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Biomedical subjects

M Chiavarelli

Publications and source records attributed to M Chiavarelli.

17 recordsLinked to original sources

Neonatal cardiac transplantation. Intermediate-term results and incidence of rejection. Loma Linda University Pediatric Heart Transplant Group.

Early age at cardiac transplantation may favor successful engrafting with minimal chronic immunosuppression. Fifty-two newborns underwent orthotopic heart transplantation; 47 (90%) survived the operation, and 44 (85%) were late survivors. Actuarial survival was 92% at 1 month, 86% at 1 year, and 84% at 5 years. Forty-four infants who survived 12 weeks and the corresponding 100 rejection episodes were analyzed. Mean follow-up was 2.2 years. The mean number of rejections per year of follow-up was 1.2. No episodes of rejection were identified in six patients. Seven patients had a late rejection episode more than 1 year after transplantation, and only one had a late rejection episode after 2 years. Neonatal cardiac transplantation is effective and durable therapy for uncorrectable heart disease. Intermediate-term results are excellent. Severe rejection is uncommon, and few episodes occur after 1 year of follow-up.

Azathioprine

Effects of cardioplegic solutions and their components on human saphenous vein contractility.

Cardioplegic solution administration into the vein graft is an established method to ensure cardioplegic distribution beyond coronary artery stenoses. The ultrastructural demonstration of severe endothelial damage after cardioplegic exposure suggests that intravenous cardioplegic administration can contribute to early and late graft thrombosis. The direct effect on human saphenous vein contractility of three cardioplegic solutions and their components was compared. A solution with 30 mmol/L K+ and 82 mmol/L Na+ produced intense venoconstriction. Lowering the potassium level to 10 mmol/L and increasing the sodium level to 92 mmol/L reduced its vasoconstricting action. A third solution with 16 mmol/L K+, 16 mmol/L Mg2+, and lidocaine caused venodilatation. Analysis of the single component effects showed that high potassium level, low sodium level, and the addition of lidocaine produced concentration-dependent vasoconstriction. High magnesium concentration resulted in vasodilatation. The present data suggest that cardioplegic solution composition may cause marked vasomotor effects on saphenous vein and thus influence its endothelial integrity. In the search for an "ideal solution" to the cardioplegic controversy, a venoconstrictor infusate should be avoided to improve patency rates of coronary artery bypass grafts.

Cardioplegic Solutions

Arterial correction of double-outlet left ventricule by pulmonary artery translocation.

Double-outlet left ventricle is conventionally repaired with an intraventricular tunnel or with an extracardiac conduit when pulmonary stenosis is present. We report a 4-month-old female infant whose surgical correction of double-outlet left ventricle and subpulmonic stenosis was accomplished by pulmonary arterial translocation to the blind right ventricular infundibulum. This approach provided excellent hemodynamic repair without the use of an extracardiac conduit.

Double Outlet Right Ventricle

[THe surgical treatment of aneurysmatic lesions of the ascending aorta: the immediate and long-term results in 40 patients].

From January 1981 to January 1991, 40 patients underwent operation for acute ascending aorta dissection (AAD, 14 patients), chronic ascending aorta dissection (CAD, 9 patients) or aortic ectasia (AE, 17 patients), with simultaneous aortic valve replacement in 30 cases (75%). Average age was 54 years with a 3:1 M/F ratio. In 20 cases (50%) a composite graft bearing a mechanical bileaflet valve was inserted with coronary artery reattachment (Bentall operation). In 16 cases (40%) the ascending aorta was replaced by a woven dacron graft alone (7 cases) or associated with aortic valve substitution (7 cases) or resuspension (2 cases). In 1 case (2.5%) a sutureless ring graft replacement of ascending aorta was carried out and 3 patients (7.5%) underwent aortoplasty with aortic valve substitution. Postoperative mortality rate was 21% for AAD group, 11% for CAD group and 6% for AE group. Non-fatal postoperative complications developed in 36% of AAD patients and in 78% and 29% of CAD and AE patients respectively. These complications occurred in 45% of patients who underwent Bentall operation, in 44% of those who underwent ascending aorta replacement associated with aortic substitution or resuspension, and in 14% of those operated of simple ascending aorta replacement. Average follow-up was 41.6 months (range 1.7-107.4 months). During this period 5 deaths occurred for a long-term mortality rate of 14.2%. Out of 30 survivors 21 (70%) underwent CT-study to evaluate the natural course of the false channel and the risk of redissection or late aneurysm formation.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Ultrastructural changes of coronary artery endothelium induced by cardioplegic solutions.

