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Biomedical subjects

L H Edmunds

Publications and source records attributed to L H Edmunds.

At least 19 recordsLinked to original sources

Release of vasoactive substances during cardiopulmonary bypass.

Cardiopulmonary bypass is associated with bleeding and thrombotic complications, massive fluid shifts, and cellular and hormonal defense reactions that are collectively termed "the whole body inflammatory response." A host of vasoactive substances are produced, released or altered during cardiopulmonary bypass. These hormones, autacoids, and cytokines react with specific receptor proteins distributed throughout the body, and mediate the vascular smooth muscle and endothelial cell contractions that are responsible for much of the morbidity associated with open heart operations. This essay briefly reviews the actions, sources, and perturbations of the approximately 25 vasoactive substances known or believed to be altered by cardiopulmonary bypass, and provides an introductory reference list.

Cardiopulmonary Bypass

Left ventricular assistance without thoracotomy: mediastinal and transseptal approaches to the left heart.

Two methods to cannulate the left atrium for initiating mechanical left ventricular circulatory assistance using a centrifugal pump were investigated in 25 sheep. A modified Dennis transatrial septal approach produced flow rates of 88.6 +/- 14 mL.kg-1.min-1 through 21F catheters inserted during fluoroscopy through the jugular vein. In 8 animals the septal perforation was plugged after decannulation with a modified Rashkind umbrella plug. Fibroendothelial tissue covered the plug by 4 week. In 7 other animals, the septal defect was not plugged. The septal defect reached pinpoint size by 2 weeks and was completely closed by 4 weeks. In 10 sheep, the left atrium was cannulated from the neck through the mediastinum. Left ventricular assistance flow averaged 71.6 +/- 14 mL.kg-1.min-1. Mean blood loss during 1 hour of left ventricular assistance was 47 mL. In 8 animals, the atrial perforation was plugged with a mean blood loss of 253 +/- 194 mL. In 2 animals, the perforation was intentionally not plugged; mean blood loss was 700 mL. All animals survived. The modified Dennis transatrial method is recommended as a safe, expeditious, cost-effective method to implement left ventricular assistance without thoracotomy. The mediastinal approach, which is technically possible in humans, is more difficult but feasible. Left ventricular assistance has been proven to be the most effective way to rest the failing, ejecting left ventricle. Implementation without thoracotomy potentially expands applications of left ventricular assistance for temporary support of patients with severe manifestations of ischemic heart disease.

Animals

Late potentials in an ovine model of acute transmural myocardial infarction.

The development of slow conduction during the first hours of acute transmural myocardial infarction (ATMI) was studied by signal-averaged electrocardiograms (SAE) in 19 adult anesthetized sheep. SAEs were recorded before and after intravenous infusions of lidocaine and bretylium were begun and 10, 30, and 60 min after ATMI produced by ligation of the left anterior descending and second diagonal coronary arteries. Four sheep died promptly of ventricular tachyarrhythmias; two others developed sustained ventricular arrhythmias, which precluded additional data. Biphasic changes in QRS duration, root mean square voltage of the terminal 40 ms of the QRS complex, and duration of terminal low-amplitude (less than 30 microV) signal were observed. Peak changes in conduction occurred 30 min after infarction and regressed toward baseline thereafter. At 30 min, all animals developed late potentials, which were defined as signals that exceeded both after-drug QRS duration and duration of terminal low-amplitude signal less than 30 microV by more than two standard deviations. At 60 min, only 3 of 13 (23%) animals had late potentials. Conduction is slowest 30 min after ATMI in sheep but may not be related to development of ventricular arrhythmias. In five of six sheep (83%), ventricular arrhythmias occurred within 15 min of infarction before peak slowing was observed by SAE.

Animals

The stretched ventricle. Myocardial creep and contractile dysfunction after acute nonischemic ventricular distention.

