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Biomedical subjects

L Hittinger

Publications and source records attributed to L Hittinger.

At least 73 records · Page 4Linked to original sources

Mechanisms of subendocardial dysfunction in response to exercise in dogs with severe left ventricular hypertrophy.

The effects of exercise on regional myocardial blood flow and function were examined in the presence and absence of beta-adrenergic receptor blockade in 10 adult conscious dogs with severe left ventricular (LV) hypertrophy induced by aortic banding in puppies, which increased the LV weight/body weight ratio by 87%. Exercise at the most intense level studied increased LV systolic (+87 +/- 8 mm Hg) and end-diastolic (+28 +/- 5 mm Hg) pressures, systolic (+85 +/- 12 g/cm2) and diastolic (+49 +/- 11 g/cm2) wall stresses, and subepicardial wall thickening (+0.18 +/- 0.05 mm) but reduced subendocardial wall thickening (-0.45 +/- 0.12 mm) and full wall thickening (-0.42 +/- 0.13 mm). This was associated with a fall in the subendocardial/subepicardial (endo/epi) blood flow ratio to 0.87 +/- 0.06 from 1.24 +/- 0.08. Subendocardial dysfunction persisted during recovery, at a time when transmural blood flow distribution returned to baseline, suggesting myocardial stunning. At the least intense level of exercise studied, the endo/epi blood flow ratio did not fall (1.27 +/- 0.14), but increases in heart rate (+73 +/- 8 beats per minute) and LV systolic (+35 +/- 8 g/cm2) and diastolic (+27 +/- 3 g/cm2) wall stresses were observed, and subendocardial wall thickening fell significantly (-0.21 +/- 0.08 mm, p less than 0.05). With anticipation of exercise, subendocardial wall thickening was not changed. However, subendocardial dysfunction was even evident after 10 beats, i.e., the first 3 seconds of exercise, at a time when LV pressures and stresses had not increased. After beta-adrenergic receptor blockade with propranolol, the most intense level of exercise was associated with lesser increases in systolic and diastolic LV wall stresses, heart rate, and LV dP/dt, and the endo/epi blood flow ratio was no longer reduced below unity (1.17 +/- 0.09). In addition, there were no decreases in subendocardial or full wall thickening, and myocardial stunning was no longer observed. Thus, the subendocardial hypoperfusion and depression in subendocardial wall thickening observed during exercise in dogs with LV hypertrophy was prevented by pretreatment with beta-adrenergic receptor blockade. Furthermore, the subendocardial dysfunction occurred rapidly, before alterations in LV systolic or diastolic wall stress or an alteration in the endo/epi blood flow ratio.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenergic beta-Antagonists↗

Potassium channel openers dilate large epicardial coronary arteries in conscious dogs by an indirect, endothelium-dependent mechanism.

Cromakalim and pinacidil, two potassium channel openers, dilate both large and small coronary arteries in conscious dogs. Because flow-mediated dilation of large arteries is endothelium-dependent, the consequences of in vivo endothelium removal (balloon denudation) on the response of large epicardial coronary arteries to cromakalim (10 micrograms/kg) and pinacidil (30 micrograms/kg) were investigated in six dogs chronically instrumented for the measurement of arterial pressure, left circumflex coronary artery diameter and coronary blood flow. Endothelium removal abolished the dilation of large coronary arteries induced by acetylcholine (endothelium-dependent dilation) and reactive hyperemia (flow-mediated dilation), but only slightly reduced (-18%) that induced by nitroglycerin. Before endothelium removal, both cromakalim and pinacidil induced a significant decrease in coronary resistance (-71 +/- 2 and -63 +/- 2%, respectively) and a significant increase in coronary diameter (8.5 +/- 1.3 and 6.7 +/- 0.9%). After endothelium removal, the decreases in coronary resistance were unaffected, but the increases in coronary diameter were reduced by 93 and 98% as compared to predenudation responses with cromakalim and pinacidil, respectively (both P < .01). In contrast, in vitro studies performed in isolated large epicardial coronary arteries obtained from five additional dogs showed that cromakalim evoked relaxations that were not affected by prior in vivo endothelium removal. Thus, despite the presence of potassium channels in isolated denuded large coronary arteries, our data demonstrate that cromakalim- and pinacidil-induced dilation of large arteries in vivo is an indirect, flow-mediated effect which is entirely endothelium-dependent.