Coronary artery endothelial and myocardial ultrastructure was studied in guinea-pig heart-lung preparations (HLP) subjected to ischemic cardiac arrest induced by three hypothermic solutions. Two of the solutions used had high potassium chloride concentration ("Alabama" and "St. Thomas") while the third, instead, was a bicarbonate buffer (Kreb's solution). Five experimental groups were studied. In group 1 (control) the HLP were not subjected to cardiac arrest. Groups 2, 3, and 4 were subjected to a period of cardiac arrest of 30, 60, and 120 minutes respectively. In group 5, HLP were reperfused with blood for 30 minutes after 60 minutes of cardiac arrest. A thin ring of the left anterior descending coronary artery and myocardial fragments were obtained at the end of each experiment and were analyzed by means of transmission electron microscopy (TEM). Functional parameters were recorded in group 5. HLP perfused with Alabama solution showed a well-preserved endothelium and myocardium. HLP perfused with Krebs solution showed slight changes of the endothelial glycocalix only in group 4. Further, HLP perfused with Krebs solution showed extensive myocardial lesions (groups 3 and 4). These ischemic changes were not completely reversed after reperfusion (group 5). HLP perfused with St. Thomas solution showed only endothelial changes. These lesions were mainly characterized by: disappearance of the glycocalix and pynocytotic vesicles, endothelial cell bulging (group 2), and loss of the endothelial continuity (groups 3, 4, and 5). Hemodynamic parameters were significantly changed only in the Krebs-perfused HLP which showed a deterioration of the cardiac function related to the ischemic damage.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The influence of positive end-expiratory pressure on intrapericardial pressure and cardiac function after coronary artery bypass surgery.

The hemodynamic effects of positive end-expiratory pressure (PEEP) were studied in coronary artery bypass patients by recording intrapericardial and intracardiac pressures, measuring cardiac output by thermodilution, and determining left ventricular volumes by nuclear radiography. An elevation of PEEP to 5, 10, and 15 cm H2O led to a decrease in cardiac output (15% decrease at PEEP 15) as intrapericardial pressure increased and transmural left atrial pressure decreased. Modest volume loading (an increase in left atrial pressure of 3 mm Hg) greatly attenuated the deleterious effects of 15 cm H2O PEEP. There was an excellent correlation between pulmonary capillary wedge pressure and left atrial pressure at PEEP 0 and 5 (r = .85 and r = .83). This correlation was not nearly as reliable at PEEP 15 (r = .54). A predictable increase in intrapericardial pressure was observed as PEEP was applied in these patients. The magnitude of this increase can be estimated by multiplying the change in PEEP (in cm H2O) by 0.4 to estimate the change in intrapericardial pressure (in mm Hg). Using this estimation as a guide, modest volume loading can be used to maintain transmural filling pressures (and cardiac output) when PEEP is used after coronary artery bypass surgery.

Coronary Artery Bypass

Right ventricular outflow construction without cardiopulmonary bypass.

Establishment of right ventricular-pulmonary arterial continuity without the use of cardiopulmonary bypass was undertaken in 36 patients with different anomalies associated with pulmonary atresia or severe stenosis. Hospital mortality was 11% with no late death. Fourteen of the 27 individuals with pulmonary atresia, ventricular septal defect, and hypoplastic confluent pulmonary arteries had adequate angiographic follow-up, which demonstrated significant pulmonary artery enlargement. Five patients underwent total correction, two after unifocalization operations to establish lobar pulmonary arterial continuity. Symmetric growth of the left and right pulmonary artery was not achieved. However, the enlargement was adequate for potential final repair in all the patients with an unrestricted outflow tract.

Blood Vessel Prosthesis

Modifications of the Fontan operation applicable to patients with left atrioventricular valve atresia or single atrioventricular valve.

Two modifications of the Fontan operation are proposed for prevention of pulmonary venous obstruction in patients with left atrioventricular valve atresia or single atrioventricular valve. In the first technique, a bipedicled flap of right atrial wall is used to separate systemic and pulmonary venous drainages; an atriopulmonary connection is constructed by use of the right atrial appendage, and the defect in the right atrial wall is repaired with a pericardial patch. In the second technique, the superior vena cava is transected and the cardiac and cephalad ends are anastomosed separately to the pulmonary arterial confluence. A patch is positioned inside the right atrium to separate the systemic from the pulmonary venous drainage. Both techniques achieve unrestricted systemic and pulmonary venous channels. Severe atrial arrhythmias, present in the four patients operated on with the first procedure, were not seen in 12 patients who had repair with the second procedure.

Heart Atria

Calcium entry blockers and cardioplegia: interaction between nifedipine, potassium, and hypothermia.

The potential additive protective effect provided by nifedipine to the University of Alabama Hospitals cardioplegia solution (ACS) was assessed with the use of a guinea pig heart-lung model of cardiopulmonary bypass and ischemic arrest. The addition of nifedipine consistently enhanced the protective properties of ACS infused at 37 degrees C; functional recovery was similar to that observed with cold ACS. Despite the additional protection under normothermic conditions, nifedipine did not improve recovery after infusion at 4 degrees C. The abolition by hypothermia of the protective effects of nifedipine suggests a similarity in action between nifedipine and hypothermic protection. The interaction between ACS and nifedipine was studied on bovine coronary arteries in vitro. Nifedipine caused a marked reduction in the coronary vasoconstricting effect of ACS, both under normothermic and hypothermic conditions. The use of nifedipine in cardioplegia may provide additional protection when uneven distribution of the cardioplegic solution is expected and hypothermic protection is unreliable.

