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Biomedical subjects

R Roberts

Publications and source records attributed to R Roberts.

At least 397 records · Page 22Linked to original sources

Activation of the complement system by recombinant tissue plasminogen activator.

Recent trials have shown that recombinant tissue plasminogen activator (rt-PA) is an effective thrombolytic agent in patients with acute myocardial infarction. Because rt-PA converts plasminogen to plasmin, which is known to activate complement in vitro, we tested the hypothesis that rt-PA can induce in vivo activation of complement. Studies were performed in 12 patients with acute myocardial infarction. Six control patients had patent coronary arteries and did not receive rt-PA; these patients had normal values of the components of the complement system C4a (409 +/- 111 ng/ml) and C5a (8.8 +/- 1.8 ng/ml) with a slight elevation of C3a (204 +/- 6.6 ng/ml) in samples collected before coronary arteriography (253 +/- 25 minutes after onset of pain). After coronary arteriography, there was a slight decrease in the values of C4a (224 +/- 37 ng/ml), C5a (7.3 +/- 1.3 ng/ml) and C3a (164 +/- 35 ng/ml). The remaining six patients had complete coronary occlusion and received rt-PA (80 to 150 mg intravenously). In this treated group, before coronary arteriography the values of C4a (406 +/- 51.6 ng/ml) and C5a (8.1 +/- 1.9 ng/ml) were normal, and those of C3a were slightly elevated (250 +/- 76 ng/ml). All complement values obtained before rt-PA were similar to those in the untreated group. However, after administration of rt-PA (but before any angiographically detectable reperfusion), there was a striking increase in C4a (2,265 +/- 480 ng/ml; p less than 0.01), C3a (600 +/- 89 ng/ml; p less than 0.05) and C5a (30.0 +/- 4.5 ng/ml; p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Prognostic implications of an early peak in plasma MB creatine kinase in patients with acute myocardial infarction.

To determine the prognostic implications of an early peak in plasma MB creatine kinase (MB CK) in patients with acute myocardial infarction who were not treated with an acute intervention, 342 patients with myocardial infarction confirmed by MB CK were retrospectively studied. The patients were classified into those with an early peak MB CK (less than or equal to 15 hours after the onset of symptoms, n = 84) and those with a late peak MB CK (greater than 15 hours after the onset of symptoms, n = 258). Patients with an early peak MB CK were slightly older, were more frequently female and had a higher incidence of prior myocardial infarction, congestive heart failure and arrhythmias compared with patients with a late peak MB CK. Patients with an early peak MB CK more frequently presented with ST segment depression (23 versus 11%, p less than 0.01), with anterior location of ischemia or infarction (71 versus 52%, p less than 0.01) and with a lower mean left ventricular ejection fraction (41.4 versus 47.4%, p less than 0.01). Despite more extensive left ventricular dysfunction at initial presentation, patients with an early peak MB CK had a smaller mean MB CK infarct size index (12.6 versus 18.9 g-Eq/m2, p less than 0.01), with no difference in the incidence of in-hospital complications, including death. The early left ventricular dysfunction improved in the patients with an early peak MB CK, evidenced by a 4.5% increase in ejection fraction from admission to 10 days after infarction, whereas the ejection fraction did not improve in patients with a late peak MB CK. However, the patients with an early peaking MB CK had myocardium in jeopardy as reflected by a higher incidence of ST segment depression and a decrement in the global left ventricular ejection fraction with exercise. The 4 year life table estimate for the rate of recurrent myocardial infarction after hospital discharge was higher in patients with an early peak MB CK (33 versus 22%, p less than 0.05), with an even more striking difference in the 4 year estimate for the rate of fatal recurrent infarction (20 versus 8%, p less than 0.001). The 4 year mortality estimate was markedly higher in hospital survivors with an early peak MB CK than in those with a late peak (47 versus 19%, p less than 0.0001) and, even after adjustment for differences in baseline characteristics, the residual excess mortality in those with an early peak was still significant (p less than 0.02).(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

End-systolic radius to thickness ratio: an echocardiographic index of regional performance during reversible myocardial ischemia in the conscious dog.

