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W Klaus

Publications and source records attributed to W Klaus.

At least 55 records · Page 3Linked to original sources

Electrocardiological profile and proarrhythmic effects of quinidine, verapamil and their combination: a mapping study.

Quinidine and verapamil are widely used as antiarrhythmic agents and their combination is often used in the treatment of supraventricular tachycardia. This study was undertaken to clarify, whether these drugs exert proarrhythmic effects on the ventricles in therapeutic concentrations and whether possible arrhythmogenic effects might be enhanced by combination. Isolated rabbit hearts perfused according to the Langendorff technique were treated with increasing concentrations of quinidine (0.05 to 3.5 microM) or verapamil (5 to 50 nM) or of their combination (70:1 or 10:1, quinidine:verapamil) corresponding to common low, medium and high free therapeutic concentrations. The epicardial activation process was measured using a computer assisted mapping system for unipolar multichannel recording (256 channels simultaneously). Both substances prolonged the atrioventricular conduction time PQ. This effect was even more pronounced if the 70:1 combination was administered. The activation pattern was altered by both drugs and their combination to the same extent as became obvious from analysis of local activation vectors and of localisation of breakthroughpoints of epicardial activation for heart beats under control conditions and under drug treatment. The epicardial potential durations were prolonged by quinidine and to the same degree by the combinations, but not by verapamil alone. The total activation time was prolonged under the influence of quinidine and if the 70:1 combination was given. Both substances exerted a negative inotropic effect which was enhanced in an additive manner if both drugs were combined. In parallel the coronary flow was diminished.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of different inotropes with antioxidant properties on acute regional myocardial ischemia in isolated rabbit hearts.

1. The antiischemic properties of the flavonoids acetylvitexin-rhamnoside (AVR) and luteolin-7-glucoside-(LUT), combining phosphodiesterase (PDE)-inhibitory and antioxidant properties, were studied in comparison to amrinone (AMR) or superoxide dismutase (SOD). The effects of the new dihydropyridine-type calcium-agonist Bay T 5006 were studied in comparison to Bay K 8644. 2. In isolated Langendorff-rabbit hearts perfused at constant pressure, acute regional ischemia (MI) was induced by coronary artery occlusion (CAO) and quantitated from epicardial NADH-fluorescence photography. Drugs were applied either before or after CAO (pre-treatment or treatment) to permit distinguishing the influence of functional and direct cytoprotective actions in the poorly collateralized rabbit hearts. 3. SOD did not affect left ventricular pressure (LVP) or coronary flow (CF) and reduced MI only if applied before CAO. LVP and CF were enhanced by LUT or AMR but not by AVR. MI was reduced to a similar extent in hearts treated with either drug. Cardioprotection by LUT was not improved by starting drug application before CAO. 4. Bay K 8644 reduced LVP and particularly CF, whereas Bay T 5006 did not affect functional parameters. MI was enlarged by Bay K 8644 and remained unaffected by treatment or pretreatment with Bay T 5006. 5. AMR, LUT and AVR possess antiischemic properties related to an improvement of myocardial perfusion. Although oxygen free radicals contribute to ischemic tissue injury, as shown by the cardioprotective effectiveness of SOD, antioxidant properties of the flavonoids LUT and AVR do not seem to be relevant for the antiischemic effects. Our findings also give no evidence for antioxidant properties of dihydropyridines relevant for cardioprotection.

Animals↗

Ocular concentrations of mitomycin C after extraocular application in rabbits.

To determine the intraocular concentrations of Mitomycin C (MMC) after extraocular application, we used pigmented rabbits and placed sponges soaked with MMC under the conjunctiva on top of the intact episclera. First, we soaked the sponges with volumes ranging from 0.025 ml to 0.3 ml of the solution containing MMC and sampled aqueous humour after 30 minutes. The concentrations, as determined by high performance liquid chromatography, did not correlate to the amount of MMC given. Then, we soaked the sponges with different concentrations of MMC with a volume of 0.1 ml and sampled aqueous humour, vitreous humour and sclera after 60 minutes. The concentrations of MMC were higher in the vitreous than in the aqueous, and, relative to these values, very high in the sclera. These results indicate that the amount of MMC reaching the interior of the eye after standard extraocular application may be highly variable, and that the concentrations of MMC in the sclera and formed vitreous can be considerably higher than in the aqueous humour.