Acetylcholine↗

[Systemic and coronary hemodynamic effects of inhibition of nitrogen monoxide synthesis in conscious dogs].

Fourteen mongrel dogs were chronically instrumented on the circumflex coronary artery for measurement of coronary diameter (CD; Piezoelectric crystals) and coronary blood flow (CBF: Doppler flow probe). Coronary resistance (CR) was calculated as mean arterial blood pressure (MAP)/CBF. Systemic and coronary effects of three intravenous doses of NG-nitro-L-arginine (L-NAME: 0.1; 0.3; 1 mg/kg) were recorded (n = 5). Systemic and coronary effects of two vasodilators, acetylcholine (ACH) (endothelium-dependent: 0.3 micrograms/kg) and nitroglycerin (NTG) (endothelium-independent: 1 microgram/kg) were compared before and after L-NAME (1 mg/kg) (n = 6). Finally, the effects of L-NAME (1 mg/kg) were compared one week before and three days after denudation (balloon catheter) of the circumflex coronary artery (2 cm up and downstream from the crystals attachment site). All experiments were performed in conscious dogs. L-NAME induced a dose-dependent constriction of large epicardial coronary arteries [-1.5 +/- 0.5% from 3.1 +/- 0.3 mm, p < 0.05; -4.0 +/- 0.7% from 3.2 mm, p < 0.001; -5.3 +/- 1.2% from 3.0 mm, p < 0.01; respectively]. L-NAME 0.3 and 1 mg/kg induced a significant increase in MAP [+12.5 +/- 3.0% from 90 +/- 4 mmHg, p < 0.01; +11.3 +/- 3.5% from 96 +/- 7 mmHg, p < 0.05; respectively] and CR [+18.0 +/- 8.3% from 9.8 +/- 3.0 mmHg/cm.s, p < 0.01; +18.7 +/- 8.2% from 10.4 +/- 3.0 mmHg/cm.s, p < 0.01; respectively] with a significant bradycardia, but CBF was not modified. Effects of ACH were unchanged after L-NAME.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

[Coronary vascular reserve in heart transplantation. Normalization after therapy for rejection].

Acute rejection is associated with severe impairment of coronary reserve in heart transplants. To evaluate the effects of rejection therapy, coronary reserve was assessed in 6 patients before and after treatment of an acute episode of rejection. Coronary reserve was significantly enhanced after rejection therapy (4.7 +/- 0.8, vs 2.3 +/- 0.5, P less than 0.001) and was not significantly different from that of transplanted patients without rejection (5.4 +/- 0.8). This study provides evidence that alterations of coronary reserve due to acute rejection are reversible after treatment of the rejection episode.

Acute Disease↗

[Neuroendocrine adaptations in chronic congestive heart failure].

Chronic congestive heart failure is typically accompanied by an abnormal production of vasoconstrictor antinatriuretic hormones and vasodilator natriuretic hormones. Decompensation occurs when the former prevail over the latter. These neuroendocrine abnormalities are increasingly taken into account to determine the prognosis and to decide on the best therapeutic approach in individual patients with chronic heart failure.

Adaptation, Physiological↗

Hemodynamic response to intracoronary infusion of atrial natriuretic factor in patients with normal or altered left ventricular function.