The hypothesis that nonischemic distention of the arrested, flaccid ventricle causes myocardial creep and reduces ventricular contractile force was tested in 16 sheep. Left ventricular volume was calculated from ultrasonic dimension transducers spanning left ventricular major and minor axes and left ventricular wall thickness. Changes in left ventricular volume were plotted against left ventricular pressure, with and without temporary occlusion of both venae cavae before and after nonischemic distention of the continuously perfused, flaccid nonbeating left ventricle arrested with oxygenated, normothermic blood-potassium perfusate. During 12 minutes of cardiac arrest, an apical balloon progressively distended the left ventricle to a peak pressure of 40 mm Hg in 11 sheep using a protocol designed to prevent subendocardial ischemia or mechanical injury. Coronary sinus lactate measurements and myocardial distribution of microspheres confirmed the absence of ischemia in 16 animals. In five control sheep the balloon was inserted but not inflated. Left ventricular volume at zero pressure increased from 5.9 +/- 3.5 to 9.5 +/- 4.4 ml (p < 0.05) after balloon inflation and did not change in the control animals. After maximum distention of the balloon, static left ventricular volumes at identical pressures were significantly greater. After passive distention, the slope of the end-systolic pressure-volume relationship, a measure of contractility, decreased significantly (p < 0.05) from 7.1 +/- 2.8 to 3.5 +/- 1.8 mm Hg/ml and did not change in the control group. Passive distention ("stretching") of the nonischemic flaccid left ventricle thus causes myocardial creep and reduces ventricular contractility.

Animals

Protection of platelets during long-term extracorporeal membrane oxygenation in sheep with a single dose of a disintegrin.

BACKGROUND: Both short- and long-term extracorporeal membrane oxygenation (ECMO) causes platelet loss and dysfunction. Bitistatin is a reversible inhibitor of the platelet glycoprotein IIb/IIIa receptor. This study tests the hypothesis that inhibition of platelets by bitistatin during initial contact with the perfusion circuit preserves platelet number and function during long-term ECMO in sheep. METHODS AND RESULTS: Bitistatin, purified from crude snake venom, was tested for its effect on platelet count, responsiveness to ADP, release of platelet factor 4, and prevention of surface-adsorbed glycoprotein IIIa in vitro and during 24 hours of ECMO in nine splenectomized sheep. During simulated extracorporeal circulation, 0.5-1.0 microgram/ml bitistatin significantly prevented platelet adhesion, attenuated release of sheep platelet factor 4, and preserved platelet responsiveness to ADP. During ECMO at 1.8 l/min for 24 hours, a single dose of bitistatin (200 micrograms/kg) (n = 4) produced higher platelet counts (p = 0.0002) and suppressed release of platelet factor 4 (p = 0.035) for 16 hours compared with five control animals. This dose of bitistatin caused an immediate inhibition of platelet aggregation; however, between 4 and 24 hours of perfusion, platelets of bitistatin-treated animals were more responsive to ADP (p < 0.0001) compared with platelets in control animals. The amount of glycoprotein IIIa antigen extracted by Triton X-100 from the perfusion circuits was reduced in bitistatin-treated sheep. CONCLUSIONS: A single dose of bitistatin given before blood contact with the ECMO circuit briefly inhibits platelet adhesion and aggregation but thereafter preserves platelet numbers and function and suppresses alpha-granule release for 12-16 hours of ECMO.

Adenosine Diphosphate

Repair of left ventricular aneurysm. Changes in ventricular mechanics, hemodynamics, and oxygen consumption.

Anteroapical left ventricular aneurysms were produced in 23 sheep by coronary arterial ligation. Plication of the aneurysm does not change stroke volume or cardiac output and does not significantly change left ventricular oxygen consumption from the preoperative value of 5.1 +/- 2.6 ml/100 gm per minute. Plication, however, does increase left ventricular end-systolic elastance from 3.2 +/- 0.9 to 4.4 +/- 1.5 mm Hg/mm (p = 0.005). In nine of these sheep the midsagittal plane of the left ventricle was imaged by means of an array of sonomicrometry crystals before and after plication of the aneurysm. Regional wall stresses at end-systole and end-diastole and changes in diastolic function were calculated for anterior and posterior ventricular walls in the border zone adjacent to the aneurysm and in more basilar myocardium remote from the infarct. Plication significantly reduced end-systolic wall stresses and systolic stress integrals in the posterior border zone and remote myocardium, but it did not significantly change anterior wall systolic stresses or stress integrals. Plication also decreased diastolic stretching of border zone myocardium. Plication of anteroapical left ventricular aneurysm produced a shorter, more spherical ventricle and removed the dyskinetic segments but altered deformation (strain) in both circumferential and longitudinal directions. The changes in ventricular wall geometry and deformation provide an explanation for the increased ventricular end-systolic elastance and unchanged stroke volume observed after aneurysm plication.