Administration, Topical↗

Actions of 1,4-dihydropyridines in isolated mesenteric vascular beds.

Recent studies indicate that the vasorelaxation induced by nitrendipine may be mediated partially by increased release of nitric oxide (NO). To study this effect in more detail and to examine the vasodilating effect of other 1,4-dihydropyridines (1,4-DHP) with regard to a possible involvement of NO, we investigated the effects of nitrendipine, nifedipine, nisoldipine, and nimodipine on isolated mesenteric vascular bed an the influence of L-NG-nitroarginine (L-NNA) on 1,4-DHP-induced vasorelaxation. Perfusion with these 1,4-DHP resulted in a concentration-dependent increase in global flow and vascular diameter in all vessel branches. Nifedipine exhibited a more pronounced effect on G4 vessels, whereas the actions of the other 1,4-DHP on the investigated vascular tree were more homogeneous. The dilating and flow increasing effects of nitrendipine and nifedipine could be significantly antagonized by treatment with LNNA. The vasodilating effects of nisoldipine and nimodipine could also be antagonized with L-NNA. We conclude that NO release plays an additional role in the relaxation of small resistance vessels by 1,4-DHP.

Animals↗

Functional effects of adrenochrome in isolated rabbit heart.

The cardiotoxic effects of catecholamines have been explained in part by the generation of oxygen free radicals and aminochromes. The role of aminochromes remains however controversial. It has previously been demonstrated that adrenochrome, an oxidation product of adrenaline, shows cardiotoxic properties only at very high concentrations, and it has been suggested that the deleterious effects observed may be caused by a worsening in myocardial perfusion. The functional properties of adrenochrome were examined in isolated spontaneously-beating rabbit hearts with depleted catecholamine stores (reserpin 7.0 mg/kg 16-24 hr before preparation, Langendorff, constant pressure: 70 cm H2O, Tyrode solution, [Ca++]sol. 1.8 mmol/l, 37 degrees). Cumulative concentration-response curves show an adrenochrome-concentration-dependent increase of contractility (left ventricular pressure, EC50 = 3.6 x 10(-6) M; +dp/dtmax, EC50 = 1.6 x 10(-5) M), whereas myocardial relaxation was impaired (-dp/dtmax, EC50 = 2.6 x 10(-5) M; -dp/dtmax/+dp/dtmax = 0.68 at 10(-4) M). Heart-rate was only slightly enhanced (+10% at 10(-4) M), and the coronary flow was markedly influenced only by adrenochrome 10(-4) M (-17%). The relative coronary flow (= global coronary flow/pressure-rate product) was concentration-dependently reduced (EC50 = 10(-5) M; -49% at 10(-4) M). We conclude that in isolated rabbit hearts, adrenochrome has a positive inotropic action but impairs myocardial relaxation, and coronary constrictor activity prevents an increase of myocardial oxygen supply, thus worsening myocardial oxygen-demand/supply balance.

Adrenochrome↗

Comparison of the cardioprotective efficacy of superoxide dismutase in a single and a repetitive coronary occlusion model in rabbit hearts.

The effects of exogenous superoxide dismutase (SOD) on acute myocardial ischemia (MI) was investigated in isolated electrically-driven rabbit hearts (Langendorff, constant pressure: 70 cm H2O, Tyrode solution, Ca++ 1.8 mmol/l, 37 degrees C). Acute regional ischemia (MI) was induced by occlusion of a coronary artery branch (CAO) and quantitated from epicardial NADH-fluorescence photography. SOD (48 U/ml) was applied either 30 min after CAO in a single coronary occlusion model (treatment) or 30 min before the 2nd CAO in a repetitive coronary occlusion model (pre-treatment). SOD had no significant influence on the left ventricular pressure or the global coronary flow (p > 0.05). MI was significantly diminished in hearts pre-treated with SOD before CAO (-25%)(p < 0.05), but remained unaffected when SOD was applied after CAO (p > 0.05). The results suggest that superoxide anion radicals contribute to ischemic tissue injury. SOD shows cardioprotective properties only if present in the ischemic zone, requiring the application of SOD before CAO in poorly collateralised rabbit hearts.

Animals↗

[Pharmacologic action profile of crataegus extract in comparison to epinephrine, amirinone, milrinone and digoxin in the isolated perfused guinea pig heart].