To assess the effects of atrial natriuretic factor (ANF) on cardiac function, synthetic human ANF was infused directly into the left main coronary artery of eight patients with congestive heart failure (CHF) and six subjects with normal left ventricular (LV) function (controls) who underwent cardiac catheterization. ANF infusion at the incremental rates of 60, 125, 400, and 800 ng/min induced a dose-related increase in plasma ANF concentrations in the coronary sinus, from 1,223 +/- 590 to 3,923 +/- 1,123 pg/ml in patients with CHF (p less than 0.01) and from 1,041 +/- 605 to 2,710 +/- 1,741 pg/ml in controls (p less than 0.01). Peripheral plasma ANF concentrations (femoral artery) increased from 538 +/- 278 to 752 +/- 262 pg/ml (p less than 0.01) in patients with CHF and from 193 +/- 63 to 401 +/- 147 pg/ml (p less than 0.01) in controls. The increase in peripheral or coronary sinus plasma ANF concentrations did not differ between patients with CHF and controls. At the three lowest ANF infusion rates, cardiac index (CI), systemic vascular resistance (SVR), and LV contractility assessed by peak positive dP/dt remained unchanged both in patients with CHF and in controls. At the highest ANF infusion rate, CI increased from 2.18 +/- 0.53 to 2.54 +/- 0.49 L/min/m2 (p less than 0.01) and SVR decreased from 14.6 +/- 3.6 to 12.8 +/- 4.5 mm Hg.min/L (p less than 0.01) in patients with CHF. There was no associated change in heart rate (HR), mean arterial blood pressure (MAP), cardiac filling pressures, or peak positive dP/dt.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Loading determinants of isovolumic pressure fall in closed-chest dogs.

The respective roles of load level and loading sequence of the left ventricle (LV) are controversial in the in situ heart. They were analyzed under autonomic blockade and sedation in 17 dogs previously instrumented with a pressure micromanometer and ultrasonic crystals measuring LV diameters and wall thickness for computation of LV volume and stress. The time constant of isovolumic pressure fall (T) and end-systolic pressure (ESP) were calculated during the control state, caval occlusion, aortic constriction obtained by inflation of a hydraulic cuff occluder positioned around the aorta, and during the inflation of an intra-aortic balloon. Caval occlusion significantly decreased both ESP (from 124.0 +/- 6.6 to 88.7 +/- 3.7 mmHg; P less than 0.005) and T (from 29.0 +/- 2.2 to 18.8 +/- 2.4 ms; P less than 0.005), which were linearly correlated (mean r = 0.90 +/- 0.03) and inflation of an intra-aortic balloon increased both ESP (from 107.3 +/- 7.1 to 150.6 +/- 10.4 mmHg; P less than 0.005) and T (from 24.6 +/- 2.1 to 32.7 +/- 2.3 ms; P less than 0.005). Both interventions did not modify the loading sequence (analyzed by the evolution of systolic wall stress vs. time). In contrast, aortic constriction delayed to midsystole the time to which wall stress reached its peak and, for matched ESP with intra-aortic balloon inflation, T was not significantly different from control. We conclude that both the level of afterload and the loading sequence of LV are the determinants of T when contractility is not modified.

Animals↗

Inotropic response to norepinephrine is augmented early and maintained late in conscious dogs with perinephritic hypertension.

We studied the inotropic responses to intravenous infusions of norepinephrine in nine conscious chronically instrumented dogs before and early (2-4 weeks) in the development of perinephritic hypertension; seven conscious dogs were studied later (approximately 14 weeks), during a more stable phase of hypertension. perinephritic hypertension was associated with a 24% increase in left ventricular (LV) mass during developing hypertension; no further increase was seen during the stable hypertension phase. LV end-systolic stress was increased early (p less than 0.01) but was normalized later. The LV end-systolic stress-volume relation demonstrated an enhanced contractile response to norepinephrine during developing hypertension, which returned toward control later in the course of stable hypertension. The LV dP/dt responses to norepinephrine (0.4 microgram/kg/min) were significantly greater during developing hypertension (7,509 +/- 337 mm Hg/sec, p less than 0.05) compared with the control period (4,737 +/- 286 mm Hg/sec) and returned toward the control value during stable hypertension (5,168 +/- 465 mm Hg/sec). The enhanced inotropic responses to norepinephrine in developing hypertension were preserved in the presence of ganglionic blockade, suggesting that the augmentation was not mediated via reflex mechanisms. These physiological responses were associated with an increase in beta-adrenergic receptor density, but no significant change in basal or maximal adenylate cyclase stimulation occurred during developing hypertension. Thus, in contrast to prior studies in anesthetized animals, the inotropic response to beta-adrenergic stimulation is not depressed in conscious dogs but is enhanced selectively during the development of hypertension and maintained during stable hypertension.

