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Potential role of neutrophil anti-adhesion therapy in myocardial stunning, myocardial infarction, and organ dysfunction after cardiopulmonary bypass.

When activated neutrophils are recruited and bind to endothelial tissues, they release leukotrienes, proteolytic enzymes, and free radicals. The latter has been implicated in myocardial stunning following periods of ischemia and reperfusion, as may occur following cardiopulmonary bypass (CPB). The neutrophil surface complex CD11/CD18 promotes the neutrophil-endothelial adhesion process. Monoclonal antibodies have been developed that can block neutrophil adhesion to the endothelium by preventing CD11/CD18 binding to adhesion molecules (ICAM-1 or ELAM-1) located on endothelial cells. We used monoclonal IgG antibody 60.3 to block neutrophil adherence and thereby potentially reduce myocardial stunning. Pretreatment of rabbits subjected to myocardial ischemia/reperfusion with either monoclonal 60.3 or saline resulted in only a small increase in the rate of recovery of preload recruitable stroke work index during reperfusion. More severe occlusion may have been needed to see significant results. We also evaluated the effects of anti-neutrophil therapy in animal models of CPB. Rhesus monkeys were subjected to deep hypothermia and CPB, followed by 24 hours of fluid resuscitation. Animals receiving monoclonal 60.3 (N = 3) showed less weight gain, less infused resuscitative fluid, and higher terminal hematocrit and PaO2 than controls (N = 3). Antineutrophil therapy may prevent multiorgan system failure in certain high risk patients.

Animals↗

Emergency use of extracorporeal membrane oxygenation in a patient with post-cardiotomy myocardial stunning.

Myocardial stunning refers to reversible postischemic myocardial dysfunction persisting after reperfusion. We report a patient who presented with biventricular failure, but exhibited neither definite electrocardiographic change nor elevation of serum cardiac enzyme levels in the post-cardiotomy period. The presentation was indicative of myocardial stunning. The patient's hemodynamics could not be maintained even with infusion of high doses of catecholamines. Extracorporeal membrane oxygenation successfully restored myocardial function. In conclusion, when the hemodynamic status of a patient with myocardial stunning cannot be maintained with inotropic agents, extracorporeal membrane oxygenation should be considered.

Adult↗

C-terminal truncation of cardiac troponin I causes divergent effects on ATPase and force: implications for the pathophysiology of myocardial stunning.

Myocardial stunning is a form of reversible myocardial ischemia/reperfusion injury associated with systolic and diastolic contractile dysfunction. In the isolated rat heart model, myocardial stunning is characterized by specific C-terminal proteolysis of the myofilament protein, troponin I (cTnI) that yields cTnI1-193. To determine the effect of this particular C-terminal truncation of cTnI, without the confounding factor of other stunning-induced protein modifications, a series of solution biochemical assays has been undertaken using the human homologue of mouse/rat cTnI1-193, cTnI1-192. Affinity chromatography and actin sedimentation experiments detected little, or no, difference between the binding of cTnI (cTnI1-209) and cTnI1-192 to actin-tropomyosin, troponin T, or troponin C. Both cTnI and cTnI1-192 inhibit the actin-tropomyosin-activated ATPase activity of myosin subfragment 1 (S1), and this inhibition is released by troponin C in the presence of Ca2+. However, cTnI1-192, when reconstituted as part of the troponin complex (cTn1-192), caused a 54+/-11% increase in the maximum Ca2+-activated actin-tropomyosin-S1 ATPase activity, compared with troponin reconstituted with cTnI (cTn). Furthermore, cTn1-192 increased Ca2+ sensitivity of both the actin-tropomyosin-activated S1 ATPase activity and the Ca2+-dependent sliding velocity of reconstituted thin filaments, in an in vitro motility assay, compared with cTn. In an in vitro force assay, the actin-tropomyosin filaments bearing cTn1-192 developed only 76+/-4% (P<0.001) of the force obtained with filaments composed of reconstituted cTn. We suggest that cTnI proteolysis may contribute to the pathophysiology of myocardial stunning by altering the Ca2+-sensing and chemomechanical properties of the myofilaments.

Actins↗

Myocardial stunning.