Using isolated perfused guinea pig hearts experiments were performed to investigate the influence of crataegus extract LI 132 (Faros 300, CRA) in comparison to other inotropic drugs--epinephrine (adrenaline, ADR), amrinone (AM), milrinone (MIL) and digoxin (DIG)--on different functional parameters, with special emphasis on the effective refractory period of the myocardium. The simultaneous registration of appropriate parameters allowed to relate the effect on the refractory period to the inotropic, chronotropic, dromotropic and coronary actions of these compounds at each concentration level. All substances--with the exception of CRA--shortened the effective refractory period concentration-dependently besides their known other functional effects (max.: 1 x 10(-5) mol/l ADR by 38%, 7 x 10(-7) mol/l DIG by 26%, 1 x 10(-4) mol/l MIL by 13% and 5 x 10(-4) mol/l AM by 1.6%). Related to the positive inotropy the shortening was most effective under MIL (1.32 ms/mN), followed by AM (0.65 ms/mN), DIG (0.40 ms/mN) and ADR (0.28 ms/mN). On the contrary, CRA produced a prolongation of the effective refractory period by maximally 10% resp. by 2.54 ms/mN. Thus, the pharmacologic profile of CRA differs from that of other inotropic compounds mainly in this parameter (with potentially reduced arrhythmogenic risk).

Amrinone↗

The contribution of neutrophils to reperfusion arrhythmias and a possible role for antiadhesive pharmacological substances.

OBJECTIVES: It is known that neutrophilic leukocytes contribute to cellular damage in the course of cardiac ischemia/reperfusion. A role in arrhythmogenesis, although controversial, has been ascribed in some studies to the leukocytes, but investigations evaluating possible beneficial effects of inhibitors of neutrophil adhesion or transmigration are still missing. METHODS: Isolated spontaneously beating rabbit hearts, perfused with saline solution at constant pressure according to the Langendorff technique, were treated with 15 min infusion of autologous neutrophils. 10 min after the start of this infusion the hearts were submitted to coronary occlusion (LAD) for 30 min followed by 30 min reperfusion. Four experimental groups were investigated: (1) saline-perfused control hearts, (2) leukocyte-perfused hearts, (3) leukocyte-perfused hearts treated with RGDS peptide, (4) leukocyte-perfused hearts treated with chondroitin sulfate C. In all experiments epicardial potential mapping was carried out (256 unipolar leads). At the end of each experiment the hearts were prepared for histology and after staining leukocyte accumulation in the ischemic zone, in the border zone and in the non-ischemic area was evaluated. RESULTS: In leukocyte-perfused hearts submitted to ischemia/reperfusion we found a somewhat enhanced arrhythmogenesis, enhanced ST-segment deviation, and a 2-3-fold increase in leukocyte accumulation in the ischemic and border zone as compared to the non-ischemic tissue as well as increased dispersion of epicardial potential duration especially during reperfusion. These changes and the leukocyte accumulation could be suppressed by treatment with RGDS and to a somewhat lesser extent with chondroitin sulfate C. In addition, arrhythmogenesis could be reduced but not completely suppressed by that treatment. CONCLUSIONS: From these results we conclude that: (a) leukocytes exert an aggravating effect in arrhythmogenesis during ischemia/reperfusion, (b) the arrhythmogenic substrate for this effect may consist of an enhanced dispersion of potential duration and (c) that inhibition of leukocyte accumulation can at least partially reduce arrhythmogenesis and may be of therapeutic interest as an additional treatment.

Animals↗

Frequency-dependent effects of propafenone decrease with duration of ventricular tachycardia in isolated guinea pig hearts.

Na+ channel blockers terminate tachyarrhythmias primarily by rate-dependent effects. The purpose of this study was to investigate the use-dependent effects of propafenone in isolated guinea pig and rabbit hearts perfused by the method of Langendorff. In the presence of propafenone (0.3 microM) during ventricular pacing, an abrupt decrease of the pacing cycle length (220 ms to 120 ms) slowed the intraventricular conduction with a transient peak QRS prolongation of 33.8 +/- 2.0% after 5.7 +/- 0.5 s (P < 0.01) which subsequently decreased to a steady state of 14.0 +/- 2.5% after 38.0 +/- 5.5 s (mean +/- S.E.M.; n = 10; P < 0.01). The ventricular effective refractory period was significantly prolonged if evaluated by a train of 10 basic stimuli (S1) (interstimulus interval: 120 ms) followed by a premature stimulus (S2). However, when the train of basic stimuli was increased the effective refractory period diminished progressively. An initial increase in total activation time vanished with continued rapid ventricular stimulation. These effects may be explained by a shortening of the action potential during high rates resulting in a decreased binding of propafenone to Na+ channels.