Animals↗

Changes in diastolic cardiac function in developing and stable perinephritic hypertension in conscious dogs.

The effects of developing perinephritic hypertension (2-3 weeks) and a more stable period of perinephritic hypertension (approximately 14 weeks) were examined on indexes of left ventricular (LV) diastolic function in conscious, chronically instrumented dogs. The complete period of diastole was studied using indexes of isovolumic relaxation (tau), early filling (LV +dD/dt), and stiffness (myocardial stiffness and chamber stress/diameter ratio). During developing hypertension, increased LV end-diastolic pressure, LV end-diastolic stress, peak filling rate, myocardial stiffness, and the stress/diameter ratio increased (p less than 0.05); the time constant tau was not changed. These changes were associated with preserved baseline levels of coronary blood flow (radioactive microspheres) but an impaired coronary vasodilator response to adenosine. Acute administration of phenylephrine in the normotensive dogs caused increases in systolic and diastolic stress and resulted in increases in myocardial stiffness and in the stress/diameter ratio similar to values observed in developing hypertension. During stable hypertension, LV end-diastolic stress, peak filling rate, and both parameters of late-diastolic function (myocardial stiffness and stress/diameter ratio) returned toward control values, but the isovolumic relaxation time constant was increased. Quantitative histological evaluation revealed no increase in stainable connective tissue in dogs with stable hypertension compared with control dogs, and hydroxyproline concentration was not increased in the subendomyocardium, midmyocardium, or subepimyocardium of the dogs with chronic perinephritic hypertension. Thus, in developing hypertension, major alterations in diastolic function were observed that were not structurally related, since these changes 1) could be induced in normal dogs by increasing preload and afterload acutely with phenylephrine and 2) were improved during the ensuing stable period of hypertension.

Adenosine↗

Decreased Gs alpha mRNA levels accompany the fall in Gs and adenylyl cyclase activities in compensated left ventricular hypertrophy. In heart failure, only the impairment in adenylyl cyclase activation progresses.

We have previously reported that there is a global reduction in adenylyl cyclase associated with a decrement in Gs functional activity in cardiac sarcolemma from animals with pressure overload-induced hypertrophy and heart failure. This study was performed to determine whether hypertrophy alone in the absence of heart failure is sufficient to promote these changes and whether the superimposition of heart failure intensified these changes. Basal and stimulated adenylyl cyclase and Gs activity, as determined in the S49 cyc- reconstitution assay, were measured in sarcolemma from normal (NL), left ventricular hypertrophy (LVH) and heart failure (HF) animals. Simultaneously, we measured the mRNA level encoding for the Gs alpha subunit. These studies indicate that Gs activity and Gs alpha mRNA are decreased by approximately 30% both in the failing heart and even in the heart with compensated hypertrophy before heart failure develops (Gs activity, pmol cyclic AMP/10 min per microgram, NL 4.2 +/- 0.4, LVH 3.0 +/- 0.2, HF 3.2 +/- 0.3; Gs alpha mRNA, pg/10 micrograms RNA, NL 131 +/- 9.0, LVH 104 +/- 7.4, HF 97.4 +/- 9.1; P less than 0.05 as compared with NL for LVH and HF). Accompanying this decrement in Gs activity is a fall in adenylyl cyclase, both basal and stimulated. However, we also identified a further decrease in adenylyl cyclase without any additional change in Gs or in its alpha subunit mRNA level. This is seen only in the sarcolemma from animals with heart failure as compared with those with compensated LV hypertrophy (e.g., NaF-stimulated activity, pmol cyclic AMP/min per mg, NL 420.2 +/- 17.5, LVH 347.1 +/- 29.6, HF 244.2 +/- 27.3; P less than 0.05 compared with NL for LVH and HF, P less than 0.05 compared with LVH for HF). In summary, these studies indicate that both Gs and adenylyl cyclase activities fall in parallel with the development of LV hypertrophy followed by a further decrement in adenylyl cyclase, independent of Gs, in the setting of heart failure.

