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Biomedical subjects

V Torres

Publications and source records attributed to V Torres.

At least 55 records · Page 3Linked to original sources

Expression of hydrogenase activity in barley (Hordeum vulgare L.) after anaerobic stress.

Germinated seeds of barley, after anaerobic treatment, produce considerable amounts of hydrogen. The anaerobic stress induces hydrogenase activity, as measured by the ability to evolve hydrogen from reduced methyl viologen. Several pieces of evidence, including bacteriological controls and induction in axenic calluses, indicate that the hydrogenase activity is induced by the plant itself and not by contaminant microorganisms. The hydrogenase is selectively induced in roots and to a lower extent in hypocotyls, but no hydrogenase activity can be detected in leaves.

Anaerobiosis↗

Antiarrhythmic drug efficacy at electrophysiology testing: predictive effectiveness of procainamide and flecainide.

In an effort to assess the ability of procainamide to predict effectiveness of antiarrhythmic agents at programmed electrical stimulation (PES) testing, we compared the result of procainamide at PES testing with that of all of the other agents studied. One hundred fifty-three patients underwent PES studies because of either sustained or nonsustained ventricular tachycardia (VT). Procainamide prevented VT induction in 79 of 153 patients. Seventy-four of the remaining 153 were inducible for VT on procainamide, with 55 of these being protected by another antiarrhythmic agent (p less than 0.001). If procainamide failed to prevent VT induction, other conventional and experimental agents were equally as likely to be effective in preventing VT induction. Analysis of flecainide acetate as a predictor of efficacy was also evaluated. Fifty-five patients received flecainide and 29 of these were protected at PES testing; 26 of these patients were also protected with another agent. When VT was inducible in patients who received flecainide, 15 of these 26 patients were protected by another agent, either conventional or experimental (p less than 0.01). Thus, if procainamide or flecainide prevented VT induction they accurately predicted effectiveness of other drugs; however, when they did not prevent VT induction, they served as a poor predictor of the possible effectiveness of other drugs. Serial drug testing at PES studies with multiple conventional and experimental drugs increases the likelihood of finding an effective antiarrhythmic agent.

Anti-Arrhythmia Agents↗

Antiarrhythmic efficacy of ethmozine in patients with ventricular tachycardia as determined by programmed electrical stimulation.

The antiarrhythmic properties of ethmozine were studied in 27 patients with a history of a cardiac arrest or symptomatic ventricular tachycardia. Programmed electrical stimulation studies were performed in 20 men and seven women with a mean age of 62 years and a mean left ventricular ejection fraction of 43%. All patients had inducible ventricular tachycardia by programmed electrical stimulation while off all antiarrhythmic therapy. Patients were then tested on procainamide if their treatment with this drug orally had not previously failed. Procainamide, 1000 and 1500 mg, was administered intravenously, and ventricular tachycardia could be provoked in 14 of 18 patients. Ethmozine was given in an oral loading regimen starting 24 to 36 hours later. After 500 mg oral ethmozine, patients were given 15 mg/kg ethmozine every 8 hours for seven to nine doses prior to drug testing. Ethmozine did not significantly change the baseline heart rate, blood pressure, and QTc interval from the initial drug-free values. The PR and QRS intervals were significantly prolonged. Seven patients were protected on oral ethmozine; 14 patients still had ventricular tachycardia inducible at programmed electrical stimulation testing, and six patients developed ventricular tachycardia spontaneously on ethmozine and were not tested in the programmed electrical stimulation laboratory. One patient had gastrointestinal complaints and was not discharged on the drug. The five patients who tolerated the oral protocol without side effects and who were protected against programmed stimulation induction of ventricular tachycardia were discharged on oral therapy. One patient on long-term therapy appeared to develop an allergic reaction to the agent with unexplained fevers and was switched to amiodarone therapy.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Renal subcapsular abscess.

Renal subcapsular abscess is reported with description of findings by conventional radiography, computerized axial tomography, arteriography, and ultrasonography. The latter was especially helpful in permitting delineation of the lesion, and in facilitating its aspiration and resolution.

Abscess↗

QT prolongation and the antiarrhythmic efficacy of amiodarone.