Animals

Ovine platelet factor 4: purification, amino acid sequence, radioimmunoassay and comparison with platelet factor 4 of other species.

A simple method of purification of ovine platelet factor 4 (PF4) is described. Material released by freezing and thawing suspension of washed sheep platelets was fractionated by heparin-agarose chromatography and reverse phase HPLC. Purified ovine PF4 contained 85 amino acids (Mr 9130) and showed 78% homology with bovine PF4, 76% with porcine PF4, 71% homology with human PF4, and 61% with rat PF4. The heparin binding site of ovine PF4 localized in the C-terminal region of the molecule was identified as LYKKIIKRLL. The content of PF4 determined by radioimmunoassay was 22.6 (+/- 1.6 S.D.) micrograms per 10(9) platelets and 46.8 (+/- 19.6 S.D.) ng per ml platelet poor plasma collected in acid citrate dextrose in the presence of prostaglandin E1. PF4 was rapidly released during stimulation of ovine platelets by collagen.

Amino Acid Sequence

Recovery of oxygen utilization efficiency after global myocardial ischemia.

The time required for myocardial oxygen utilization to recover from 12 minutes of warm ischemia was studied in 15 sheep. Five control animals had 42 minutes of cardiopulmonary bypass at 37 degrees C with the heart beating and vented. In 10 experimental animals, the aorta was clamped for 12 minutes during bypass with the heart vented, and the animals were perfused 30 additional minutes after removal of the clamp. In both groups, measurements of left ventricular coronary arterial blood flow, oxygen consumption (LVO2), peak systolic pressure, circumferential systolic stress integral (CSI), and pressure volume area (PVA) were made 30 minutes after and hourly for 5 more hours after cardiopulmonary bypass ended. Reversible ischemia significantly increases the relationship between LVO2/PVA and LVO2/CSI 1 hour after the clamp is released, but the relationships return to prebypass values by 2 hours. Ischemia significantly decreases end-systolic elastance, which remains depressed thereafter. Cardiopulmonary bypass without myocardial ischemia significantly decreases total ventricular mechanical energy output and oxygen utilization efficiency of the working sheep heart but does not significantly alter end-systolic elastance or the LVO2/PVA and LVO2/CSI relationships. Twelve minutes of warm ischemia impairs oxygen utilization efficiency in the reperfused sheep heart for more than 60 minutes but less than 120 minutes.

Animals

Value of peak exercise oxygen consumption for optimal timing of cardiac transplantation in ambulatory patients with heart failure.

BACKGROUND: Optimal timing of cardiac transplantation in ambulatory patients with severe left ventricular dysfunction is often difficult. To determine whether measurement of peak oxygen consumption (VO2) during maximal exercise testing can be used to identify patients in whom transplantation can be safely deferred, we prospectively performed exercise testing on all ambulatory patients referred for transplant between October 1986 and December 1989. METHODS AND RESULTS: Patients were assigned into one of three groups on the basis of exercise data: Group 1 (n = 35) comprised patients accepted for transplant (VO2 less than or equal to 14 ml/kg/min); group 2 (n = 52) comprised patients considered too well for transplant (VO2 greater than 14 ml/kg/min); and group 3 (n = 27) comprised patients with low VO2 rejected for transplant due to noncardiac problems. All three groups were comparable in New York Heart Association functional class, ejection fraction, and cardiac index (p = NS). Pulmonary capillary wedge pressure was significantly lower in group 2 than in either group 1 or 3 (p less than 0.05), although there was wide overlap. Patients with preserved exercise capacity (group 2) had cumulative 1- and 2-year survival rates of 94% and 84%, which are equal to survival levels after transplantation. In contrast, patients rejected for transplant (group 3) had survival rates of only 47% at 1 year and 32% at 2 years, whereas patients awaiting transplantation (group 1) had a survival rate of 70% at 1 year (both p less than 0.005 versus patients with VO2 greater than 14 ml/kg/min). All deaths in group 2 were sudden. By univariate and multivariate analyses, peak VO2 was the best predictor of survival, with only pulmonary capillary wedge pressure providing additional prognostic information. CONCLUSIONS: These data suggest that cardiac transplantation can be safely deferred in ambulatory patients with severe left ventricular dysfunction and peak exercise VO2 of more than 14 ml/min/kg.