Action Potentials↗

Evidence for norepinephrine cardiotoxicity mediated by superoxide anion radicals in isolated rabbit hearts.

UNLABELLED: Catecholamines have been demonstrated to be cardiotoxic. Besides hemodynamic alterations, oxygen free radicals generated by the auto-oxidation of catecholamines might contribute to their deleterious effects. We examined the influence of exogenous norepinephrine (NE), after inhibiting functional alterations by alpha and beta-adrenoceptor blockade, on acute regional ischemia (MI). METHOD: We used isolated electrically-driven rabbit hearts with depleted catecholamine stores (reserpine 7.0 mg/kg i.p. 16-24 h before preparation, Langendorff, constant pressure: 70 cm H2O, Tyrode solution, Ca2+ 1.8 mmol/l, 37 degrees C, 185-200 beats/min). Repetitive MI, separated by a reperfusion period of 50 min, was induced by coronary artery branch ligature and quantitated from epicardial NADH-fluorescence photography. Starting after a reperfusion period of 20 min, isolated hearts were treated with NE (10(-6) M), in the presence of propranolol (10(-6) M), phentolamine (10(-6) M) and vitamin C (3 x 10(-8) M) in the perfusion buffer to prevent the functional effects of NE. The influence of the free radical scavenger superoxide dismutase (SOD) (30 U/ml) or captopril (10(-6) M) on MI was also examined. RESULTS: Left ventricular pressure or coronary flow were not significantly affected by either treatment (p > 0.05). Epicardial NADH-fluorescence area and intensity were, however, significantly enhanced by NE (+22%) (P < 0.05), although propranolol, phentolamine and vitamin C had no significant influence on MI (P > 0.05). SOD had no significant effect on MI in control hearts (P > 0.05) but completely prevented MI enlargement by NE (P > 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists↗

A new synthetic antiarrhythmic peptide reduces dispersion of epicardial activation recovery interval and diminishes alterations of epicardial activation patterns induced by regional ischemia. A mapping study.

Common antiarrhythmic agents affect ionic membrane channels and thereby alter cellular electrical activity. Since this accounts for the proarrhythmic effects as well we tried to find new substances with different profiles of actions. A new antiarrhythmic peptide, H2N-Gly-Ala-Gly-4 Hyp-Pro-Tyr-CONH2 (AAP 10), was synthetized using the Fmoc-strategy. This peptide was analyzed for its electrophysiological profile of action in normal isolated rabbit hearts perfused according to the Langendorff technique either under control conditions or after induction of a regional ischemia. For this purpose 256 channel epicardial mapping was employed allowing the determination of the timepoints of activation at each electrode thus identifying the origins of epicardial activation (socalled breakthrough-points, BTP). Epicardial spread of activation was then described mathematically by activation vectors which gave direction and velocity of the epicardial activation wave at each electrode. Single heart beats were analyzed under control conditions and under treatment with AAP 10 or under regional ischemia with or without AAP 10-pretreatment (10(-8) mol/l). We calculated the percentage of similar vectors (VEC) with unaltered direction (deviation < or = 5 degrees) and the percentage of identical breakthroughpoints (deviation < or = 1 mm) compared to control conditions. In addition, apparent epicardial velocities, total activation time of a given region and activation-recovery interval (ARI) as well as dispersion of ARI (i.e. standard deviation of ARI) and distribution of ARI were analyzed. Under control conditions treatment with AAP 10 (10(-10) to 3 x 10(-7) mol/l) led to a significant decrease in ARI-dispersion without alteration of any of the other parameters under investigation. Left ventricular regional ischemia resulted in a marked alteration of the activation patterns (a significant decrease in vectorfield- and breakthroughpoint-similarity) which could be significantly inhibited by pretreatment with AAP 10. In addition, we found that AAP 10 depressed the increase in ARI-dispersion during the first minutes of ischemia and accelerated normalization of ARI-dispersion during reperfusion. In additional experiments, it could be shown that AAP 10 did not alter action potential duration, maximum dU/dt, amplitude or resting membrane potential of isolated guinea pig muscles using a common intracellular action potential recording technique.(ABSTRACT TRUNCATED AT 400 WORDS)

Action Potentials↗

Cardiotoxicity of adrenochrome in isolated rabbit hearts assessed by epicardial NADH fluorescence.

