriuretic factor and guanosine 3',5'-phosphate in the plasma and urine of six healthy subjects, 12 patients with coronary artery disease and 11 patients with congestive heart failure. Patients with coronary artery disease had normal levels of atrial natriuretic factor in the plasma and urine and a normal excretion of guanosine 3',5'-phosphate, while those with congestive heart failure had a raised level of atrial natriuretic factor in the plasma, an increased excretion of 3',5'-guanosine phosphate and normal excretion of atrial natriuretic factor. Thus, measurement of atrial natriuretic factor in the urine can not replace the assay of the peptide in plasma.

Aged↗

Acute and chronic effects of the dihydropyridine calcium antagonist nisoldipine on the resting and exercise hemodynamics, neurohumoral parameters, and functional capacity of patients with chronic heart failure.

The acute and chronic effects of the dihydropyridine calcium antagonist nisoldipine were studied in patients with chronic heart failure (LV EF < .35; peak VO2 < 25 ml/kg/min) caused by idiopathic or postinfarction cardiomyopathy. The study group initially consisted of 16 patients; two patients were excluded from the acute study due to side effects of the drug and two more patients were excluded during the chronic part of the study because of excessive tachycardia or worsening heart failure, respectively; therefore, the final study group consisted of 12 patients. Each patient was evaluated at rest, in the supine and sitting positions, and during maximal bicycle exercise, before and after acute and chronic (2-3 months) oral nisoldipine therapy (20 mg bid). Plasma levels of renin activity, aldosterone, norepinephrine, and epinephrine were measured before and 1 hour after nisoldipine in 10 patients. Concomitant therapy with digitalis and diuretics was kept constant throughout the study. At rest, in the supine position, nisoldipine (20 mg orally) induced an acute increase of cardiac index from 2.87 +/- 0.52 to 3.93 +/- 1.52 l/min/m2, with a reduction of mean arterial pressure from 97 +/- 7 to 85 +/- 9 mmHg and systemic vascular resistance from 1417 +/- 201 to 968 +/- 257 dynes sec/sec cm5 without significant changes of right atrial and pulmonary pressures. Hemodynamic effects peaked 1 hour after its administration and persisted for 6 hours. Similar changes were observed in the resting sitting position.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Intraocular injection of APB decreases the metabolic response of the rat superior colliculus.

The functional activity of the superior colliculus (SC) following flash stimulation was examined by means of 2-deoxyglucose (2DG) method in monocularly enucleated Long-Evans rats intraocularly injected with a solution of 2-amino-4-phosphonobutyric acid (APB), able to silence the ON retinal activity. After APB injection SC layers recipient of retinal axons suffered a sustained 2DG decrease as compared to controls. Moreover, whereas glucose utilization in normal rat SC appears unevenly distributed and closely related to retinal axon density, by contrast, APB-treated rats showed a rather uniform metabolic activity throughout the SC surface. Furthermore, we calculated the 2DG uptake percentage reduction in 12 SC loci of APB rats in respect to homologous loci of controls: glucose utilization decreases at the loci largely differ from each other, showing that retinal axons carrying ON activity are dispersed over the SC in a mosaic pattern. Thus, the SC metabolic map should be representative of its retinotopic organization which, in turn, depends on the asymmetric distribution in the rat's retina of W-like as well as of other ganglion cell types.

Aminobutyrates↗

Plasma levels of atrial natriuretic factor (ANF) and urinary excretion of ANF, arginine vasopressin and catecholamines in children with congenital heart disease: effect of cardiac surgery.

We studied the changes in the plasma concentration of atrial natriuretic factor (ANF) and the urinary excretion of ANF, arginine vasopressin (AVP) and catecholamines in 22 children with congenital heart disease, divided into two groups. Group 1 included 11 children with congestive heart failure (CHF), treated with digitalis and diuretics. Group 2 included 11 children without CHF and without medical treatment. Each group was compared with a control group of 15 healthy, age-matched children. The plasma concentration of ANF was raised in both groups, but it was significantly higher in group 1 (235.5 +/- 82.9 pg/ml), compared to group 2 (48.4 +/- 29.4 pg/ml, P < 0.002). Urinary excretion of ANF was measurable in both groups and higher in group 1 (185.9 +/- 116.2 pg/kg per h) than in group 2 (48.5 +/- 30.7 pg/kg per h), but not significantly so. Urinary excretion of AVP and catecholamines was not different in children with congenital heart disease and healthy children. Twenty-four hours after surgery, plasma ANF diminished in group 1 (from 235.5 +/- 82.9 to 93.4 +/- 53.8 pg/ml, P < 0.003), but did not change in group 2. The urinary excretion of ANF was unchanged in both groups. In contrast, urinary excretion of AVP and catecholamines rose significantly in both groups. These data show that plasma ANF is increased in children with congenital heart disease, even in the absence of CHF. The measurement of urinary ANF is less reliable than a plasma assay. The postoperative increases in AVP and catecholamine urinary excretions could be responsible for the vasoconstriction and water retention typical of the postoperative period.

Adolescent↗

Heat stress limits infarct size in the isolated perfused rabbit heart.

