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Biomedical subjects

F L Rosenfeldt

Publications and source records attributed to F L Rosenfeldt.

At least 19 recordsLinked to original sources

Artificial aortic valves: an overview.

This review discusses strategies that may address some of the limitations associated with replacing diseased or dysfunctional aortic valves with mechanical or tissue valves. These limitations range from structural failure and thromboembolic complications associated with mechanical valves to a limited durability and calcification with tissue valves. In pediatric patients there is an issue with the inability of substitutes to grow with the recipient. The emerging science of tissue engineering potentially provides an attractive alternative by creating viable tissue structures based on a resorbable scaffold. Morphometrically precise, biodegradable polymer scaffolds may be fabricated from data obtained from scans of natural valves by rapid prototyping technologies such as fused deposition modelling. The scaffold provides a mechanical profile until seeded cells produce their own extra cellular matrix. The microstructure of the forming tissue may be aligned into predetermined spatial orientations via fluid transduction in a bioreactor. Although there are many technical obstacles that must be overcome before tissue engineered heart valves are introduced into routine surgical practice these valves have the potential to overcome many of the shortcomings of current heart valve substitutes.

Animals↗

Similar therapeutic serum levels attained with emulsified and oil-based preparations of coenzyme Q10.

Studies of the therapeutic efficacy of coenzyme Q10 (CoQ10) have been confounded by the variable bioavailability of numerous CoQ10 preparations. The aims of the present study were to determine the early serum levels attained by two different preparations of CoQ10, a soybean oil-based preparation and a complex micelle emulsion and to assess whether these preparations of oral CoQ10 influence plasma lipid profiles. Twelve healthy individuals received 300 mg CoQ10 daily of either preparation for 7 days in a double-blind cross-over design with a 21-day washout period. Blood samples to determine serum levels of CoQ10 and lipids were taken at baseline, after 24 h and 7 days. Both preparations induced significant increases in serum CoQ10 levels at 24 h and 7 days. These were for soy oil: baseline 0.27 +/- 0.03 mol/L, 24 h 0.50 +/- 0.04 mol/L (180%) and 7 days 0.80 +/- 0.05 mol/L (291%), mean +/- SEM: for emulsion: baseline 0.29 +/- 0.03 mol/L, 24 h 0.45 +/- 0.03 mol/L (150%) and 7 days 0.79 +/- 0.06 mol/L (270%). There were no significant differences between CoQ10 levels for the two preparations at either time point. There was no change in any of the serum lipids following the 7 days treatment. We conclude that administration of either a soy oil suspension or a complex emulsion of CoQ10 increases serum levels to the therapeutic range within 1 week.

Adult↗

Developing performance indicators for cardiac surgery: a demonstration project in Victoria.

Six Victorian cardiac surgical units pooled data in order to undertake a demonstration project aimed at developing performance indicators to assess outcomes following cardiac surgery. The outcome of the project was an indicative report for the purpose of monitoring surgical performance indicators in a format suitable for: (i) the general public; (ii) the Victorian State Government; and (iii) the participating units and surgeons. Each participating cardiac surgical unit had an existing database used for recording information from each procedure. A request was made to each unit to extract a subset of data from all cases entered over the past 5 years. The proposed list of performance indicators included surgical mortality (within the period of admission for surgery), complication rates (including sternal infection, postoperative myocardial infarction, postoperative stroke, haemorrhage requiring return to theatre), and length of hospital stay. A model was developed from the data and used to provide risk-adjusted measures of hospital performance. Cases from five cardiac surgical units (n = 10 715) were included in the final analysis. A risk-adjusted model (including age, sex, diabetes, hypertension, smoking, procedure type, urgency of procedure) was developed for surgical mortality. Performance indicators for coronary artery bypass graft surgery, including mortality, sternal infection rate and length of hospital stay are presented. From the available data, performance indicators for cardiac surgery in Victorian hospitals compared favourably with international benchmarks. This project has demonstrated that prospective data collection using a standardised system could readily produce local risk-adjustment models for cardiac surgery to aid in developing appropriate performance indicators.

Journal Article↗

A simplified method of harvesting and dilating the radial artery achieves acceptable clinical outcomes.