Amiodarone is an antiarrhythmic agent known to cause prolongation of action potential duration which is reflected in the electrocardiogram as a prolongation of the QT interval. Prolongation of the QT interval in patients dying suddenly was compared with that in patients who remained alive to determine whether a difference existed between these two groups. The electrocardiogram and amiodarone levels were evaluated in 33 patients who presented with cardiac arrest and symptomatic ventricular tachycardia in whom no other antiarrhythmic agent was found effective in preventing induction of ventricular tachycardia during electrophysiologic studies. There were 30 men and 3 women (mean age 52 +/- 10 years). Twenty-three are alive after a mean follow-up period of 12 +/- 7 months. Ten died: six suddenly, three of non-cardiac causes and one of congestive heart failure. Using a two-way analysis of variance, the percent change in QT, QTc, JT and JTc intervals before and after amiodarone therapy was analyzed. Marked prolongation in the QT interval was present in patients who remained alive with amiodarone therapy. A significant difference in percent QT prolongation was seen between the latter patients and those who died suddenly (p less than 0.005). No difference was observed in the percent change in QRS interval between the two groups. The levels of amiodarone (2.5 versus 3.2 micrograms/ml) and its metabolite (desethylamiodarone) were not significantly different between the living patients and those who died suddenly. These findings suggest that a prolongation of the QT interval may be a marker for the therapeutic antiarrhythmic effect of amiodarone.

Aged↗

N-acetylprocainamide's antiarrhythmic action in patients with ventricular tachycardia.

Antiarrhythmic properties of N-acetylprocainamide, an active metabolite of procainamide, were studied in 15 patients who presented with a cardiac arrest or documented sustained ventricular tachycardia. Programmed electrical stimulation studies were performed. All patients tested had inducible ventricular tachycardia by programmed electrical stimulation techniques while off all antiarrhythmic therapy. Patients were then tested on procainamide 1000 mg administered intravenously, and ventricular tachycardia could be provoked in 8 of 10 patients. Twenty-four to 36 hours later, N-acetylprocainamide was administered, intravenously, and programmed stimulation was performed after 20 minutes. N-acetylprocainamide did not significantly change heart rate, mean arterial blood pressure, electrocardiographic intervals, A-H or H-V conduction times. N-acetylprocainamide prevented ventricular tachycardia induction in 6 of 15 patients. The mean serum N-acetylprocainamide levels in the group protected was 15.7 +/- 4 micrograms/ml and 16.2 +/- 4 micrograms/ml in the group not protected. These 6 patients were discharged on N-acetylprocainamide 1.5 grams orally every 8 hours. Three patients have been maintained on chronic N-acetylprocainamide every 8 hours. Three patients have been maintained on chronic N-acetylprocainamide therapy (6 +/- 2 months), two patients had breakthrough ventricular tachycardia on follow-up Holter monitoring and alternative therapy was given. N-acetylprocainamide has antiarrhythmic efficacy in preventing induction of ventricular tachycardia by programmed electrical stimulation in a high risk group of patients. On chronic oral therapy, N-acetylprocainamide appears to be well tolerated with antiarrhythmic efficacy that may be enhanced with further upward dose titration.

Acecainide↗

Electrophysiologic evaluation of the antiarrhythmic effects of N-acetylprocainamide for ventricular tachycardia secondary to coronary artery disease.