OBJECTIVE: Heat stress, with the expression of heat stress proteins, has been shown to protect the rabbit heart in vitro against global ischaemia/reperfusion injury, though no benefit is apparent in an in vivo rabbit model of infarct size. The aim of this study was therefore to investigate this discrepancy and to discover whether heating itself has any effect which could negate the protection derived from myocardial stress protein synthesis. METHODS: (1) To ascertain whether heat stress could limit infarct size in the absence of blood, isolated buffer perfused hearts, with or without prior heat stress, were subjected to 45 min of regional ischaemia and 120 min reperfusion, and the resulting infarct size was expressed as a percentage of the risk area (I/R%). (2) The observations were repeated in an isolated blood perfused heart model in which a support rabbit (heat stressed or control) was used to perfuse the isolated heart. RESULTS: In the buffer perfused heart, prior heat stress reduced I/R from 70.8(SEM 4.4)%, n = 10, in controls to 51.5(5.7)%, n = 12 (p < 0.05). In hearts perfused by support rabbits, prior heat stress reduced I/R [from 34.7(3.7)%, n = 16, to 23.5(3.3)%, n = 15 (p < 0.05)] only when the perfusing rabbit was a control (not heat stressed). If the perfusing rabbit had been heated, I/R was greater in both heat stressed and control hearts [51.9(7.0)% and 44.9(3.3)%, p < 0.05 v control support rabbit]. CONCLUSIONS: Heat stress limits infarct size in this rabbit model. However it appears to have additional adverse effects, probably on the blood, which may override any benefit associated with myocardial stress protein synthesis.

Animals↗

Cardioprotection by nisoldipine: role of timing of administration.

Nisoldipine was administered at 10(-9) M, a dose lacking negative inotropism, to isolated and perfused rabbit hearts submitted to 60 min ischaemia (1 ml.min-1) followed by 30 min reperfusion. The drug was delivered either 30 min before ischaemia, at the onset and after 30 min of ischaemia and during reperfusion only. Cardiac protection was evaluated in terms of recovery of left ventricular pressure during reperfusion, release of creatine phosphokinase (CPK), mitochondrial function, tissue content of adenosine triphosphate (ATP) and creatine phosphate (CP), calcium homeostasis and the occurrence of oxidative stress, established measuring content and release of reduced and oxidized glutathione. The cytoprotective action of nisoldipine occurs in the absence of negative inotropism and is closely related to the time of administration. Optimal myocardial preservation is achieved when nisoldipine is given before or at the onset of ischaemia. Prophylactic administration of nisoldipine improved the recovery of the developed pressure from 15.9 +/- 1.0 (SE) mmHg to 47.8 +/- 1.9 mmHg, P < 0.01 and reduced the release of CPK from 830 +/- 29 to 229 +/- 27 mU.min-1 g-1 wet wt, P < 0.01. The accumulation of tissue and mitochondrial calcium was reduced from 58 +/- 11 and 49 +/- 9 to 14 +/- 6 and 10 +/- 4 mmol.kg-1 dry wt respectively, P < 0.01. This resulted in a significant (P < 0.01) preservation of all indices of mitochondrial function, allowing a higher recovery of ATP and CP after reperfusion (from 4.1 +/- 0.7 and 10.0 +/- 0.6 to 16.1 +/- 1.0 and 29.9 +/- 0.2 mumol.g-1 dry wt respectively, P < 0.001). Reperfusion-induced myocardial accumulation and release of oxidized glutathione were reduced from 0.493 +/- 0.07 nmol.mg-1 protein and 0.768 +/- 0.063 nmol.min-1 g-1 wet wt to 0.225 +/- 0.07 and 0.157 +/- 0.038 respectively, P < 0.01. Similar data were obtained when nisoldipine was given at the time of ischaemia, while administration 30 min after the onset of ischaemia showed only a trend towards protection. Nisoldipine lost its protective effect when given on reperfusion. A multifactorial analysis of the data suggest that the cardioprotective effect of nisoldipine is related to the maintenance of membrane integrity, possibly since nisoldipine is highly lipophilic.

Adenosine Triphosphate↗

Myocardial damage during ischaemia and reperfusion.

Reperfusion, without doubt, is the most effective way to treat the ischaemic myocardium. Late reperfusion may, however, cause further damage. We attempted to identify the nature and time-course of metabolic changes occurring during ischaemia followed by reperfusion either in isolated and perfused rabbit hearts or in coronary artery disease (CAD) patients undergoing intracoronary thrombolysis or aortocoronary bypass grafting. In isolated hearts, reperfusion after prolonged ischaemia causes exacerbation of cell damage, leading to a breakdown of the permeability barrier of ions as well as of larger molecules, such as creatine phosphokinase. As consequence, reperfusion results in a large increase in intracellular calcium, leading to mitochondrial calcium overload with subsequent damage to the mitochondrial structure and loss of the ability to produce adenosine triphosphate (ATP). The ultimate mediator of the membrane damage is not known. It has been suggested that myocardial production of oxygen free radicals above the neutralizing capacity of the myocytes is an important cause of reperfusion damage. There is evidence that prolonged ischaemia reduces the naturally occurring defence mechanisms of the heart against oxygen free radicals, particularly mitochondrial manganese superoxide dismutase, and the intracellular pool of reduced glutathione. Consequently, reperfusion results in severe oxidative damage, as evidenced by tissue accumulation and release of oxidized glutathione. An oxygen free radical-mediated impairment of mechanical function also occurs during reperfusion of the human heart. During surgical reperfusion of CAD patients, we observed a prolonged and sustained release of oxidized glutathione; the degree of oxidative stress can inversely correlated with recovery of mechanical and haemodynamic function.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