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Biomedical subjects

C R Benedict

Publications and source records attributed to C R Benedict.

At least 55 records · Page 3Linked to original sources

Improved left ventricular function after chronic left ventricular unloading.

BACKGROUND: This study assessed the effect of prolonged left ventricular unloading on native ventricular function. METHODS: We reviewed data from 31 patients (30 men, 1 woman) supported more than 30 days (mean, 137 days; range, 31 to 505 days) with the HeartMate left ventricular assist system. The patients' mean age was 46 years (range, 22 to 64 years); 17 had idiopathic and 14 had ischemic cardiomyopathy. Data (anatomic, physiologic, hemodynamic, histologic, and biochemical) were collected at the time of HeartMate implantation, during support with the device temporarily off, and at the time of device explantation. RESULTS: Routine chest roentgenogram showed improvement in cardiothoracic ratio (0.62 +/- 0.04 to 0.55 +/- 0.03; p < 0.0001). Echocardiography performed with the pump off showed a significant decrease in left ventricular end-diastolic dimension (6.81 +/- 0.87 cm to 5.39 +/- 1.08 cm; p < 0.0005) and a significant improvement in ejection fraction (0.11 +/- 0.05 to 0.22 +/- 0.17; p < 0.02). Cardiac index increased (1.96 +/- 0.52 L.min-1.m-2 to 2.93 +/- 0.73 L.min-1.m-2; p < 0.0001), mean aortic pressure increased (71.40 +/- 10.63 mm Hg to 76.33 +/- 16.84 mm Hg; p = 0.48), pulmonary capillary wedge pressure decreased (24.18 +/- 6.27 mm Hg to 14.48 +/- 3.01 mm Hg; p < 0.0001), and pulmonary vascular resistance decreased (3.34 +/- 2.00 Wood units to 2.51 +/- 0.88 Wood units; p < 0.05). Comparisons of tissue samples taken at the time of implantation and at the time of transplantation showed a marked reduction in myocytolysis. Calcium uptake, calcium-binding rates, and lipid levels normalized in patients studied. Plasma norepinephrine levels decreased to near normal levels. CONCLUSION: Prospective studies are now indicated to determine whether device removal without transplantation may be beneficial in selected patients.

Adult↗

Hemodynamic and cardiac effects of the selective T-type and L-type calcium channel blocking agent mibefradil in patients with varying degrees of left ventricular systolic dysfunction.

OBJECTIVES: This study sought to assess the hemodynamic and cardiac effects of two dose levels of mibefradil in patients with varying degrees of ischemic left ventricular dysfunction. BACKGROUND: Mibefradil is a new, selective T-type and L-type calcium channel blocking agent. Because L-type channel blockade may depress myocardial performance, an invasive hemodynamic study was performed to assess the safety of this agent. METHODS: We performed an open label study, examining the effects of two intravenous doses of mibefradil, selected to produce plasma levels comparable to those measured after oral administration of 50 mg (dose 1: 400 ng/ml) or 100 mg (dose 2: 800 ng/ml) of the drug. Variables studied included the indexes of left ventricular function and neurohormone levels. Patients were stratified according to ejection fraction (EF) (> or = 40%, n = 26; < 40%, n = 24) and the presence (n = 15) or absence (n = 35) of heart failure. RESULTS: In patients with preserved systolic function, dose 1 had no clinically significant hemodynamic effects, but dose 2 decreased mean aortic pressure and systemic vascular resistance (-8.5 mm Hg, -12%, both p < 0.01) and also reduced end-systolic stress and volume, thus improving EF (52% to 58%, p < 0.01). Heart rate tended to decrease. In patients with depressed EF, heart rate decreased significantly with both doses. The effects of dose 1 mimicked those observed after dose 2 in patients with preserved EF. Dose 2 (plasma levels 1,052 +/- 284 ng/ml) still decreased left ventricular systolic wall stress and improved EF (24.0% to 28.5%, p < 0.05) but also significantly depressed the maximal first derivative of left ventricular pressure. Examination of individual pressure-volume loops in two patients with heart failure showed a clear rightward shift of the loop despite a decrease in systolic pressure, suggesting negative inotropy. Neurohormone levels were unchanged at both dose levels and in all subgroups. CONCLUSIONS: Intravenous mibefradil was well tolerated and produced an overall favorable cardiovascular response. However, high plasma concentrations might produce myocardial depression in patients with heart failure, and caution should be exerted in this setting.

Adult↗

Single-blind study of the effects of intravenous dolasetron mesylate versus ondansetron on electrocardiographic parameters in normal volunteers.