Antiarrhythmic properties of N-acetylprocainamide (NAPA), an active metabolite of procainamide, were studied in 12 patients with coronary artery disease who presented with cardiac arrest or documented sustained ventricular tachycardia (VT). Programmed electrical stimulation (PES) studies were performed in 10 men and 2 women, aged 52 to 80 years (mean 63), who had a left ventricular ejection fraction of 16 to 69% (mean 33). All patients tested had inducible VT provoked by PES without antiarrhythmic therapy. Patients were then tested with procainamide, 1,000 mg administered intravenously. VT could be provoked after procainamide treatment in 8 of 10 patients. Twenty-four to 36 hours later NAPA was administered, 18 mg/kg body weight intravenously, and PES was performed after 20 minutes. NAPA did not significantly change heart rate, mean arterial blood pressure, electrocardiographic intervals and AH or HV conduction times. The QT interval lengthened, but not significantly. The mean serum NAPA levels were 15.7 +/- 4 micrograms/ml in the group protected by NAPA and 16.2 +/- 4 micrograms/ml in the group not protected by NAPA. Five patients were discharged with NAPA therapy, 1.5 g orally every 8 hours. Two patients have been maintained with chronic NAPA therapy (10 +/- 3 months), and 2 patients had breakthrough VT on follow-up Holter monitoring and alternative therapy was given. One patient died while taking oral therapy. NAPA demonstrates antiarrhythmic efficacy in preventing induction of VT by PES in a high-risk group of patients. During chronic oral therapy in some patients, NAPA appears to be well tolerated, with antiarrhythmic efficacy that may be enhanced with further upward dose titration.

Acecainide↗

Flecainide: long-term treatment using a reduced dosing schedule.

Flecainide was initially prescribed at a dose of 200 mg twice daily, but after early toxicity in patients with ventricular tachycardia (VT), the dosage was reduced to 100 mg twice daily. The effects of flecainide were studied in 40 patients (29 men and 11 women, mean age 62 +/- 2 years, ejection fraction 45 +/- 3%) who underwent programmed electrical stimulation to determine the efficacy of flecainide in preventing VT chronically at the reduced dose. Sustained VT was induced in 21 patients and nonsustained VT in 19. Flecainide prevented VT induction in 26 patients (65%). At a mean dose of 1.5 +/- 0.1 mg/kg, prolongation occurred in the effective refractory period of the first (280 +/- 5 vs 249 +/- 5 ms) and second (254 +/- 6 vs 209 +/- 9 ms) extrastimuli (p less than 0.01). In the patients protected by flecainide, the effective refractory periods increased by a 17 +/- 2% and 21 +/- 3%, in contrast to only a 7 +/- 3% and 6 +/- 4% increase in the nonprotected group (p less than 0.05), despite a higher mean dose (1.9 +/- 0.1 vs 1.35 +/- 0.1 mg/kg). Twenty-one patients were discharged on flecainide therapy, 100 mg twice daily, and were followed for a mean of 11 months. Sixteen patients are alive and well, 1 died suddenly, 1 died from a noncardiac cause and 1 had a "breakthrough" arrhythmia. Two were switched to quinidine therapy by their referring physicians, but were without problems while receiving flecainide.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Arrhythmia Agents↗

Prolongation of QT interval and antiarrhythmic action of bepridil.

Studies were undertaken with bepridil, a new calcium blocker that prolongs the QT interval, to determine the antiarrhythmic and possible arrhythmogenic properties of this agent. The technique of programmed electrical stimulation was employed to evaluate bepridil in 15 patients with symptomatic ventricular tachycardia (VT). Bepridil prevented VT induction in 7 of 15 patients. Bepridil prolonged the QT and refractoriness and a linear correlation could be demonstrated between the percent change in QTc and refractory period prolongation for the bepridil-protected group. Bepridil in one patient reduced by one the number of stimuli required to induce VT, but no spontaneous arrhythmias were noted. Bepridil thus possesses antiarrhythmic properties with a minimal proarrhythmic effect.

Aged↗

Long-term lorcainide therapy in patients with ventricular tachycardia.

One hundred patients inducible at electrophysiologic studies underwent serial drug testing with procainamide, lidocaine, and lorcainide to determine comparative efficacy. Acute intravenous administration was followed by repeat programmed electrical stimulation (PES) studies on separate days for each antiarrhythmic drug. Lorcainide prevented ventricular tachycardia (VT) induction in 69% of the 100 patients studied, procainamide was effective in 50% of the 75 patients studied, and lidocaine prevented VT induction in 30% of 53 patients. Following PES and serial drug testing, 46 patients were started on lorcainide, nine patients on procainamide, and 45 patients were started on other antiarrhythmic drug regimens. Seventy percent of the patients have remained on lorcainide therapy, while 47% have continued on other drug therapies started over a 20.5 +/- 3.2-month mean follow-up period. Despite sleep-wake disturbances and a need for sedation at night, lorcainide therapy was tolerated well in this population and remained an effective antiarrhythmic with prolonged administration.