Noradrenaline in a micromolar concentration has recently been shown to contribute to ischemic tissue injury by direct cardiotoxic effects independent of functional alterations. Oxygen free radicals, generated during the auto-oxidation of catecholamines, are important mediators of catecholamine cardiotoxicity. However, the role of the oxidative products (aminochromes) is still unclear. We examined the effects of adrenochrome on functional parameters and on regional myocardial ischemia (MI) in isolated electrically-driven rabbit hearts with depleted catecholamine stores (reserpine 7.0 mg/kg i.p. 16-24 h before preparation, Langendorff, constant pressure: 70 cm H2O, Tyrode solution, Ca++ 1.8 mmol/l, 37 degrees C). Repetitive MI, separated by a reperfusion period of 50 min, was induced by coronary artery branch ligature, and MI was quantitated from epicardial NADH fluorescence photography. Adrenochrome-treatment (10(-6) M or 10(-4) M) was started after a reperfusion period of 20 min. The left ventricular pressure (LVP) was significantly enhanced by adrenochrome (p < 0.05), but it fell thereafter to below its initial value in hearts treated with adrenochrome 10(-4) M. The global coronary flow (CF) was not affected by adrenochrome 10(-6) M (P > 0.05), but it was significantly decreased by adrenochrome 10(-4) M (P < 0.05). The relative CF (= CF/LVP x heart-rate) was numerically decreased by adrenochrome 10(-6) M (p > 0.05) and more markedly by adrenochrome 10(-4) M (p < 0.05). Whereas epicardial NADH fluorescence was similar after repetitive coronary artery occlusions in controls and in hearts treated with adrenochrome 10(-6) M (p > 0.05), it was significantly enhanced by adrenochrome 10(-4) M (p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenochrome↗

Functional and antiischemic effects of luteolin-7-glucoside in isolated rabbit hearts.

1. The functional effects of the flavonoid luteolin-7-glucoside (LUT) were investigated in Langendorff-rabbit hearts perfused at constant pressure. Repetitive myocardial ischemia was induced by coronary artery ligature and quantified from NADH-fluorescence photography. 2. LUT significantly enhanced left ventricular pressure and the global and relative coronary flow (= global coronary flow/pressure-rate product). 3. LUT significantly diminished epicardial NADH-fluorescence area and intensity. 4. LUT is an inodilator possessing cardioprotective properties. These might be related to an improvement of myocardial perfusion and/or to free radical scavenging properties.

Animals↗

Comparative effects of the dihydropyridine-type calcium-agonists (-)-S-Bay K 8644, (+/-)-Bay-W 5035 and (+/-)-Bay-T 5006 on human platelet aggregability.

1. Human platelet aggregation induced by collagen is concentration-dependently inhibited by dihydropyridine (DHP)-type calcium(Ca)-agonists. 2. There was no significant difference between the maximal anti-aggregatory effects or the anti-aggregatory potencies of (-)-S-Bay-K 8644 (EC50: 5.3 +/- 1.5 x 10(-5) M), (+/-)-Bay-W 5035 (EC50: 14.9 +/- 8.8 x 10(-5) M) or (+/-)-Bay-T 5006 (EC50: 2.7 +/- 1.9 x 10(-5) M) (P > 0.05). 3. Antiaggregatory effects of DHP-type Ca-agonists seem to be independent of Ca-channel activation.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

A quantitative comparison of functional and anti-ischaemic effects of the phosphodiesterase-inhibitors, amrinone, milrinone and levosimendan in rabbit isolated hearts.