Myocardial stunning is a mechanical dysfunction that persists after reperfusion of previously ischemic tissue in the absence of irreversible damage including myocardial necrosis. Myocardial stunning is an unfavorable phenomenon that is manifest during reperfusion and is caused mostly by events associated with reperfusion. This dysfunction and the accompanying contractile abnormalities delay the benefits of reperfusion therapy.

Animals↗

Effect of pre-reperfusion residual flow on recovery from myocardial stunning: a myocardial contrast echocardiography study.

BACKGROUND: Myocardial contrast echocardiography (MCE) may be used to assess coronary microvasculature in patients with myocardial infarction. Myocardial contrast echocardiography-no reflow suggests poor functional outcome; however, MCE with reflow does not necessarily indicate good myocardial salvage or sufficient functional recovery from myocardial stunning. In this study, MCE was performed to assess the effect of pre-reperfusion residual flow (PRF) on the recovery from myocardial stunning. METHODS AND RESULTS: The size of the occluded bed, an area supplied with an infarct-related artery, was determined by comparing pre- and post-reperfusion MCE images in 40 patients with first acute myocardial infarction. Myocardial contrast echocardiography-no reflow was observed after reperfusion in 8 patients. Significant PRF was not recognizable in any of the 8 patients. The other patients with MCE reflow were subdivided into 2 groups on the basis of the ratio of the area perfused by PRF to that of the occluded bed: 14 patients with the ratio of more than 10% (PRF[+]), and the other 18 patients (PRF[-]). The wall motion score (0, normal to 4, dyskinetic) was obtained in the convalescent stage. RESULTS: (1) Wall motion of the infarct area after day 3 was better in patients with PRF than in patients without PRF. (2) Left ventricular functional improvement in the long term was remarkable in patients with good reflow and PRF(+), modest in patients with good reflow but PRF(-), and not detectable in patients with MCE-no reflow. No significant correlation was found between angiographic collateral grades and PRF. CONCLUSIONS: The presence of residual flow within the infarct area before reperfusion results in not only good myocardial salvage but also rapid functional recovery from myocardial stunning.

Coronary Circulation↗

Do deficiencies of endothelial derived relaxing factor contribute to myocardial stunning?

Myocardial stunning is a phenomenon in which ventricular function is depressed by prior ischemia and remains suboptimal when blood flow is resumed. It is also characterized by coronary vascular endothelial dysfunction that is related to the duration of ischemia and can result in protein leakage, myocardial hemorrhage, or increased coronary vascular resistance. It is thought that local vascular tone is regulated by endothelium derived relaxing factor (EDRF), a compound commonly believed to be identical to nitric oxide (NO). EDRF increases the effects of other vasodilators through the formation of cyclic guanosine monophosphate (cGMP) by guanylate cyclase. Patients with various cardiovascular disorders have been found to have dysfunction in the EDRF system, and EDRF paradoxically produces vasoconstriction in atherosclerotic arteries. Similarly, EDRF stimulation of vasodilation due to acetylcholine, calcium ionophores, or platelets appears to be reduced in coronary arteries that have been damaged by ischemia and reperfusion. By increasing EDRF production or inhibiting its breakdown, EDRF precursors such as L-arginine, the superoxide radical scavenger superoxide dismutase, nitroglycerin, and nitroprusside all cause vasodilation by increasing NO levels in the setting of myocardial ischemia. These therapies may also improve local "microvascular" function, thereby improving ventricular function.

Animals↗

[Low-dose dobutamine echocardiographic assessment of reversible contractile dysfunction (myocardial stunning) after myocardial infarction].

Low dose (5 to 10 micrograms/min) dobutamine echocardiography was used to predict the presence of reversible contractile dysfunction (myocardial stunning) after myocardial infarction successfully revascularised in the acute phase of primary angioplasty. The investigation was undertaken in 40 patients, 4 +/- 1 days after inaugural myocardial infarction. The left ventricle was divided into 16 segments. Viable myocardium was diagnosed when the initial regional wall motion score decreased by at least 2. Resting echocardiography was performed at 2 months to evaluate the effective recovery of regional wall motion (myocardial viability). The presence of contractile reserve was documented by dobutamine echocardiography in 18 patients (45%). The sensitivity, specificity and positive and negative predictive values of dobutamine echocardiography for the diagnosis of myocardial viability were 82, 83, 78 and 86% respectively. The negative predictive value was high in all dysnergic segments (86%). The positive predictive value of the investigation was however higher in hypokinetic than in akinetic segments (73 vs 21%; p < 0.05). The recovery of regional wall motion during follow-up was statistically related to higher initial left ventricular ejection fraction (p < 0.04), the presence of angiographically documented collateral circulation before revascularisation (p = 0.007), the contractile response to dobutamine (p = 0.0001) and was observed more frequently in hypokinetic than in akinetic segments (p < 0.05). These results show that low-dose dobutamine echocardiography is a sensitive and specific investigation for predicting irreversible myocardial damage after successful primary angioplasty in acute myocardial infarction. However, even in the absence of residual coronary stenosis, the presence of viable myocardium is only identified specifically in hypokinetic segments.