Benzeneacetamides↗

The clinical significance of polymorphic ventricular tachycardia provoked at electrophysiologic testing.

Ventricular tachycardia (VT) induced at electrophysiologic studies is felt to be clinically significant if the morphology of the induced arrhythmia and the spontaneous arrhythmia are similar. Yet many times in referral patients, an adequate 12-lead ECG does not exist to permit determination of the VT morphology. Since the significance of differences in induced and spontaneous arrhythmias has not been clearly established, we reviewed the records of 153 patients and correlated induced VT morphology with the incidence of sudden death. Polymorphic VT was induced in 88 patients (57%) and monomorphic VT was induced in 65 patients (43%). The total mortality and sudden death rates were similar in the two groups in spite of antiarrhythmic therapy, 12% and 7% (polymorphic) versus 10% and 5% (monomorphic). All the sudden deaths occurred in patients who presented with cardiac arrest and hemodynamically symptomatic VT and none in the asymptomatic VT group, regardless of VT morphology (p less than 0.005). The induced VT morphology cannot be used to predict the potential efficacy of antiarrhythmic drugs, since patients with either morphology are as likely to respond to conventional or experimental agents. Thus, induced polymorphic VT can be a useful index of electrical instability in high-risk patients (cardiac arrest and hemodynamically symptomatic VT) and may be of utility in guiding antiarrhythmic therapy.

Aged↗

Antiarrhythmic effects of cibenzoline.

Thirty-three patients with ventricular tachyarrhythmias were referred for evaluation of their arrhythmias using programmed electrical stimulation to guide antiarrhythmic therapy. Cibenzoline succinate, a new antiarrhythmic agent, was compared to procainamide in patients with ventricular tachycardia. Cibenzoline was given intravenously, initially 1.0 mg/kg, then in 1 mg/kg increments to a maximum of 3.0 mg/kg, during electrophysiologic testing. The results were compared to procainamide, which was also administered intravenously to 1000 and then to 1500 mg. Cibenzoline provided protection against ventricular tachycardia induction in 16 of 33 patients. The PR interval increased 13%, QRS duration widened 26%, and QTc interval was prolonged by 7%. There was a 9% fall in mean arterial blood pressure. Procainamide prevented ventricular tachycardia induction in 21 out of 31 patients tested. The PR interval increased 11%, QRS duration widened 27%, and QTc interval prolonged by 8%. Cibenzoline was given orally to 13 patients for chronic treatment. Chronic oral cibenzoline therapy after a mean follow-up of 8.8 months caused a reduction of ventricular ectopy from 666 to 190 beats/hr. Ventricular tachycardia events decreased per Holter monitor recording from 6 to 0.6. Cibenzoline therapy was discontinued in 5 of 13 patients due to break-through arrhythmias (nonsustained ventricular tachycardia on Holter monitor and recurrence of symptoms). Cibenzoline may be an effective antiarrhythmic agent in selected patients.

Adult↗

Therapy for late post infarction ventricular tachycardia.

Non-sustained ventricular tachycardia (VT) in the late post myocardial infarction (MI) period (7-21 days) has been reported to be a predictor of sudden death. We suspected that patients with 3 beat VT on Holter monitoring in the late infarction period would demonstrate electrical instability at electrophysiologic studies. Forty-seven patients were identified as having at least 3 beat VT on Holter monitoring. Eighteen patients refused electrophysiologic studies or were not referred by their attending physician. The mean ejection fraction of this group was 43 +/- 16%. Eight patients have died, 3 sudden deaths in 13 +/- 5 months, a 17% incidence of sudden death. Twenty-nine patients underwent invasive electrophysiologic studies. Their mean ejection fraction was 37 +/- 7%, and 28 had inducible, 18 sustained ventricular tachycardia and 10 non-sustained VT. No complications were noted with electrophysiological testing in the post infarction patients. Using programmed electrical stimulation studies an effective antiarrhythmic agent preventing VT induction (usually experimental) could be found for each patient. After a mean follow-up of 12.5 +/- 4 months, the patient without inducible VT is alive and 26 of the 28 "inducible" patients are alive and well. Two patients died, one of stroke and one due to pump failure following a second MI. No sudden deaths were observed in this group. Two patients had breakthrough arrhythmias and were treated by alternative antiarrhythmic therapy that was also effective at the initial electrophysiologic studies. Thus, PES studies post MI are safe and may be an effective way to assess therapy for patients in the early post MI period, identified at high risk for sudden death.