Adenylyl Cyclases↗

Increased negative inotropic effect of calcium-channel blockers in hypertrophied and failing rabbit heart.

The effects on ventricular function of calcium channel blockers and isoproterenol were studied in isovolumically beating perfused control rabbit hearts and in hearts subjected to a double pressure plus volume overload studied at the early phase of heart failure. In control hearts, isoproterenol produced an increase of systolic ventricular function and relaxation that was maximal at 10(-7) M. In failing hearts, inotropic state increase in response to isoproterenol was significantly smaller (P less than .01) with no observed lusitropic effect. In control hearts, verapamil and diltiazem produced dose-dependent decreases of ventricular function which were larger with verapamil than with diltiazem (median drug concentration50 of developed pressure was, respectively, 1163 +/- 131 nM and 4524 +/- 451 nM, P less than .001). In failing hearts, contractility decrease was larger than in control hearts (median drug concentration50 of developed pressure was 604 +/- 69 nM and 2691 +/- 580 nM with verapamil and diltiazem, respectively). In contrast, Ro 40-5967, a new calcium-channel blocker, did not produce reductions of inotropic state with concentrations up to 10(-5) M. All three calcium-channel blockers produced a 2-fold increase of coronary flow at 10(-6) M. We conclude that the deleterious effect of verapamil and diltiazem in heart failure is due, at least in part, to a direct depressant effect of these drugs on contractility, which is larger than in control hearts. Additionally, the in vivo sympathetic compensation is probably reduced, as indicated by the decreased ventricular responsiveness to isoproterenol.

Animals↗

Recovery of a normal coronary vascular reserve after rejection therapy in acute human cardiac allograft rejection.

During acute rejection, coronary vascular reserve is severely impaired in human orthotopic heart transplants. To evaluate the effects of rejection therapy on coronary vascular reserve, the ratio of peak-to-resting coronary flow velocity was assessed with a coronary Doppler catheter and a maximally vasodilating dose of intracoronary papaverine (12 mg) in nine allograft recipients without rejection (group 1) and in six recipients before and after treatment of an acute episode of rejection (group 2). All the patients had normal epicardial coronary arteries and were free of left ventricular hypertrophy. In group 2 during rejection, the coronary vascular reserve was significantly lower than in group 1, in which all the patients had a peak-to-resting coronary flow velocity ratio greater than 4 (2.3 +/- 0.5 vs. 5.4 +/- 0.8, respectively, p less than 0.001). In group 2 after treatment of rejection, the peak-to-resting coronary flow velocity ratio was similar to that of group 1 (4.7 +/- 0.8). Heart rate, left ventricular volumes and pressures, hemoglobin concentration, and arterial oxygen pressure were similar in the two groups. This study provides evidence that alterations of coronary vascular reserve because of acute rejection were reversible after treatment of the rejection episode.

Angiography↗

Exercise-induced subendocardial dysfunction in dogs with left ventricular hypertrophy.