1. The functional and anti-ischaemic effects of the phosphodiesterase (PDE)-inhibitors, amrinone, milrinone and levosimendan, a new agent combining PDE-inhibitory with calcium-sensitizing properties, were investigated in rabbit isolated hearts (Langendorff, constant pressure: 70 cmH2O, Tyrode solution, Ca2+ 1.8 mmol l-1, 37 degrees C). Anti-ischaemic effects were studied in electrically-driven hearts (200 beats min-1). Acute regional ischaemia was induced by ligature of a branch of the circumflex coronary artery and quantified from epicardial NADH-fluorescence photography. 2. Cumulative concentration-response curves in spontaneously beating hearts in the presence of isoprenaline (10(-10) M), showed a higher inotropic and coronary vasodilator potency for levosimendan (EC50: 7 x 10(-7) M) compared to milrinone (EC50: 7.7 x 10(-6) M) or amrinone (EC50: 2 x 10(-5) M). Although the maximal coronary dilator activity was similar for the three agents, the maximal inotropic and chronotropic effects were lower for levosimendan than for amrinone or milrinone (P < 0.05). 3. In regionally ischaemic hearts, milrinone (10(-5) M) or levosimendan (5 x 10(-6) M) similarly enhanced the left ventricular pressure (+15-20%) (P < 0.05) and the global coronary flow (+40-50%) (P < 0.05). The epicardial NADH-fluorescence area was significantly diminished by milrinone or levosimendan (-20-30%) (P < 0.05) and there was no significant difference between the anti-ischaemic effects of either agent (P > 0.05). 4. It is concluded that amrinone and milrinone possess similar functional profiles in rabbit isolated hearts and a higher inotropic and chronotropic efficacy than levosimendan. At functionally equieffective concentrations, milrinone and levosimendan show similar anti-ischaemic effects, related to an improvement of myocardial perfusion. The calcium-sensitizing properties seem not to be relevant for cardioprotection by levosimendan at the concentration used.

Amrinone↗

The calcium modulator nifedipine exerts its antiaggregatory property via a nitric oxide mediated process.

The in vitro effect of nifedipine, a calcium channel blocker of the dihydropyridine (DHP) type, on platelet aggregation was reinvestigated considering especially the capability of platelets to form endogenous nitric oxide (NO). We studied the dose-dependent antiaggregatory property of nifedipine in porcine platelet rich plasma. Aggregation was stimulated by collagen (7.5 micrograms/ml). Nifedipine inhibited collagen-induced platelet aggregation with an IC50 of 380 nmol/l. The antiaggregatory effect of nifedipine could be significantly diminished by N-nitro-L-arginine (NNA) in a concentration dependent manner, whereas oxy haemoglobin (4 microM), a NO scavenger, totally abolished the effect of nifedipine. L-Arginine, the precursor of NO, dose-dependently inhibited the collagen-induced platelet aggregation but did not potentiate the effects of nifedipine. Therefore, we propose that in platelet rich plasma the nifedipine induced inhibition of platelet aggregation is mediated by NO, a potent endogenous inhibitor of aggregation. We could confirm this hypothesis by measuring NO directly with a specific electrode.

Animals↗

Cardioprotection by ramiprilat in isolated rabbit hearts.

The anti-ischemic properties of the ACE inhibitor ramiprilat (ram) were investigated in electrically driven Langendorff hearts from rabbits whose endogenous angiotensin-I content has been previously shown to be very low (constant pressure: 70 cm H2O, Tyrode solution, Ca2+ 1.8 mmol/l). Cumulative concentration-response curves showed that the reduction in global coronary flow (CF) by exogenous angiotensin-I was concentration dependently inhibited by ram (P < 0.05). Myocardial ischemia (MI) was induced by occlusion of a left coronary artery branch and MI was quantified by NADH surface fluorescence photography. MI was significantly enlarged (+23%) (P < 0.05) by exogenous angiotensin-I (6 x 10(-9) mol/l). Addition of ram (10(-8) mol/l) to the perfusion buffer simultaneously with angiotensin-I, completely prevented the reduction of CF by angiotensin-I (P > 0.05) and significantly diminished MI even below control values (-25%) (P < 0.05). In the absence of exogenous angiotensin-I, ram alone (10(-8) mol/l) did not significantly enhance CF (P > 0.05), supporting findings demonstrating a very low endogenous angiotensin-I content in isolated rabbit hearts. However, ram alone (10(-8) mol/l) significantly diminished MI (-24%) (P < 0.05). We conclude that ram does possess direct cardioprotective properties that are independent of the inhibition of angiotensin-II generation but that may be related to potentiation of the effects of bradykinin.

Angiotensin I↗