Aged↗

A potent opiate agonist protects against myocardial stunning during myocardial ischemia and reperfusion in rats.

OBJECTIVE: Opioids have a cardioprotective effect during ischemia. Previously, we showed in an ex-vivo model of myocardial ischemia and reperfusion that 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2, a highly potent and long-acting opioid peptide analgesic with fewer side effects than morphine, provides improved cardioprotection compared with morphine. The purpose of this study was to confirm, in an in-vivo model, the cardioprotective effect of 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2. METHODS: Rats (n=6/group) were randomized to 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2 therapy (intravenous 10 nmol bolus 30 min before ligation and 10 nmol/h continuous infusion), morphine (100 nmol bolus and 100 nmol/h infusion), or placebo, and underwent left anterior descending (LAD) ligation for 10 min followed by reperfusion for 30 min. Continuous transesophageal echocardiogram and electrocardiogram were monitored. Fractional shortening and systolic wall thickening of the ischemic area were calculated. Time to recovery of left ventricular function was the duration of time needed for fractional shortening to recover to 90% of baseline following reperfusion. Duration of reperfusion arrhythmia was the time to the cessation of salvo (at least three consecutive premature ventricular contractions (PVCs)) following reperfusion. RESULTS: Time to recovery of left ventricular function was significantly shorter in the 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2 (4.4+/-2.2 min) and morphine groups (6.0+/-2.5 min) than in the controls (10.5+/-2.2 min; p<0.01). The 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2 group showed significantly higher fractional shortening and systolic wall thickening of the ischemic area than the control group. Duration of reperfusion arrhythmia was also significantly shorter in the 2',6'-dimethyltyrosine-D-Arg-Phe-Lys-NH2 (2.8+/-1.7 min) and morphine groups (5.8+/-3.9 min) than in the controls (11.8+/-2.0 min; p<0.05). CONCLUSION: 2',6'-Dimethyltyrosine-D-Arg-Phe-Lys-NH2 provides a cardioprotective effect against myocardial ischemia and reperfusion in vivo.

Animals↗

[Heart failure: the electrophysiological connection. Myocardial stunning and heart failure: mechanisms in common?].

The delayed recovery of function after brief episodes of ischemia is known as stunning. Myocardial stunning and heart failure would, at first glance, appear to have little in common other than the obvious contractile dysfunction in both settings. Here I describe studies which shed new light on the underlying mechanisms of these two forms of contractile dysfunction, revealing unexpected fundamental similarities.

Electrophysiology↗

Can myocardial stunning contribute to myocardial infarction during coronary artery bypass surgery?

Myocardial stunning commonly occurs after cardiopulmonary bypass (CPB). Myocardial stunning can be cardioprotective under some conditions, but in other situations may actually contribute to myocardial infarction (MI). Vascular endothelial stunning may be one of the mechanisms by which myocardial stunning can cause MI. It has been found that 15 minutes of reversible ischemia is enough to cause elevations in vascular resistance and impairment of vasodilator responsiveness. However, no correlation between contractile dysfunction and microvascular stunning has been observed. Transduction defects (increased oxygen extraction and consumption despite normal regional oxygen blood flow and delivery) may be another mechanism by which stunning predisposes to MI, indicating uncoupling of substrate utilization from energy production. In addition, abnormalities in wall motion, oxygen free radical toxicity, hypotension, use of inotropic agents (leading to increased oxygen consumption, high heart rates, and arrhythmias) increase the risk of cellular necrosis. Following CPB, flow limitations due to diffuse atherosclerosis in some areas may result in poor contractility, and newly grafted areas have a high probability of becoming ischemic and stunned. These areas are likely to contribute to MI.