Regional myocardial dysfunction induced by ischemia is associated with less thickening and a larger ventricular radius at end-systole. Thus, end-systolic radius to thickness ratio measured by echocardiography may provide an accurate index of regional left ventricular function that is totally independent of cardiac motion. To test this hypothesis, a total of 14 transient (less than or equal to 10 minutes) coronary artery occlusions (8 left anterior descending, 6 left circumflex) followed by up to 24 hours of reperfusion were performed in six chronically instrumented conscious dogs providing multiple grades of regional ventricular dysfunction. Regional myocardial thickening fraction was determined with epicardial pulsed Doppler probes and served as an independent standard for comparison with simultaneous echocardiographic measurements. End-systolic radius to thickness ratio and radial shortening fraction were derived from the two-dimensional echocardiographic short-axis view along 12 equidistant radii. In the ischemic zone, percent thickening fraction averaged 22 +/- 5% during baseline, decreased to -4 +/- 4% during occlusion with gradual return to baseline after reperfusion. End-systolic radius to thickness ratio averaged 1.39 +/- 0.25 before coronary occlusion and increased to 2.97 +/- 0.48 during occlusion with a gradual return to baseline values. A significant correlation was found between Doppler-determined thickening fraction measurements and echocardiographic end-systolic radius to thickness ratio as well as radial shortening fraction for absolute values (r = -0.83 and 0.75, respectively; n = 65) and percent change from baseline (r = -0.86 and 0.78, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

An activated c-Ha-ras allele blocks the induction of muscle-specific genes whose expression is contingent on mitogen withdrawal.

During myogenesis, induction of muscle-specific genes is subject to negative control by polypeptide mitogens and type-beta transforming growth factor. Since transduction of growth factor signals may require proteins encoded by cellular ras oncogenes, we have tested whether a mutationally altered Harvey ras expression vector, by itself, can prevent establishment of a differentiated phenotype in BC3H1 mouse myoblasts. Transfection with the valine-12 allele of the human Harvey ras gene, under the control of its own promoter, was sufficient to prevent the induction of both muscle creatine kinase activity and the nicotinic acetylcholine receptor following mitogen withdrawal but did not inhibit withdrawal from the cell cycle. The loss of creatine kinase activity resulted from a corresponding block to induction of muscle creatine kinase mRNA. Similarly, mitogen withdrawal elicited little or no alpha-actin mRNA in ras-transfected cells. These results suggest that an activated ras allele can inhibit myogenesis through a mechanism independent of cell proliferation and can preclude activation of genes whose up-regulation normally accompanies mitogen withdrawal.

Actins↗

Lipoxygenase inhibitor nafazatrom fails to attenuate postischaemic ventricular dysfunction.

The role of lipoxygenase activation in the genesis of postischaemic myocardial dysfunction was investigated in open chest dogs undergoing a 15 min occlusion of the left anterior descending artery followed by 4 h of reperfusion. Treated animals (n = 9) received nafazatrom, a potent lipoxygenase inhibitor, 10 mg.kg-1 orally 4 h before occlusion followed by intravenous boluses of 1.5 mg.kg-1 and 0.5 mg.kg-1 5 min before occlusion and 1 min before reperfusion respectively. Control animals (n = 10) received saline. No discernible haemodynamic effects were produced by the drug. Collateral flow to the ischaemic zone (radioactive microspheres) was 0.14(0.02) ml.min-1.g-1 in the control group and 0.16(0.05) ml.min-1.g-1 in the treated group. The size of the occluded bed as determined by postmortem perfusion was 25.5(0.8)% of the left ventricle in the control and 24.3(1.3)% in the treated group. Histological examination showed a decrease in neutrophil infiltration of the non-ischaemic myocardium and, to a lesser extent, of the reperfused myocardium in nafazatrom treated animals, suggesting lipoxygenase inhibition. Systolic wall thickening (an index of regional function) was assessed using an epicardial pulsed Doppler probe. The two groups exhibited comparable systolic thickening under baseline conditions. Though treated animals showed less dyskinesis during coronary occlusion (p less than 0.05), recovery of function was not enhanced over controls and in both groups the reperfused myocardium was still dyskinetic at 4 h. Thus nafazatrom failed to improve postischaemic ventricular dysfunction, suggesting that leukotrienes do not contribute importantly to this phenomenon.

Animals↗

Autonomous expression of c-myc in BC3H1 cells partially inhibits but does not prevent myogenic differentiation.

Myogenic differentiation is obligatorily coupled to withdrawal of myoblasts from the cell cycle and is inhibited by specific polypeptide growth factors. To investigate the potential involvement of c-myc in the control of myogenesis, the BC3H1 muscle cell line was stably transfected with a simian virus 40 promoter:c-myc chimeric gene. In quiescent cells in 0.5% serum, the exogenous c-myc gene was expressed at a level more than threefold greater than the level of endogenous c-myc in undifferentiated, proliferating cells of the parental line in 20% serum. The transfected myc gene partially inhibited the expression of both muscle creatine kinase and the nicotinic acetylcholine receptor, but was not sufficient to prevent the induction of these muscle differentiation products upon mitogen withdrawal.