BACKGROUND: The recent successful revival of the radial artery as a coronary-bypass conduit has been attributed to a minimally traumatic harvesting technique without diathermy, combined with long-term oral calcium antagonist therapy. We describe a simplified technique of harvesting the radial artery, which reduces procurement time and maintains conduit relaxation. METHODS: Radial arteries were harvested using diathermy and topical glyceryl trinitrate-verapamil dilator solution. Postoperatively, intravenous glyceryl trinitrate, but no calcium antagonist was used. The clinical results in the first 100 consecutive patients receiving radial artery grafts (RA group), procured using this technique, were compared with a group of 100 patients receiving saphenous vein conduits (SV group) immediately prior to the introduction of the radial artery at our institution. RESULTS: There were no demographic differences between the two groups, other than the SV group being slightly older. There was one intraoperative death in each group. There was no difference in the rate of peri-operative myocardial infarction or length of stay in the intensive care unit. At a median follow-up time of 16 months for the RA group, and 25 months for the SV group, the survival rates were 97 and 94%, respectively. All survivors were in the New York Heart Association class I. In the SV group, two postoperative angioplasties were performed. CONCLUSIONS: These early results suggest that this method of procuring the radial artery using diathermy, glyceryl trinitrate and no postoperative calcium antagonists, is rapid, safe and effective. The continued use of this technique is justified, while awaiting the results of long-term angiographic studies.

Aged↗

How to write a paper for publication.

Engaging in the scientific publication process can be for both altruistic and egotistical reasons; publication advances the state of scientific knowledge while advancing your institution and your career. Writing for publication means setting aside a location and time dedicated entirely to the process of planning and writing. It is easiest to begin with the Methods section, then the Results, followed by the Discussion, which is the most challenging part of a paper. A realistic assessment of the value of the article will determine the level of journal into which it is likely to gain acceptance. If your article is rejected by a journal, be consoled by the fact that 50% of articles that are initially rejected are eventually published. Following the steps outlined here can reduce the daunting task of writing to one of manageable proportions and can help overcome the mental block and procrastination that all of us have experienced when we set out to write a scientific paper.

Journal Article↗

Outcomes of coronary artery bypass grafting: a 3 year analysis using the Society of Thoracic Surgeons Database.

BACKGROUND: Accurate risk factor analysis is a critical element in contemporary cardiac surgical practice. In the USA, the Society of Thoracic Surgeons Database allows institutions and individual surgeons to carry out detailed patient risk assessment and to review their cardiac surgical outcomes in a comparative fashion. METHODS: To evaluate outcomes of isolated coronary artery bypass grafting, data from all patients operated upon at the Alfred Hospital, Melbourne, Australia, over a 3 year period were entered into the Society of Thoracic Surgeons Database. RESULTS: Our results (mortality and morbidity) compared favourably with those contained within this large international database. CONCLUSION: It is hoped that a similar Australasian database can be established to facilitate a meaningful local risk assessment and a comparative analysis of outcomes of cardiac surgical procedures.

Journal Article↗

Coenzyme Q10 improves the tolerance of the senescent myocardium to aerobic and ischemic stress: studies in rats and in human atrial tissue.

The inferior recovery of cardiac function after interventional cardiac procedures in elderly patients compared to younger patients suggests that the aged myocardium is more sensitive to stress. We report two studies that demonstrate an age-related deficit in myocardial performance after aerobic and ischemic stress and the capacity of CoQ10 treatment to correct age-specific diminished recovery of function. In Study 1 the functional recovery of young (4 mo) and senescent (35 mo) isolated working rat hearts after aerobic stress produced by rapid electrical pacing was examined. After pacing, the senescent hearts, compared to young, showed reduced recovery of pre-stress work performance. CoQ10 pretreatment (daily intraperitoneal injections of 4 mg/kg CoQ10 for 6 weeks) in senescent hearts improved their recovery to match that of young hearts. Study 2 tested whether the capacity of human atrial trabeculae (obtained during surgery) to recover contractile function, following ischemic stress in vitro (60 min), is decreased with age and whether this decrease can be reversed by CoQ10. Trabeculae from older individuals (> or = 70 yr) showed reduced recovery of developed force after simulated ischemia compared to younger counterparts (< 70 yr). Notably, this age-associated effect was prevented in trabeculae pretreated in vitro (30 min at 24 degrees C) with CoQ10 (400 MicroM). We measured significantly lower CoQ10 content in trabeculae from > or = 70 yr patients. In vitro pretreatment raised trabecular CoQ10 content to similar levels in all groups. We conclude that, compared to younger counterparts, the senescent myocardium of rats and humans has a reduced capacity to tolerate ischemic or aerobic stress and recover pre-stress contractile performance, however, this reduction is attenuated by CoQ10 pretreatment.