Cardiomyopathies↗

Prolonged wall motion abnormalities after chest pain at rest in patients with unstable angina: a possible manifestation of myocardial stunning.

Although myocardial "stunning" would be expected to occur in unstable angina, there is no published report in which the recovery of regional left ventricular function was serially monitored in this syndrome. To determine whether the time course of the regional wall motion abnormalities associated with unstable angina is consistent with myocardial stunning, 20 consecutive patients with unstable angina were studied prospectively. Regional left ventricular wall motion was assessed by two-dimensional echocardiography during or immediately after angina at rest and at serial times thereafter. Six of the 20 patients fulfilled the inclusion criteria. The recovery of segmental wall motion after chest pain was consistently found to be delayed in all six patients, but a considerable variability was observed. In at least two subjects, the improvement was rapid and the wall motion abnormalities disappeared almost completely within 2 hours after the chest pain. Both of these patients had the shortest duration of angina (approximately 10 minutes). In contrast, in three other patients with longer duration of chest pain, the improvement was slower and significant wall motion abnormalities were still present at 24 hours after the chest pain. In five control patients who had angiographically-documented coronary artery disease but no recent episode of angina, there was no significant change in segmental wall motion during a period of observation equivalent to that used in the unstable angina group. This study evaluated for the first time the time course of wall motion abnormalities in patients with unstable angina. The results demonstrate that angina at rest is followed by a prolonged depression of contractile function, which may persist for up to 24 hours or even longer. Because none of the patients had evidence of acute myocardial infarction or recurrent ischemia, our observations suggest myocardial stunning as the pathophysiologic substrate for the slow recovery of wall motion. The present results are consistent with the concept that myocardial stunning does occur in unstable angina and indeed may be a component of the natural history of this disorder; however, further investigations using simultaneous measurements of function and flow will be necessary to unequivocally distinguish myocardial stunning from hibernation and silent ischemia.

Angina, Unstable↗

A clinical feature of myocardial stunning associated with acute myocardial infarction.

We report a case of myocardial stunning after acute myocardial infarction. In the hyperacute phase of myocardial infarction, the patient's coronary arteries showed normal features on coronary angiography during extensive ST-segment elevation observed on a standard 12-lead electrocardiogram and extensive akinesis observed on a left ventriculogram. Thallium-201 emission computed tomography revealed extensive perfusion abnormality. In the chronic phase, the perfusion abnormality was markedly improved. However, the electrocardiogram demonstrated poor R wave progression, and the left ventriculography revealed slight hypokinesis in the anterolateral wall. The acetylcholine provocation test disclosed coronary vasospasm of the left anterior descending coronary artery. About six months thereafter, left ventricular wall motion became completely normal and no poor R wave progression was observed on the electrocardiogram. The findings in this case indicate that myocardial stunning resulted from brief but sever ischemia due to vasospasm which led to cardiogenic shock, and that the recovery of findings for thallium-201 perfusion might be followed by those of electrocardiography and left ventriculography in the stunned myocardium.

Acetylcholine↗

Randomized, double-blind crossover study to investigate the effects of amlodipine and isosorbide mononitrate on the time course and severity of exercise-induced myocardial stunning.

BACKGROUND: Myocardial stunning may cause prolonged left ventricular dysfunction after exercise-induced ischemia that can be attenuated by calcium antagonists in animal models. To assess their effects in humans, we performed a randomized, double-blind crossover study comparing the calcium antagonist amlodipine (10 mg once daily) versus isosorbide mononitrate (ISMN, 50 mg once daily) on postexercise stunning. METHODS AND RESULTS: Twenty-four men with chronic stable angina and normal left ventricular function underwent serial quantitative exercise stress echocardiography after 3 weeks on each treatment to assess the degree of postexercise stunning with simultaneous sestamibi single-photon emission computed tomography perfusion scans at peak stress to quantify the ischemic burden. Exercise time (P=1), maximum ST depression (P=0.48), and sestamibi single-photon emission computed tomography scores (P=0.17) were unchanged between treatments. Stunning occurred more often with ISMN than amlodipine (82% versus 48%). The global and segmental stress echocardiography parameters of stunning were attenuated in patients while taking amlodipine compared with ISMN. Shortening fractions and ejection fractions were less impaired 30 minutes after exercise in patients receiving amlodipine (3.5+/-1.4% versus 2.5+/-1.4%, P=0.014, and 59.7+/-5.4% versus 54.5+/-8%, P<0.001); similarly, the isovolumic relaxation period was less prolonged with amlodipine (93+/-15.5 versus 106.3+/-14.9 ms, P=0.018). CONCLUSIONS: Despite comparable levels of ischemia, amlodipine attenuated stunning when compared with ISMN. This beneficial effect may relate to a prevention of the calcium overload implicated in the pathogenesis of stunning.