Evaluation Studies as Topic

Unexpected, sustained ventricular tachyarrhythmia after cardiac operations.

Unexpected, sustained ventricular tachyarrhythmia after cardiac operations is differentiated from sustained ventricular tachycardia and ventricular fibrillation from known antecedent causes, such as recent or perioperative myocardial infarction, low cardiac output, preoperative ventricular arrhythmia, sympathomimetic drugs, drug toxicity, and metabolic abnormalities. Sixteen of 2364 patients (0.68%) who underwent heart operations met strict exclusion criteria for unexpected sustained ventricular tachyarrhythmia that occurred 1 hour to 12 days after operation. Recurrent ventricular tachyarrhythmias occurred in 12 patients; three died (21%), despite resuscitation from the initial episode. All patients had significant preoperative left ventricular dysfunction and 14 had ejection fractions below 30%. Fifteen of the 16 patients had monomorphic ventricular tachycardia at the initial episode. Empirically prescribed therapy was not effective in suppressing ventricular tachyarrhythmias inducible by programmed stimulation during postevent electrophysiologic studies in 10 of the 13 survivors. Inducibility was eventually prevented by drugs in nine patients, three patients received automatic implantable cardiac defibrillators, and one patient underwent successful catheter ablation of ventricular tachycardia. No patient died of recurrent ventricular tachyarrhythmias during the follow-up of 8 to 55 (mean 29) months after hospital discharge.

Adult

Left ventricular mechanics of ejecting, postischemic hearts during left ventricular circulatory assistance.

We measured the effects of left ventricular circulatory assistance on ventricular mechanics of ejecting sheep hearts before and after global ischemia. Flows from left atrium to femoral artery ranged between 20 and 100 ml/kg/min during circulatory assistance. In preischemic, ejecting hearts increasing flow through the left ventricular assist device progressively decreased stroke volume, end-diastolic volume, and circumferential systolic wall stress, but only slightly decreased end-systolic volume. In postischemic, ejecting hearts left ventricular assistance progressively and substantially decreased both end-diastolic volume and end-systolic volume; at high flows, end-systolic volume returned to the normal range of preischemic hearts. High flows through the assist device also shifted end-systolic points of pressure-volume loops leftward and increased the stroke work/end-diastolic volume ratio in ejecting postischemic hearts; these observations raise the possibility that left ventricular circulatory assistance acutely improves myocardial contractility of postischemic hearts.

Animals

Relationship between total mechanical energy and oxygen consumption in the stunned myocardium.

We studied the relationship between left ventricular oxygen consumption (LVVO2) and total ventricular mechanical energy production as determined by calculation of the systolic pressure-volume area (P-VA) before and after 25 minutes of warm ischemia in 7 sheep. We compared the relationship between LVVO2 and P-VA with the relationships between LVVO2 and stroke work and between LVVO2 and the systolic stress integral. Using the methods presented, P-VA can be measured in vivo (n = 123) in both preischemic and postischemic hearts. Ischemia increases the slopes of the relationship between LVVO2 and P-VA and between stroke work and the systolic stress integral, and reduces the oxygen utilization efficiency of stroke work to less than 2%. Coefficients of determination for the relationship between LVVO2 and P-VA are, in general, higher than those between LVVO2 and either stroke work or the systolic stress integral. We conclude that systolic P-VA can be measured in vivo using recently developed methods and that it is applicable to postischemic "stunned" hearts. Because P-VA and LVVO2 can be converted into identical energy units, calculation of P-VA permits calculation of myocardial oxygen utilization efficiency.

Animals

Effect of circulatory assist devices on stunned myocardium.