Animals↗

Evidence for a pathogenetic role of xanthine oxidase in the "stunned" myocardium.

Recent evidence suggests that postischemic myocardial dysfunction (or myocardial "stunning") may be mediated by oxygen free radicals, but the mechanism for their production remains unknown. To explore the role of xanthine oxidase as a potential source of free radicals, open-chest dogs undergoing a 15-min occlusion of the left anterior descending coronary artery (LAD) followed by 4 h of reperfusion (REP) received intravenously either allopurinol (50 mg/kg 48 h, 20 h, and 30 min before occlusion, 10 mg/kg 1 min before REP, and 6.25 mg X kg-1 X h-1 throughout REP, n = 13) or saline (n = 14). The two groups were similar with respect to occluded bed size (postmortem perfusion) and collateral flow (radioactive microspheres). In controls, the transcardiac difference in plasma uric acid (great cardiac vein - arterial concentration) increased 199 +/- 70% (means +/- SE) during ischemia (P less than 0.02) and remained elevated for 5 min after REP; no increase was observed in treated dogs. Regional myocardial function was assessed by measuring systolic wall thickening with an epicardial Doppler probe. The two groups exhibited comparable systolic thickening under base-line conditions and similar degrees of dyskinesis during ischemia. Following REP, however, recovery of contractile function (expressed as percent of preocclusion values) was considerably greater in allopurinol-treated as compared with control dogs: 57 +/- 14 vs. -22 +/- 16 (P less than 0.01) at 1 h, 70 +/- 13 vs. -15 +/- 15 (P less than 0.001) at 2 h, 65 +/- 14 vs. -28 +/- 13 (P less than 0.001) at 3 h, and 68 +/- 13 vs. -17 +/- 14 (P less than 0.001) at 4 h. These differences could not be ascribed to hemodynamic factors. The results suggest that xanthine oxidase is a source of the oxygen free radicals responsible for myocardial stunning following a brief episode of reversible regional ischemia.

Allopurinol↗

The iron chelator desferrioxamine attenuates postischemic ventricular dysfunction.

Recent evidence suggests that postischemic myocardial dysfunction ("stunning") may be mediated by oxygen free radicals, but the mechanism by which they produce myocellular damage remains unknown. Since iron catalyzes formation of hydroxyl radicals (HO.) as well as HO.-initiated lipid peroxidation, we explored the potential role of this metal in the pathogenesis of myocardial stunning. Open-chest dogs undergoing a 15-min occlusion of the left anterior descending coronary artery (LAD) followed by 4 h of reperfusion (REP) received the iron chelator desferrioxamine intravenously (10 mg/kg over 45 min beginning 30 min before occlusion, then 1.7 mg.kg-1.h-1 throughout REP, n = 19) or normal saline (n = 17). Regional myocardial function was assessed by measuring systolic wall thickening with an epicardial Doppler probe. The two groups exhibited comparable systolic thickening under base-line conditions and similar degrees of dyskinesis during ischemia. After REP, however, recovery of contractile function (expressed as percent systolic thickening) as considerably greater in desferrioxamine-treated compared with control dogs: 5 +/- 3 (mean +/- SE) vs. -3 +/- 2% (P less than 0.05) at 1 h, 6 +/- 3 vs. -2 +/- 3% (P less than 0.05) at 2 h, 5 +/- 3 vs. -6 +/- 2% (P less than 0.005) at 3 h, and 6 +/- 3 vs. -6 +/- 2% (P less than 0.002) at 4 h. These differences could not be ascribed to hemodynamic factors. The results suggest that iron-catalyzed reactions (possibly HO. generation) play a significant role in myocardial stunning after a brief episode of reversible regional ischemia.

Animals↗

Antiarrhythmic efficacy and hemodynamic effects of cibenzoline in patients with nonsustained ventricular tachycardia and left ventricular dysfunction.