Aerobiosis↗

Pharmacology of coronary artery bypass grafts.

Spasm of arterial and venous graft conduits can occur both during harvesting and after the graft is connected. Attempts to overcome spasm during harvesting by probing or hydraulic distension can cause structural damage to the graft, which may impair short- and long-term patency. After a coronary artery bypass graft is connected, spasm can cause major problems with myocardial perfusion. To select the best pharmacologic agent to prevent or reverse vasoconstriction in a graft requires an understanding of the reactivity of that particular type of graft to vasoconstrictor and vasodilator agents. The pharmacologic reactivity of venous and arterial graft conduits has been documented through extensive studies of isolated vessels in the organ bath and of in situ grafts in the body. In this review we summarize the current state of knowledge of the reactivity of arterial and venous grafts to vasoconstrictor and vasodilator agents and describe the practical application of this knowledge in the operating room and in the postoperative period.

Arteries↗

Increased temperature reduces the protective effect of University of Wisconsin solution in the heart.

BACKGROUND: The protective effect of University of Wisconsin solution (UW) for hypothermic storage of donor hearts has been demonstrated in the laboratory. However, clinical usage is associated with occasional primary graft failures. We postulated that this could be related to adverse effects of UW on the coronary vasculature during cardiac implantation and rewarming. We therefore assessed recovery of contractile function and coronary flow in rat hearts after cardioplegic arrest using UW compared with St. Thomas' solution (ST) at 4 degrees C or 25 degrees C. METHODS: Cardioplegia was induced in isolated rat hearts using either UW or ST at 4 degrees C. Hearts were then maintained at 4 degrees C or 25 degrees C. In some hearts, UW at 4 degrees C was used for inducing arrest followed by flushing with ST at 4 degrees C and then rewarming to 25 degrees C. After 40 minutes of arrest, recovery of function and coronary flow were measured. Nuclear track emulsion was used to assess microvascular competence. RESULTS: Compared with ST-treated hearts, UW-treated hearts showed significant reduction in recovery of function at 25 degrees C (76.2% +/- 4.0% versus 25.0% +/- 4.1%; p < 0.01) but not at 4 degrees C (88.0% +/- 1.6% versus 87.1% +/- 2.6%). Recovery of coronary flow in the UW-treated hearts at 25 degrees C was significantly lower than that in the ST-treated hearts at 25 degrees C (71.7% +/- 3.0% versus 94.5% +/- 6.3%; p < 0.01). At 25 degrees C, microvascular competence was reduced in the UW group compared with the ST group. At 25 degrees C, flushing out UW with ST resulted in greater recovery of function compared with UW throughout (73.4% +/- 7.1% versus 25.0% +/- 4.1%; p < 0.01). CONCLUSIONS: University of Wisconsin solution provides effective donor heart protection under hypothermic conditions but can be deleterious at warmer temperatures.

Adenosine↗

Continuous perfusion improves preservation of donor rat hearts: importance of the implantation phase.

BACKGROUND: Continuous hypothermic perfusion of donor hearts may provide extra protection for long ischemic times and suboptimal donors. The aim of three separate studies was to assess the effect of continuous hypothermic perfusion during simulated donor heart storage and implantation. METHODS: In study 1 twelve isolated rat hearts underwent 10 minutes of normothermic ischemia to simulate the effect of brain death on the heart and 5 hours of cardioplegic arrest, using University of Wisconsin solution. Six hearts were statically stored in University of Wisconsin solution at 2 degrees C, and six were perfused with University of Wisconsin solution. To assess the effect of simulated implantation, in study 2 an additional 12 hearts were statically stored for 5.5 hours in University of Wisconsin solution, six of which were rewarmed to a mean of 16 degrees C over the last 30 minutes of arrest. To assess the effect of simulated perfusion, in study 3 during implantation 12 hearts were rewarmed to a mean of 16 degrees C over the last 30 minutes of arrest, during which time six were perfused with 2 degrees C solution. RESULTS: Hearts perfused during storage demonstrated greater recovery of prearrest power, 85.8% +/- 1.8%, than hearts preserved by static storage, 72.7% +/- 3.0% (p < 0.01). The simulated warm implantation period reduced recovery of power from 68.3% +/- 5.1% to 40.2% +/- 2.0% (p < 0.001). Perfusion during warm implantation improved recovery to 61.8% +/- 3.9% (p < 0.01). In all experiments improved function was accompanied by improved metabolic energy status. CONCLUSIONS: During the implantation period of heart transplantation the donor heart sustains injury that could amount to 50% of total ischemic injury. Continuous perfusion during the cold storage phase and during simulated implantation improves recovery of the donor heart.