We studied the effects of mechanical circulatory assist devices on left ventricular oxygen consumption, the integrals of systolic left ventricular wall stress (SSI), and end-systolic elastance (Ees) in 8 sheep after 25 minutes of global ischemia. Extracorporeal membrane oxygenation at 35 mL/kg/min, intraaortic balloon counterpulsation, and an intraaortic double-balloon pump were studied alone or in combination. Left ventricular oxygen consumption, SSI, and Ees were measured before and during mechanical circulatory assistance. Left ventricular oxygen consumption was calculated from transit-time measurements of left main coronary artery blood flow and fiberoptic measurements of coronary sinus blood oxygen saturation. Three pairs of sonomicrometry crystals placed across three orthogonal ventricular axes were used to calculate instantaneous ventricular volumes and pressure-volume loops from which the SSI data were derived. The Ees was measured using a new single-beat aortic occlusive method. Extracorporeal membrane oxygenation alone increased SSI and did not change Ees in postischemic poorly contracting hearts. Intraaortic balloon counterpulsation alone significantly reduced SSI and increased Ees. The combination of extracorporeal membrane oxygenation and either the intraaortic balloon pump or the intraaortic double-balloon pump reduced SSI, increased Ees, and reduced left ventricular oxygen consumption. In postischemic dilated, poorly contracting hearts, the combination of extracorporeal membrane oxygenation and intraaortic balloon counterpulsation has important advantages over extracorporeal membrane oxygenation alone.

Animals

Inhibition of platelet adhesion to surfaces of extracorporeal circuits by disintegrins. RGD-containing peptides from viper venoms.

Previous studies indicate that exposure of fibrinogen receptors associated with glycoprotein IIb/IIIa complex contributes to platelet loss during cardiopulmonary bypass. Recently, we isolated a number of RGD (Arg-Gly-Asp)-containing, low molecular weight, cysteine-rich peptides from viper venoms. These peptides, which we propose to call "disintegrins," block platelet-fibrinogen interaction and platelet aggregation. We compared the effect of RGDS (Arg-Gly-Asp-Ser) and four disintegrins (echistatin, flavoridin, albolabrin, and bitistatin) on platelet behavior in a membrane oxygenator. During simulated extracorporeal circulation for 2 hours, platelet count decreased to about 30% of initial values. Addition of echistatin (60-200 nM), albolabrin (60-200 nM), bitistatin (60 nM), and flavoridin (45 nM) significantly inhibited platelet loss in the circuit. RGDS (33 microM) did not show any significant inhibitory effect. ADP-induced platelet aggregation was inhibited in samples of platelet-rich plasma taken from the circuits containing disintegrins. However, echistatin appeared to be a more potent inhibitor of platelet aggregation, whereas albolabrin and flavoridin interfered more selectively with platelet loss from the circuit. Echistatin prevented the accumulation of glycoprotein IIIa on the surface of the circuit. Echistatin (60-200 nM), flavoridin (45 nM), bitistatin (60 nM), and albolabrin (200 nM) significantly inhibited the loss of beta-thromboglobulin from platelets into circulating plasma. Electron microscopy studies demonstrated shape change but not degranulation in platelets circulating in the presence of 200 nM echistatin. On the other hand, this peptide (up to 1,000 nM) did not prevent loss of alpha granules and beta-thromboglobulin from thrombin-stimulated platelets, although it prevented their aggregation. In conclusion, disintegrins protect platelets in the circuit by preventing their adhesion to surfaces and, therefore, preventing fragmentation of adhered platelets under the shear stress of flowing blood. This study indicates that disintegrins may be potential candidates for platelet protection during cardiopulmonary bypass.

Amino Acid Sequence

Myocardial oxygen utilization after reversible global ischemia.

We tested in 20 sheep the hypothesis that oxygen consumption increases after reversible, global myocardial ischemia. Left ventricular oxygen consumption before and after 25 minutes of warm (37 degrees C) global ischemia was linearly related to a function (integral) of left ventricular circumferential systolic wall stress, altered by changing afterload. The relation is expressed in the two regression equations: LVO2 (preischemic) = 1.06.SSI + 16.8 (n = 129; r = 0.79); LVO2 (postischemic) = 4.35.SSI + 5.6 (n = 89; r = 0.65). The fourfold increase in slope (4.35 versus 1.06) indicates (p = 0.0001) a massive increase of oxygen consumption in postischemic, globally "stunned" myocardium. The inferences are that globally stunned myocardium causes severe impairment of oxygen utilization efficiency, and increased vulnerability to further ischemia if coronary vessels are diseased.

Animals