Aged↗

Long term lorcainide therapy guided by electrophysiology studies.

One hundred patients inducible at electrophysiologic studies underwent serial drug testing with procainamide, lidocaine and lorcainide to determine comparative efficacy. Acute intravenous administration was followed by repeat programmed electrical stimulation (PES) studies on separate days for each antiarrhythmic drug. Lorcainide prevented VT induction in 69% of the 100 patients studied, procainamide was effective in 50% of the 75 patients studied, and lidocaine prevented VT induction in 30% of 53 patients. Following PES and serial drug testing, 46 patients were started on lorcainide, 9 patients on procainamide, and 45 patients were started on other antiarrhythmic drug regimens. Seventy percent of the patients have remained on lorcainide therapy, while 47% have continued on other drug therapies started over a 20.5 +/- 3.2 month mean follow-up period. Despite sleep-wake disturbances and a need for sedation at night, lorcainide therapy was tolerated well in this population and remained an effective antiarrhythmic with prolonged administration.

Administration, Oral↗

Lorcainide therapy for the high-risk patient post myocardial infarction.

Nonsustained ventricular tachycardia (VT) in the late period (7 to 21 days) after myocardial infarction (MI) is reported to be a predictor of sudden death. Patients with 3-beat VT on Holter monitoring in the late infarction period would be suspected to demonstrate electrical instability on electrophysiologic studies. Forty-seven patients were identified as having at least 3-beat VT on Holter monitoring. Eighteen patients refused electrophysiologic studies or were not referred. Eight patients died; 3 were sudden deaths in 13 +/- 5 months, a 17% incidence. Twenty-nine patients underwent invasive electrophysiologic studies and 28 had inducible VT, 18 sustained and 10 nonsustained. Lorcainide prevented VT induction in 21 of the 28 patients, whereas 12 of the 22 patients studied on procainamide were protected. Lidocaine, tested in 21 patients, prevented VT induction in only 5. Lorcainide and procainamide prolonged refractoriness in those patients protected at programmed electrical stimulation (PES), whereas the QT interval was prolonged in patients in whom VT could still be induced. Twenty-seven of the 28 patients were placed on drugs predicted to be effective by PES studies, 19 on lorcainide. After a mean follow-up of 12.5 +/- 4 months the patient with noninducible arrhythmia is alive and 26 of the 28 patients with inducible arrhythmia are alive and well. Two patients died, 1 of stroke and 1 of pump failure after a second MI. No sudden deaths were observed in this group. Two patients had breakthrough arrhythmias and were treated by alternative antiarrhythmic therapy that was also effective on initial electrophysiologic studies.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Evaluation of lorcainide in patients with symptomatic ventricular tachycardia.

One hundred patients with inducible ventricular tachycardia (VT) on electrophysiologic studies underwent serial drug testing with procainamide, lidocaine and lorcainide to determine comparative efficacy. Acute intravenous administration was followed by repeat programmed electrical stimulation (PES) studies on separate days for each antiarrhythmic agent. Lorcainide prevented VT induction in 69% of the 100 patients studied, procainamide in 50% of the 75 patients studied and lidocaine in 30% of 53 patients. After PES and serial drug testing, 46 patients were started on lorcainide, 9 on procainamide and 45 on other antiarrhythmic drug regimens. Eighty percent of the patients have remained on lorcainide therapy, whereas 47% have continued on other drug therapies started over 17.5-month mean follow-up period. Despite sleep-wake disturbances and a need for sedation at night, lorcainide therapy was well tolerated in this population and remained an effective antiarrhythmic agent with prolonged administration.

Anti-Arrhythmia Agents↗