A single-blind, randomized, five-way cross-over, safety and tolerability trial was conducted to determine whether intravenous (i.v.) dolasetron mesylate at varying single doses induces changes in ECG intervals in healthy volunteers and to compare these changes with a single intravenous dose of ondansetron or placebo. Thirty healthy male volunteers received 1.2, 1.8, and 2.4 mg/kg i.v. dolasetron mesylate, 32 mg i.v. ondansetron, and placebo on 5 separate days. ECGs were recorded at intervals during the 24 h after study drug administration. The changes in ECG intervals observed after dolasetron mesylate or ondansetron were acute, transient, and asymptomatic. Dolasetron mesylate resulted in slight but statistically significant dose-related increases in heart rate (HR) and PR and QRS intervals (between h 0 and 4). A statistically significant increase in QTc interval was detected with both dolasetron mesylate (2.4 mg/kg) and ondansetron. Ondansetron also produced a slight but statistically significant increase in JT interval and a decrease in HR. These changes in ECG intervals were usually observed between h 0 and 4; all parameters returned to baseline within 8 h of treatment. The results demonstrate that both dolasetron mesylate and ondansetron prolong the QTc interval. However, dolasetron mesylate predominantly altered ECG parameters indicative of ventricular depolarization (QRS duration), whereas ondansetron predominantly affected ventricular repolarization as measured by a prolongation in the JT interval. Both dolasetron and ondansetron were well tolerated. The adverse event (AE) rate was 13.3% (4 of 30); all AE were of mild or moderate severity and were distributed across all dose arms.

Adult↗

New variant of human tissue plasminogen activator (TPA) with enhanced efficacy and lower incidence of bleeding compared with recombinant human TPA.

BACKGROUND: The thrombolytic properties of a new variant of tissue plasminogen activator (TPA) (T103N, N117Q, KHRR 296-299 AAAA, or TNK-TPA) with longer plasma half-life, greater fibrin specificity, and increased resistance to inhibition by plasminogen activator inhibitor (PAI-1) were investigated in a rabbit thrombosed carotid artery model. METHODS AND RESULTS: After 60 minutes of arterial occlusion, TPA (1.5, 3.0, 6.0, or 9.0 mg/kg as a front-loaded IV infusion for 90 minutes; n = 22) or TNK-TPA (0.38, 0.75, or 1.5 mg/kg as IV bolus; n = 16) was administered. Blood flow through the artery was monitored for an additional 120 minutes. Bleeding was assessed by weighing the amount of blood absorbed in a gauze pad placed in a subcutaneous muscular incision. Recanalization rates and duration of recanalization were dose dependent. The doses that produced > 80% recanalization rates with the longest duration of recanalization were 9.0 mg/kg for TPA and 1.5 mg/kg for TNK-TPA. At these doses, time to reperfusion (mean +/- SEM) was significantly faster (11 +/- 2 versus 23 +/- 7 minutes) and duration of recanalization longer (77 +/- 9 versus 51 +/- 18 minutes) for TNK-TPA compared with TPA (P < .025). Weights of the residual thrombi of the TPA group were greater than those of the TNK-TPA group (P = .004). Concentrations of fibrinogen, plasminogen, and alpha 2-antiplasmin at 120 minutes were significantly higher for TNK-TPA-treated animals compared with TPA-treated animals (P < .001). ANOVA of the blood loss data determined that there were significant differences between thrombolytic agents but not between doses. After correction for saline controls, total blood loss for pooled doses of TPA and TNK-TPA was 82 +/- 6 mg and 40 +/- 4 mg, respectively (P < .01). CONCLUSIONS: From these data, we conclude that TNK-TPA, given as a bolus, produces faster and more complete recanalization of occluded arteries in a rabbit experimental model compared with TPA, without increasing systemic plasmin generation or peripheral bleeding. In addition, we observed that TNK-TPA, unlike TPA, did not potentiate collagen-induced aggregation of platelets obtained from human plasma. This lack of effect on platelet aggregation by TNK-TPA potentially could be associated with a decreased risk of reocclusion after successful thrombolysis.

Animals↗

Effect of long-term enalapril therapy on neurohormones in patients with left ventricular dysfunction. SOLVD Investigators.