Adenine Nucleotides↗

Coenzyme Q10 treatment improves the tolerance of the senescent myocardium to pacing stress in the rat.

OBJECTIVE: In elderly patients the results of cardiac interventions are inferior to those in the young. A possible contributing factor is an age-related reduction in cellular energy transduction during the intervention which may induce aerobic or ischemic stress. To investigate whether coenzyme Q10 (CoQ10) improves the response to aerobic stress, functional recoveries of senescent and young rat hearts after rapid pacing were compared with or without CoQ10. METHODS: Young (4.8 +/- 0.1 months) and senescent (35.3 +/- 0.2 months) rats were given daily intraperitoneal injections of CoQ10 (4 mg/kg) or vehicle for 6 weeks. Their isolated hearts were rapidly paced at 510 beats per minute for 120 min to induce aerobic stress without ischemia. RESULTS: In senescent hearts pre-pacing cardiac work was 74% and oxygen consumption (MVO2) 66% of that in young hearts. CoQ10 treatment abolished these differences. After pacing, the untreated senescent hearts, compared to young, showed reduced recovery of pre-pacing work, (16.8 +/- 4.3 vs. 44.5 +/- 7.4%; P < 0.01). CoQ10 treatment in senescent hearts improved recovery of work, (48.1 +/- 4.1 vs. 16.8 +/- 4.3%; P < 0.0001) and MVO2 (82.1 +/- 2.8 vs. 61.3 +/- 4.0%; P < 0.01) in treated versus untreated hearts respectively. Post-pacing levels of these parameters in CoQ10 treated senescent hearts were as high as in young hearts. CONCLUSIONS: (1) Senescent rat hearts have reduced baseline function and reduced tolerance to aerobic stress compared to young hearts. (2) Pre-treatment with CoQ10 improves baseline function of the senescent myocardium and its tolerance to aerobic stress.

Adenosine Diphosphate↗

Aspartate improves recovery of the recently infarcted rat heart after cardioplegic arrest.

BACKGROUND: We have previously shown that aspartate improves the tolerance of normal hearts to cardioplegia. The aim of this study was to investigate whether aspartate is also beneficial in the recently infarcted heart. METHODS: Myocardial infarction was produced in rats by left coronary artery ligation. Twenty hours later their hearts were perfused on an isolated working rat heart apparatus and underwent cardioplegic arrest for 30 min at 37 degrees C with or without 20 mM aspartate in the cardioplegic solution (n = 11 per group). Functional recovery and myocardial high energy phosphate levels were measured at the end of arrest and after 30 min of reperfusion. RESULTS: There was no difference in pre-arrest pump function between the untreated and aspartate-treated groups. However, after reperfusion the aspartate group generated more power (3.4 +/- 0.2 mJ/s per g) than the untreated group (2.5 +/- 0.3 mJ/s per g; P < 0.05) such that the percentage recovery of pre-arrest power in the aspartate group (67.7 +/- 3.5%) was greater than in the untreated group (53.6 +/- 4.9%; P < 0.05). The aspartate group also showed increases in aortic flow and myocardial oxygen consumption compared to the untreated group (P < 0.05). There were no between-group differences in high energy phosphate levels at the end of arrest or after reperfusion. CONCLUSION: Aspartate improves functional recovery of the recently infarcted heart during cardioplegic arrest, and therefore has potential as a useful adjunct to myocardial protection in patients with recent myocardial infarction undergoing cardiac surgery.

Animals↗

Mechanism of cardioprotective effect of orotic acid.