Animals

Interactions between pharmacological cardioplegia and hypothermia for intraoperative myocardial protection.

Cold cardioplegia is currently the method of choice for providing myocardial protection during open-heart surgical procedures. Two components of protection, perfusion cooling and pharmacological cardiac arrest, were investigated in the guinea pig heart-lung model. The effects of two cardioplegic solutions, the University of Alabama Hospital solution and the St. Thomas' Hospital solution, and a control perfusate were compared. The results confirmed the efficacy of hypothermia as a protective agent and the additional protection afforded by pharmacological cardioplegia. Infusion temperature critically influenced the cardioprotective action of the Alabama solution: Striking protection was afforded only under hypothermic conditions, whereas myocardial damage was exacerbated by the infusion at 37 degrees C. The St. Thomas' Hospital solution provided substantial protection independent of infusion temperature. Thus, the safety margin of the Alabama solution was narrower than that of the St. Thomas' solution. It is suggested that the difference between the two cardioplegic solutions partially depends on their coronary vasoactivity, since the administration of the Alabama solution at 37 degrees C increased coronary perfusion pressure. It would seem worthwhile to use a temperature-independent cardioplegic solution devoid of coronary vasoconstricting action.

Animals

[Effects of cardioplegic solutions on coronary and myocardial ultrastructure. Preliminary note].

Ultrastructural changes of the myocardium and the coronary arterial endothelium were studied following cold perfusion with two different cardioplegic solutions (CPS) (the University of Alabama and the St. Thomas Hospital solutions), and with Krebs' solution as a control (CS). Guinea pig heart-lung preparations (HLP) were subjected to cardiac arrest by perfusion under CPS or CS (4 ml/Kg/min. X 4 min.). The duration of the cardiac arrest was 60 minutes, and additional amounts of cold solution were perfused after the first 30 minutes. In a second experimental group, HLP were reperfused with blood following 60 minutes of cardioplegic arrest, and maintained under full activity for the next 30 minutes. At the end of the study, specimens of coronary artery and myocardium were obtained and observed by Scanning (SEM) and Trasmission (TEM) electron microscopy. All the specimens were compared with additional specimens obtained from control hearts not subjected to cardiac arrest. The myocardial ultrastructure of hearts arrested with CPS was well preserved, whereas severe myocardial damage, consisting in the absence of glycogen granules, intracellular edema and myofibrillar contraction, was following CS-induced cardiac arrest. In contrast, perfusion with the St. Thomas CPS produced severe vascular damage, characterized by interruption of the endothelial layer, and bulging of endothelial cells into the lumen; no vascular changes were observed following cardiac arrest with CS or Alabama CPS. We conclude that the damage to the coronary arterial endothelium is not related to cardiac arrest, or to perfusion with cristalloid solution, or to myocardial damage, but appears to depend on the composition of the CPS.

Animals

Prostacyclin can either increase or decrease heart rate depending on the basal state.

1 The influence of the basal heart rate on the change in rate induced by prostacyclin (PGI2) was investigated in beagles anaesthetized with chloralose. 2 In male dogs with a low basal heart rate (less than 100 beats/min) PGI2, in doses up to 0.5 microgram/kg intravenously, induced hypotension and tachycardia. 3 In contrast, PGI2-induced hypotension was accompanied by bradycardia when either the basal heart rate was increased (greater than 130 beats/min) with isoprenaline or nitroprusside, or the dose of PGI2 was increased. 4 Female beagles were less sensitive than males to the stimulation of a reflex bradycardia by PGI2. 5 The influence of prostaglandin E2 (PGE2) and bradykinin on heart rate was also found to depend upon the basal state in some dogs. 6 Bilateral vagotomy reversed the bradycardia provoked by PGI2, PGE2 and bradykinin. 7 Thus, PGI2-induced bradycardia in dependent on both the dose and the basal heart rate. Similarly the effects of PGE2 and bradykinin on heart rate also depend upon the basal state in some dogs. Moreover, there is a correlation between the ability of all three agonists to induce bradycardia, suggesting a common mechanism of action.

Animals

Effects of cardioplegic solutions on conductive coronary arteries.

The effects of two cardioplegic solutions (CPSs) on isolated, superfused, bovine coronary arteries were compared with those produced by changes in composition of standard Krebs medium. High potassium, low sodium content or the addition of albumin produced vasoconstriction; high magnesium, high glucose content or the addition of mannitol led to vasodilatation. In most cases hypothermia slightly reduced vasoconstriction and enhanced vasodilatation. The action of the two CPSs is the result of the interaction of these basic effects. The results suggest that the vasomotor reactions of coronary arteries to CPS may affect the delivery of the CPS to the myocardium and exert a critical influence on successful cardioplegia.

Animals