Aged↗

Enhanced interstitial fluid adenosine attenuates myocardial stunning.

Reversible myocardial dysfunction associated with transient ischemia has been termed the stunned myocardium. Because exogenous adenosine has been shown to protect the ischemic myocardium, we hypothesized that augmentation of endogenous adenosine levels would attenuate myocardial stunning. To induce stunning, anesthetized dogs were subjected to 15 minutes of ischemia (left anterior descending artery occlusion) followed by 60 minutes of reperfusion. Erythro-9-(2-hydroxy-3-nonyl) adenine (EHNA; 5 mg/kg/hr), an adenosine deaminase inhibitor, was used to augment adenosine levels. The effect of EHNA on interstitial fluid (ISF) adenosine levels, coronary blood flow, and regional systolic wall thickening was compared with that of an untreated group (n = 8). EHNA increased preischemia ISF adenosine levels threefold and was associated with a corresponding increase in coronary blood flow. EHNA administration did not alter preischemia systolic wall thickening. Although ISF adenosine increased fourfold during ischemia in the untreated group, ISF adenosine increased nearly sixtyfold above preischemia values in the EHNA-treated group and remained elevated throughout reperfusion. Postischemic regional function was enhanced significantly in the group treated with EHNA. These data show that adenosine deaminase inhibition increased ISF adenosine levels and attenuated myocardial stunning. Metabolic manipulation of myocardial ISF nucleoside levels may be beneficial in limiting postischemic myocardial dysfunction.

Adenine↗

Diagnosis of myocardial stunning: a new use for myocardial contrast and dobutamine echocardiography.

Myocardial stunning is a recently described phenomenon in which myocardium subjected to short-lasted episodes of ischemia remains hypokinetic or even akinetic (stunned) after adequate flow is reestablished. Therefore, diagnostic technique that can assess regional perfusion could be of value in establishing this diagnosis. This postischemic abnormality in contractility can last minutes, hours, or days, but eventually recovers. Faster recovery of function occurs under inotropic stimulation, and this knowledge has been applied clinically to diagnose this entity, ie, with the use of dobutamine echocardiography. This article is a review of current literature on the use of dobutamine echocardiography and of myocardial contrast echocardiography, two techniques found to be useful in the diagnosis of myocardial stunning.

Air↗

Myocardial stunning in man.

Myocardial stunning refers to the contractile dysfunction that occurs following an episode of acute ischaemia, despite the return of normal blood flow. The phenomenon was initially identified in animal models, where it has been very well characterised, and there was initial doubt about whether a similar syndrome occurred in humans, and if it did, whether it was of any clinical relevance. This article outlines the conditions that must be met to diagnose myocardial stunning and why it has been difficult to confirm its presence in humans. The clinical scenarios where it has now been clearly identified and those others where it may also occur and be of clinical importance are also reviewed.

Animals↗

Mechanical unloading properties of axial flow pumps and their effect on myocardial stunning.

Postischemic myocardial dysfunction affects morbidity and mortality in patients with coronary artery disease. It is known that mechanical unloading of the left heart ventricle can positively influence postischemic myocardial dysfunction. In this respect we tested two miniaturised axial flow pumps, i.e. the 14-F and the 21-F Hemopump. An experimental study was carried out on 30 open chest sheep where regional myocardial wall motion was followed using sonomicrometry in a preparation of transient coronary artery occlusion. Only the larger 21-F Hemopump showed hemodynamically significant unloading of the left ventricle. Furthermore, as far as stunning is concerned, systolic wall thickening recovered better when this type of pump was used during reperfusion. Also postejection thickening, which is an indication of diastolic postischemic dysfunction, is reduced significantly in the postischemic area (ANOVA, p < 0.05). Thus, the 21F Hemopump, but not the 14F Hemopump, provides adequate mechanical unloading in order to beneficially influence myocardial stunning.

Analysis of Variance↗