This was a prospective single-blind, placebo-controlled study of cibenzoline in 21 patients with five or more runs of nonsustained ventricular tachycardia (VT) and left ventricular dysfunction (mean left ventricular ejection fraction 36 +/- 24%). Ambulatory electrocardiographic monitoring revealed a baseline of 616 +/- 431 runs of VT/day on placebo. Of the 18 patients tolerating the drug, 14 (77%) patients initially had a 75% or greater reduction in VT (177 +/- 164 runs of VT/day, p less than .05). A repeat ambulatory electrocardiogram documented long-term suppression of VT in 13 of 14 patients at 1 month (2.1 +/- 1.3 runs VT/day, p less than .01), in 10 of 14 patients at 3 months (2.5 +/- 1.9 runs VT/day, p less than .01), and in nine of 14 patients at 6 months (1.5 +/- 0.8 runs VT/day, p less than .01). Aggravation of arrhythmia or drug failure was seen in four of 18 (22%) patients (new onset of sudden cardiac death, two patients; sustained VT, two patients). Hemodynamic measurements were obtained with the use of right heart catheterization in patients at rest and exercising during the placebo phase and after 60 hr of oral cibenzoline. Group hemodynamic variables, both measured and derived, showed no detrimental effect of cibenzoline. However, in three of 21 patients (mean ejection fraction 21%), cibenzoline was discontinued due to severe depression of left ventricular function. Caution is recommended in the use of cibenzoline in patients with left ventricular ejection fractions of less than 25%.

Aged↗

Creatine kinase isoform analysis in the detection and assessment of thrombolysis in man.

Recent demonstrations of the efficacy of intravenous thrombolytic therapy in acute myocardial infarction have emphasized the need for a noninvasive index of successful reperfusion. The tissue form of MM creatine kinase (MM3) is known to undergo posttranslational conversion to modified forms MM2 and MM1 after release into the plasma following acute infarction. Since this conversion is rapid, sustained elevation of plasma MM3 may be a marker of the prolonged creatine kinase release characteristic of nonreperfused infarction. Therefore, we investigated the rate of decline of plasma MM3 in a consecutive series of patients undergoing thrombolytic therapy of acute myocardial infarction, all of whom underwent acute angiography to assess treatment success, as well as in 30 conventionally treated patients. Among 55 patients with angiographically documented successful reperfusion (group IA), the rate of decline of MM3 was 4.18 +/- 1.25%/hr (mean +/- SD); in contrast, the rate of decline was 2.37 +/- 1.11%/hr in 39 patients with angiographically documented unsuccessful reperfusion (group IB) and 1.77 +/- 1.46%/hr among the 30 patients receiving conventional treatment (group II) (p less than .001 for groups IB and II vs group IA). A cutoff value of 3.1%/hr minimized the overlap between the groups; 48/55 (87%) patients with successful reperfusion had a rate of decline of MM3 of 3.1%/hr or more, while 29 of 39 (74%) patients in whom thrombolysis was unsuccessful and 27 of 30 (90%) patients receiving conventional treatment had a rate of decline less than 3.1%/hr (p less than .001 for groups IB and II vs group IA).(ABSTRACT TRUNCATED AT 250 WORDS)

Angioplasty, Balloon↗

Thrombolysis in Myocardial Infarction (TIMI) Trial, Phase I: A comparison between intravenous tissue plasminogen activator and intravenous streptokinase. Clinical findings through hospital discharge.

Intravenous administration of 80 mg of recombinant tissue plasminogen activator (rt-PA, 40, 20, and 20 mg in successive hours) and streptokinase (SK, 1.5 million units over 1 hr) was compared in a double-blind, randomized trial in 290 patients with evolving acute myocardial infarction. These patients entered the trial within 7 hr of the onset of symptoms and underwent baseline coronary arteriography before thrombolytic therapy was instituted. Ninety minutes after the start of thrombolytic therapy, occluded infarct-related arteries had opened in 62% of 113 patients in the rt-PA and 31% of 119 patients in the SK group (p less than .001). Twice as many occluded infarct-related arteries opened after rt-PA compared with SK at the time of each of seven angiograms obtained during the first 90 min after commencing thrombolytic therapy. Regardless of the time from onset of symptoms to treatment, more arteries were opened after rt-PA than SK. The reduction in circulating fibrinogen and plasminogen and the increase in circulating fibrin split products at 3 and 24 hr were significantly less in patients treated with rt-PA than in those treated with SK (p less than .001). The occurrence of bleeding events, administration of blood transfusions, and reocclusion of the infarct-related artery was comparable in the two groups. Thus, in patients with acute myocardial infarction, rt-PA elicited reperfusion in twice as many occluded infarct-related arteries as compared with SK at each of seven serial observations during the first 90 min after onset of treatment.

Blood Coagulation↗

The hemodynamic effects of sotalol and quinidine: analysis by use of rest and exercise gated radionuclide angiography.