The effects of treadmill exercise on regional myocardial blood flow and function were examined in 10 adult, conscious dogs with left ventricular hypertrophy (LVH) induced by aortic banding in puppies, which resulted in a left ventricular (LV) weight/body weight ratio of 8.5 +/- 0.3. Data were compared with results from eight control dogs with an LV weight/body weight ratio of 4.9 +/- 0.2. At rest, LV systolic and end-diastolic pressures were significantly greater (p less than 0.01), and mean arterial pressure was significantly less (p less than 0.05) in LVH dogs. Mean myocardial blood flow (control dogs, 0.98 +/- 0.11 ml/min/g; LVH dogs, 1.16 +/- 0.06 ml/min/g) and the transmural blood flow distribution at baseline, as assessed by endocardial/epicardial blood flow ratio (control, 1.35 +/- 0.12; LVH, 1.21 +/- 0.09), were similar in the two groups. During exercise to a target heart rate (240 beats/min), LVH dogs demonstrated greater (p less than 0.01) increases in LV systolic and end-diastolic pressures. In control dogs, as expected, exercise augmented velocity of circumferential fiber shortening (16 +/- 9%) and shortening fraction (15 +/- 5%), but in LVH dogs, exercise reduced the velocity of circumferential fiber shortening (-14 +/- 6%) and shortening fraction (-17 +/- 5%). Exercise also increased full wall thickening (35 +/- 5%), subendocardial wall thickening (66 +/- 10%), and subepicardial wall thickening (44 +/- 9%) in control dogs. In LVH dogs, exercise increased subepicardial wall thickening (31 +/- 9%) and reduced subendocardial wall thickening (-40 +/- 7%); full wall thickening did not change (-11 +/- 9%). This was associated with a fall in endocardial/epicardial flow ratio to 0.72 +/- 0.05 (p less than 0.01) in LVH dogs. The subendocardial dysfunction persisted late into recovery, at a time when the transmural blood flow distribution had returned to baseline; this occurrence suggested myocardial stunning. Thus, in dogs with LVH, selective subendocardial hypoperfusion and profound selective depression in subendocardial wall thickening are observed during exercise. The subendocardial dysfunction persisted into recovery despite resolution of the perfusion abnormality.

Animals↗

Application of the systolic stiffness concept to assess myocardial function in developing hypertension.

The concept of end-systolic myocardial stiffness permits the quantification of preload effects on fiber shortening and changes in the slope (max Eav) of the end-systolic stress-strain relation, which, if linear, reflect changes in the inotropic state. As an application of this new concept, the end-systolic stress-strain and shortening-afterload relations were evaluated on the basis of data from dogs studied during development of perinephritic hypertension. End-systolic stress-strain relations were linear before and 2 weeks after the induction of hypertension and the end-systolic pressure-diameter relations were not always linear. The shortening-afterload relations obtained directly from raw data points displayed enhanced contractility in the hypertensive state under beta-adrenergic receptor blockade. However, the preload-corrected shortening-afterload relations demonstrated that contractility was unchanged in hypertension. Hypertensive hearts operated at higher preload than normotensive hearts at any afterload levels. This discrepancy between the conventional method without preload-correction and the preload-corrected analysis indicates the importance of preload-correction on shortening-afterload relations in hypertension.

Animals↗

[Pre-hospital thrombolysis].

Too few myocardial infarctions are thrombolysed, and the thrombolytic agent is usually administered too late. This situation can conceivably be improved by educating both physicians and patients, by promoting thrombolysis in all hospitals and by performing thrombolysis before admission. We report here our experience of pre-hospital thrombolysis with Eminase in the Val-de-Marne department. This preliminary study is just a small stone added to the big heap of small series of thrombolysis at home published throughout the world. But while the feasibility of pre-admission thrombolysis has been well demonstrated, its effectiveness remains to be accurately determined. Two studies involving large groups of patients are currently in progress: one in Seattle with the left ventricular function as principal criterion of judgment, the other in Europe (The European Myocardial Infarction Project) with mortality as main criterion of judgment. We must wait for the results of these studies to know whether pre-hospital thrombolysis will become the standard treatment of myocardial infarction and if so, to implement the relevant changes required in health structures.

Aged↗

Reduced subendocardial coronary reserve. A potential mechanism for impaired diastolic function in the hypertrophied and failing heart.

The association between pressure overload, left ventricular (LV) hypertrophy and failure, and abnormalities in diastolic function has been described both clinically and experimentally. The mechanisms underlying this association, however, are complex and controversial. Factors that have been implicated include mechanical alterations due to hypertrophy alone, changes in collagen type and content, alterations in beta-adrenergic responsiveness, and chronic myocardial ischemia. Studies in our laboratory have identified limitations in subendocardial flow reserve in compensated LV hypertrophy and near exhaustion in subendocardial reserve in animals with decompensated LV hypertrophy and failure. These abnormalities in coronary reserve are associated with impaired diastolic function, particularly during periods of physiological stress. For example, with pacing-induced stress, impairment in diastolic function was observed in conscious dogs with compensated LV hypertrophy. In conscious dogs with LV hypertrophy and failure, isoproterenol also resulted in altered diastolic function. Thus, in the model of severe pressure-overload hypertrophy, which is characterized by limitations in coronary reserve, the mechanism of subendocardial ischemia might be responsible in part for the impairment in diastolic function observed in response to superimposed stress.