The aim of this study was to compare the long-term effects of treatment with enalapril or placebo on plasma neurohormones in patients with left ventricular (LV) dysfunction. Elevated neurohormonal levels are associated with increased mortality in patients with congestive heart failure. Multiple studies have shown that angiotensin-converting enzyme inhibitors decrease mortality and morbidity in these patients. In Studies of Left Ventricular Dysfunction (SOLVD), enalapril significantly reduced mortality in patients with symptomatic LV dysfunction (treatment trial). In contrast, in patients with asymptomatic LV dysfunction (prevention trial), there was no significant reduction in mortality with enalapril therapy. The effect of enalapril was examined in 333 prevention trial and 129 treatment trial patients. Plasma norepinephrine (NE) and plasma renin activity were measured in these patients at baseline, and at 4 and 12 months of follow-up. In a subset of these patients, atrial natriuretic peptide (ANP) and arginine vasopressin were also measured. Analysis of covariance models were used to determine the effect of enalapril on each neurohormone. Participants in the treatment trial had significantly higher neurohormonal levels when compared with those in the prevention trial or normal control subjects. In the treatment trial, patients taking enalapril had a greater decrease in plasma NE levels than patients taking placebo (p < 0.08).(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

A double-blind, placebo-controlled, dose-ranging safety evaluation of single-dose intravenous dolasetron in healthy male volunteers.

The safety and tolerability of dolasetron mesylate, a potent and selective 5-HT3 receptor antagonist, were evaluated after single intravenous doses in healthy male volunteers. In this double-blind, placebo-controlled, randomized, phase I study, 80 subjects received either placebo or dolasetron in escalating doses (0.6 to 5.0 mg/k). Subjects were monitored for adverse events, vital sign and laboratory alterations, and changes in electrocardiographic (ECG) intervals and electroencephalographic (EEG) patterns. Overall, the percentage of subjects reporting adverse events was similar in those receiving dolasetron (44/64; 68.8%) or placebo (10/16; 62.5%); most adverse events were mild in severity. Subjects receiving dolasetron reported a higher incidence of central nervous system (headache and dizziness/lightheadedness), gastrointestinal (increased appetite and nausea), and visual adverse events and taste alterations. No clinically significant changes in laboratory variables were observed. Transient and asymptomatic ECG changes (small mean increases in PR interval and QRS complex duration versus baseline) were noted in several subjects at 1 to 2 hours after infusion at doses > or = 3.0 mg/kg. Transient, mild blood pressure decreases were observed in five subjects, including one on placebo. Dolastron mesylate was well tolerated in single intravenous doses up to 5.0 mg/kg in healthy male volunteers. Clinical studies of the drug are ongoing for antiemetic indications.

Adolescent↗

Novel 21-aminosteroidlike compounds prevent iron-induced free radical-mediated injury to vascular endothelial cells.

Free radicals appear to play a major role in the reperfusion injury of the myocardium. Iron chelators and antioxidants can prevent the reperfusion injury. The cellular source of free radicals during reperfusion is not clearly established. However, an important source may be the endothelial cells (EC). The protective effect of iron chelators and antioxidants on reperfusion injury of the myocardium may be partially mediated by their effect on vascular EC, which may attenuate the formation of hydroxyl radicals. We examined the protective effect of deferoxamine and antioxidants on iron-dependent free radical-mediated damage to EC and membrane lipid peroxidation and compared it with those of a new class of compounds (21-aminosteroids: U-74389F, U-74500A, U-78517F) which have both antioxidant and iron chelating properties. We examined viability of the EC and membrane lipid peroxidation using primary aortic EC. First, the effect of increasing iron concentration (0-3.8 microM) (added as ferric ammonium citrate) was characterized. We then examined the effect of deferoxamine (1-10 microM), butylated hydroxytoluene (BHT 1-10 mM), probucol (0.5-5.0 mM), allopurinol (1-1,000 microM), U-74389F (2-20 microM), U-74500A (1-5 microM), and U-78517F (0.1-1.0 microM) on reversing the effect of iron. With increasing iron concentration, there was a significant decrease in the viability of dog aortic or bovine pulmonary arterial EC as compared with NIH 3T3 or human fibroblasts. Equally, there was also a significant increase in lipid peroxidation of the cellular membranes. There were significant differences between the compounds with respect to their ability to maintain the viability of EC and prevent membrane lipid peroxidation.(ABSTRACT TRUNCATED AT 250 WORDS)

Allopurinol↗

Progression of left ventricular dysfunction secondary to coronary artery disease, sustained neurohormonal activation and effects of ibopamine therapy during long-term therapy with angiotensin-converting enzyme inhibitor.