This placebo-controlled, double-blind trial compared the hemodynamic effects of sotalol and quinidine with the use of rest and exercise gated radionuclide angiography. Patients had frequent ventricular premature depolarizations (greater than or equal to 30 VPDs/hour) and depressed cardiac function (mean ejection fraction 43 +/- 15%). Resting left ventricular ejection fraction and stroke volume index increased (p less than .002, p less than .001, respectively) during sotalol therapy, associated with a concomitant fall in heart rate (p less than .001). Quinidine also increased mean left ventricular ejection fraction, but less so than did sotalol (p less than .05). Quinidine significantly decreased left ventricular end-diastolic (p less than .05) and end-systolic (p less than .002) volumes, but had no effect on stroke volume index or heart rate. Neither drug affected cardiac index. Quinidine resulted in no symptomatic deterioration in left ventricular function or serious arrhythmia aggravation. In contrast, five patients on sotalol developed either decompensated congestive heart failure (two patients), arrhythmia aggravation (two patients), or hypotension associated with bradyarrhythmia (one patient). These patients had a unique hemodynamic profile that can be used to identify patients likely to have a poor outcome on sotalol. This profile reflected a lack of cardiac reserve, characterized by an inability to increase stroke volume and cardiac output with supine bicycle exercise.

Aged↗

Attenuation of dysfunction in the postischemic 'stunned' myocardium by dimethylthiourea.

The mechanism for the prolonged contractile dysfunction observed in myocardium reperfused after reversible regional ischemia ("stunned" myocardium) is unclear. Recent studies suggest that myocardial stunning may be mediated by oxygen-derived free radicals, but the precise molecular species involved remain unknown. Thus we explored the role of the highly cytotoxic hydroxyl radical in regional postischemic dysfunction by using dimethylthiourea (DMTU), an effective and highly permeable hydroxyl radical scavenger. Open-chest dogs undergoing a 15 min occlusion of the left anterior descending coronary artery followed by 4 hr of reperfusion received either DMTU (0.5 g/kg iv over 45 min starting 30 min before occlusion, n = 14) or saline (n = 15). Control and treated dogs were comparable with respect to variables that may affect postischemic dysfunction, including heart rate, aortic pressure, left atrial pressure, arterial blood gases and hemoglobin concentration, size of the occluded bed (determined by postmortem perfusion), and collateral blood flow (determined by radioactive microspheres). Regional myocardial function was assessed by measuring wall thickening with an epicardial Doppler probe. The two groups exhibited comparable systolic thickening under baseline conditions and similar degrees of dyskinesis during ischemia. After reperfusion, however, wall thickening (expressed as percent of baseline) was considerably greater in treated as compared with control dogs: 53 +/- 9% (mean +/- SEM) vs 9 +/- 14% (p less than .03) at 1 hr, 55 +/- 9% vs 23 +/- 13% (p less than .05) at 2 hr, 60 +/- 9% vs 28 +/- 14% (p less than .05) at 3 hr, and 67 +/- 5% vs 36 +/- 13% (p less than .05) at 4 hr. Thus DMTU produced a significant and sustained improvement in recovery of contractile function. In concentrations greater than the plasma levels attained in vivo, DMTU did not scavenge either hydrogen peroxide or superoxide anion in vitro. These results suggest that the myocardial dysfunction occurring after a brief episode of regional ischemia is mediated in part by the hydroxyl radical.

Animals↗

Non-invasive tests of neurovascular function.

This paper describes the value of non-invasive neurovascular function tests in the clinical setting. Painful transcutaneous electrical nerve stimulation (TENS) of the dorsum of the foot evoked axon reflex vasodilatation, measured by laser Doppler flowmetry. In addition, acetylcholine and sodium nitrite (NaNO2) were iontophoresed to cause vasodilatation by endothelium-dependent and -independent mechanisms, respectively. Compared with healthy volunteers, diabetic patients with clinically diagnosed neuropathy showed reduced electrical axon reflex flare responses. These responses in one additional subject were absent in a region of denervated skin. Acetylcholine responses, but not NaNO2 responses, were also depressed in patients with diabetic neuropathy. Such reduced cutaneous nocifensor functions may contribute to some symptoms and complications of diabetes mellitus.

Blood Vessels↗

Contractures in cerebral palsy.

Contractures in cerebral palsy (CP) are usually in flexion at the hips and knees, and in plantar flexion at the ankles. When correctly indicated, surgical release is appropriate. Occasionally, extension contractures of the hip and knee develop, and dorsiflexion contractures of the ankle may ensue. In CP, the management of each of these deformities may require different sets of operative procedures.

Adolescent↗

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Information Systems↗