The pyrimidine base, orotic acid (OA), markedly improves the function of recently infarcted hearts subjected to global ischemia. The mechanism of cardiac action of OA is unclear, but it has been proposed that OA acts by correcting a relative deficiency of nucleotide precursors required for RNA synthesis in the stressed myocardium or by improving myocardial energy supply. The aim of this study was to investigate the mechanism of action of OA by (1) determining whether a high dose of OA can raise the concentration of pyrimidine metabolites in plasma, liver, and heart; (2) examining the effects of OA on adenine nucleotide (AN) concentrations in normal and infarcted hearts, before and after global ischemia; and (3) determining the effect of uridine, an important metabolite of OA, on myocardial energy metabolism. Three studies were performed: (1) The time course of changes in tissue and plasma concentrations of pyrimidine compounds was examined in unoperated rats after the administration of 100 mg/kg OA. (2) Rats were given OA (30 mg/kg/d) for 2 days after experimental infarction, and tissue and plasma pyrimidine concentrations were examined; the hearts were removed for perfusion in the isolated working rat heart model (37 degrees C), subjected to 30 minutes of global ischemia, and recovery of function was assessed. AN content was assessed in the noninfarcted myocardium before and after ischemia. Isolated hearts were subjected to 30 minutes of hypoxic perfusion and the effect of adding 17 microM uridine to the perfusate was examined. Study 1 showed that OA administration produced an increase in hepatic uridine and cytidine, followed by increased plasma uridine and cytidine (cytidine, +55%, P < 0.001; uridine, +124%, P = 0.011). Myocardial uracil nucleotides increased temporarily after 4 hours (+21%, P < 0.01). In infarcted hearts after 2 days of OA administration, there were no significant changes in myocardial uracil or cytosine nucleotides or total RNA. Infarction significantly reduced functional recovery after global ischemia (sham = 62%; infarct = 26% of preischemic level; P < 0.05). OA improved the recovery of preischemic function by 133% (P < 0.05) in infarcted, but not sham-operated, hearts. Preischemic ATP and total adenine nucleotides (TAN) were decreased in the surviving myocardium of infarcted hearts (ATP reduced from 21.7 +/- 0.8 to 14.7 +/- 0.7 mumol/g dry wt, P < 0.001; TAN decreased from 30.3 +/- 0.8 to 22.4 +/- 1.1 mumol/g dry wt, P < 0.001). OA treatment prevented these reductions. Study 3 showed that uridine improved myocardial ATP and TAN levels, and decreased purine loss in hypoxic hearts. The increased AN levels were accompanied by evidence of enhancement of anerobic glycolysis. We conclude: (1) That OA acts on the heart via the liver by increasing the availability of plasma uridine and cytidine. (2) Uridine is capable of increasing myocardial ATP production by stimulating anerobic glycolysis. (3) OA treatment improves tolerance to global ischemia in infarcted but not normal hearts by preventing depletion of AN in the surviving myocardium.

Adenine Nucleotides↗

Metabolic supplementation with orotic acid and magnesium orotate.

Orotic acid (OA), a naturally occurring substance, is a key intermediate in the biosynthetic pathway of pyrimidines. Previous investigations in the heart suggest that orotate can protect recently infarcted hearts against a further ischemic stress and may be beneficial in certain types of experimental cardiomyopathy. At the Hamburg symposium on magnesium orotate, a number of studies of this form of metabolic supplementation were presented that indicate orotic acid and its magnesium salt have a modest beneficial effect on the myocardium under conditions of stress ranging from myocardial infarction to severe physical exercise. The following conclusions can be drawn: (1) Orotic acid can improve the energy status of the recently infarcted myocardium (rat hearts). (2) Orotic acid may improve myocardial purine and pyrimidine levels by stimulating hepatic release of uridine into the bloodstream, which in turn augments depleted myocardial pyrimidines and purines (rat heart). (3) Orotic acid improves the tolerance of the recently infarcted heart to global ischemia (rats). (4) Magnesium orotate may reduce the severity of chronic myocardial dysfunction and structural damage in cardiomyopathy (cardiomyopathic hamsters). (5) Magnesium orotate may improve exercise tolerance in patients with coronary artery disease and in trained athletes (humans). (6) Magnesium orotate has only a weak inotropic effect, if any, on normal hearts (rats). (7) Further clinical testing is indicated to determine if the effects described could be of significant clinical benefit in the treatment of heart disease.

Animals↗

Cardioprotection by orotic acid: metabolism and mechanism of action.