Animals↗

Maximal coronary vasodilator capacity of orthotopic heart transplants in patients with and without rejection.

In cardiac allograft rejection, histopathologic changes suggesting that myocardial ischemia is a component of the rejection process have been documented. To further define the coronary vascular reactivity of human heart transplant, coronary sinus blood flow and coronary resistance were measured before and after intravenous dipyridamole within the first year after transplantation in 8 patients without rejection (group II) and in 5 patients with rejection (group III). All had normal coronary arteriograms. Results were compared to those of 8 control subjects (group I). After dipyridamole, coronary sinus blood flow was increased in groups I, II and III by 303, 212 (p less than 0.01 vs group I) and 45%, respectively (p less than 0.001 vs groups I and II). Coronary resistance was reduced by 77, 73 (not significant vs group I) and 36%, respectively (p less than 0.001 vs groups I and II). Concomitantly, coronary sinus blood oxygen content was increased by 172, 145 (not significant vs group I) and 78%, respectively (p less than 0.001 vs group I, not significant vs group II). Thus, the coronary flow reserve evaluated by the dipyridamole/basal coronary sinus blood flow ratio and the coronary resistance reserve evaluated by the basal/dipyridamole coronary resistance ratio were dramatically impaired in group III (1.56 +/- 0.09 and 1.63 +/- 0.30, respectively, p less than 0.001 vs groups I and II). In contrast, they were almost normal in group II (3.11 +/- 0.42 vs 4.03 +/- 0.52 in group I, p less than 0.02, and 3.83 +/- 0.78 vs 4.45 +/- 0.81 in group I, difference not significant). Thus, the impairment of coronary reserve during heart rejection should be linked to abnormalities of the coronary microvaculature. This emphasizes the important involvement of the coronary circulation in the rejection process.

Adult↗

Isoproterenol-induced alterations in myocardial blood flow, systolic and diastolic function in conscious dogs with heart failure.

The effects of isoproterenol were examined in 10 conscious, chronically instrumented adult dogs with left ventricular (LV) failure after pressure overload hypertrophy induced by aortic banding at 8-10 weeks of age (LV free wall plus septum-to-body weight ratio, 8.6 +/- 0.5 g/kg) and also in eight control dogs (LV free wall plus septum-to-body weight ratio, 5.1 +/- 0.3 g/kg). Baseline values of heart rate, LV end-diastolic pressure, LV end-diastolic stress, and LV systolic wall stress were greater in the LV failure dogs (p less than 0.01), whereas the ejection phase index, rate of change of LV short-axis diameter, LV dD/dt, was depressed compared with control animals. In the control animals, isoproterenol infusion increased Vcf and LV dD/dt significantly (p less than 0.05), whereas LV systolic wall stress did not change. In the LV failure dogs, the increases in Vcf and LV dD/dt were less (p less than 0.01), and LV systolic wall stress increased (p less than 0.01). In the control animals, LV end-diastolic pressure, LV end-diastolic stress, LV end-diastolic stress-dimension ratio, diastolic radial myocardial stiffness, and the time constant of isovolumic relaxation decreased (p less than 0.05), whereas in the LV failure dogs, LV end-diastolic pressure, LV end-diastolic stress, diastolic radial myocardial stiffness, and the LV end-diastolic stress-dimension ratio increased. In the LV failure group, the endocardial to epicardial blood flow ratio fell to 0.59 +/- 0.06 during isoproterenol infusion, that is, significantly lower than in control dogs (0.93 +/- 0.06). These data support the concept that potent sympathomimetic amines exert deleterious effects on systolic and diastolic function in the failing heart, potentially related to subendocardial hypoperfusion.

Animals↗