The pyrimidine base, orotic acid (OA), improves the function of recently infarcted hearts subjected to global ischemia but its mechanism of action is unclear. Our aims were to examine (i) in normal rats, the effect of OA on pyrimidine levels in plasma, liver and heart; (ii) in rats with normal or infarcted hearts, the effect of OA on adenine nucleotide metabolism and mechanical function, before and after global ischemia. To investigate the metabolism of OA, normal rats received 100 mg/kg OA, and changes in plasma and tissue concentrations of pyrimidines were examined. The effects of OA were also studied in rats receiving OA for 2 days after coronary ligation or sham operations, and plasma and tissue pyrimidine concentrations examined. Their hearts were isolated and perfused, then subjected to 30 min of global ischemia. Mechanical function and adenine nucleotide content were assessed pre- and post-ischemia. In normal, unoperated rats, administration of 100 mg/kg OA significantly increased hepatic uracil and cytosine nucleotide concentrations, then increased plasma uridine (+124%) and cytidine (+55%), and transiently increased myocardial uracil nucleotides (+21%). Infarction significantly reduced recovery of cardiac work after global ischemia (sham=62%; infarct=26%; P<0.05), and OA treatment in infarcted hearts increased post-ischemic work by 192% (P<0.05), but not in shams. Pre-ischemic ATP was reduced in the surviving myocardium of infarcted hearts from 21.7+/-0.8 to 14.7+/-0. 7 micromol/g dry weight (P<0.001) and total adenine nucleotides (TAN) from 30.3+/-0.8 to 22.4+/-1.1 micromol/g dry weight (P<0.001). OA treatment prevented these reductions in infarcted hearts (ATP 20. 7+/-0.5; TAN, 29.1+/-0.6 micromol/g dry weight). We conclude that OA protects the infarcted heart against global ischemia by enhancing hepatic release of pyrimidine nucleosides into the plasma, which then prevent depletion of adenine nucleotides in the surviving myocardium.

Adenine Nucleotides↗

Minimally invasive right heart operations: techniques for bicaval occlusion and cardioplegia.

Peripheral cardiopulmonary bypass with cardioplegia has facilitated minimally invasive coronary artery bypass grafting and mitral valve replacement. The cardiopulmonary bypass system was modified to allow bicaval occlusion for right heart operations. In 4 canine studies, three variants of bicaval cannulation techniques were successfully used for atrial septal defect repair via a right minithoracotomy.

Animals↗

Mitral valve replacement via a right mini-thoracotomy in the dog: use of carbon dioxide to reduce intracardiac air.

OBJECTIVE: To develop a clinically applicable method of minimally invasive mitral valve replacement (MVR) with cardioplegia, and examine the ability of carbon dioxide (CO2) to improve de-airing. METHODS: MVR was performed via a 5 x 3-cm right lateral minithoracotomy in eight greyhounds. Peripheral cardiopulmonary bypass and an ascending aortic balloon catheter (endoaortic clamp) were used for cardioplegia and aortic root venting. The endoaortic clamp was inflated in the ascending aorta under fluoroscopy and cardioplegic solution was infused. In four dogs, CO2 at 2 l/min was used to displace air in the chest. A left atriotomy was made, the valve exposed and a mechanical valve implanted. After left atrial closure, retained intracardiac gas was aspirated from the aortic root and collected in a bubble-trap. The endoclamp was deflated and the animal weaned from bypass. RESULTS: A satisfactory MVR was performed in all cases. The clamp time was 64 +/- 13 min and all dogs were stable post-bypass. In the CO2 group, intrathoracic CO2 was maintained above 86% and 0.1 +/- 0.1 ml of gas was collected, compared to 1.3 +/- 0.8 ml in the non-CO2 group (P < 0.05). CONCLUSIONS: Femoro-femoral bypass and use of the endoaortic clamp allow a safe and efficacious MVR via a right minithoracotomy in the dog. A high intrathoracic CO2 concentration reduces the amount of retained intracardiac gas.

Animals↗

Antiischemic and antiarrhythmic activities of some novel alinidine analogs in the rat heart.

The antiischemic and antiarrhythmic effects of alinidine and a number of novel alinidine analogs were examined by using perfused rat-heart models. In the isolated working rat heart, the alinidine analog TH91:21 (10 microM; a butyl derivative) significantly increased the postischemic recovery of the heart in terms of both power and efficiency when compared with the control group. In the in situ perfused heart model, this same compound, along with TH91:22 (10 microM; a pentyl derivative) also significantly reduced the severity of both ischemia- and reperfusion-induced arrhythmias in both paced and unpaced hearts. Thus this study is the first to demonstrate the potent antiarrhythmic efficacy of two novel alinidine analogs TH91:21 and TH91:22, with TH91:21 also demonstrated to be a potent antiischemic agent in the isolated working rat heart. Although the mode of action of these compounds remains unclear, results from this study suggest that it is not simply a result of bradycardia or blockade of KATP channels, two actions these compounds possess. These compounds thus possess a novel and beneficial pharmacologic profile worthy of further study.

Animals↗