Left ventricular function and neurohormonal status in patients with heart failure remaining symptomatic during therapy with angiotensin-converting enzyme inhibitors were assessed, and the effects of dopaminergic receptor stimulation in this setting were determined. Neurohormonal and left ventricular function (radionuclide angiography) data were obtained in 19 patients with symptomatic ischemic heart failure. Measurements were repeated after 4 to 6 weeks of therapy with the dopamine agonist ibopamine (100 mg, 3 times/day) or placebo administered in a double-blind, randomized, parallel group design. At baseline, despite therapy with enalapril, the angiotensin II levels (mean 39.4 pg/ml; p < 0.01 vs controls) were significantly increased, as were plasma norepinephrine (497 +/- 240 pg/ml; p < 0.01 vs controls), endothelin-1, atrial natriuretic peptide and arginine vasopressin. Moreover, in comparison with pretreatment values, left ventricular ejection fraction had decreased substantially (-9.1%) in patients with plasma norepinephrine > or = 600 pg/ml, but not in those with lower values of norepinephrine. With ibopamine, plasma norepinephrine decreased from 516 +/- 241 to 391 +/- 208 pg/ml (n = 8; p < 0.025 vs placebo), whereas it increased with placebo. In conclusion, the neurohormonal control provided by an angiotensin-converting enzyme inhibitor is reduced in a large subset of patients during prolonged therapy; ibopamine appears to be a potentially useful drug to improve neurohormonal control in this setting.

Aged↗

Local effect of serotonin released during coronary angioplasty.

BACKGROUND: Serotonin is released after the aggregation of platelets, a phenomenon that may occur after coronary angioplasty. We sought to determine whether serotonin is released into the coronary circulation during coronary angioplasty and to assess whether serotonin can affect coronary-artery tone during angioplasty. METHODS: Blood samples were drawn from the ascending aorta and the coronary sinus of eight patients scheduled to undergo angioplasty of the left anterior descending or circumflex coronary artery. Samples were obtained before angioplasty and after each balloon dilation. The dimensions of arterial segments distal to the site of dilation were measured angiographically before angioplasty and 5 and 15 minutes after the last dilation in these eight patients and in seven similar patients; the latter group was treated with ketanserin, a serotonin2-receptor antagonist, before angioplasty. RESULTS: Before the eight patients underwent angioplasty, their mean (+/- SE) plasma serotonin level in the aorta was 2.5 +/- 0.7 ng per milliliter and that in the coronary sinus was 2.3 +/- 0.6 ng per milliliter (P = 0.34). The serotonin level in plasma from the coronary sinus rose significantly, to 31.5 +/- 13.5, 17.6 +/- 5.3, and 29.1 +/- 8.1 ng per milliliter after the first, second, and third dilations, respectively (P = 0.014 for the comparison with preoperative levels). In contrast, the serotonin level in plasma from the ascending aorta did not change. The cross-sectional area of the coronary artery was significantly reduced 5 and 15 minutes after the last dilation (from a preoperative value of 3.7 +/- 0.5 mm2 to 2.7 +/- 0.4 mm2 15 minutes after the last dilation; P = 0.011). This vasoconstriction was significantly blunted in the seven patients who received ketanserin (from 3.7 +/- 0.5 mm2 before angioplasty to 3.9 +/- 0.4 mm2 after 15 minutes) (P = 0.017 for comparison with the eight patients who did not receive ketanserin). CONCLUSIONS: Serotonin is released into the coronary circulation during angioplasty, and this vasoactive substance may contribute to the occurrence of vasoconstriction distal to the dilated site. The vasoconstriction is attenuated by ketanserin, a serotonin2-receptor antagonist.

Angioplasty, Balloon, Coronary↗

Neurohormones in patients with ischemic left ventricular dysfunction.

Measurements of plasma neurohormones in patients with left ventricular dysfunction are generally performed for research purpose rather than for diagnostic purpose or to guide therapy. These studies have shown that in patients with left ventricular dysfunction, several neurohormonal systems were activated, even in the absence of symptoms of congestive heart failure. This suggested that the cardiovascular system was not in a steady state and pointed out potential culprits for the progression of the disease. It has also been shown that the levels of several of these markers, particularly plasma norepinephrine, had an important prognostic value. Another value of neurohormonal studies obviously is the design of new therapeutic approaches aimed at improving symptoms and prognosis. In this respect, important therapeutic successes have been obtained with agents that interfere with the actions of some of these neurohormonal systems, such as with the use of the angiotensin-converting enzyme (ACE) inhibitors, particularly captopril and enalapril, and to a lesser extent, with beta-blockers. It can therefore be expected that, in the future, most patients with severe ischemic dysfunction will be treated with an ACE inhibitor. Nonetheless, neurohormonal control is not complete with these drugs; powerful vasoconstrictor forces, such as endothelin-1, remain activated, and an escape of angiotensin II from the control of ACE inhibition may exist. Thus, morbidity (e.g., progression towards congestive heart failure and angina pectoris) and mortality remain high despite treatment with ACE inhibitors. In the search for future improvements, the new generation of long-acting dihydropyridines is worth considering. Their afterload reducing action, coupled with powerful coronary vasodilation, might hypothetically delay the progression of ischemic LV dysfunction.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

Relation of neurohumoral activation to clinical variables and degree of ventricular dysfunction: a report from the Registry of Studies of Left Ventricular Dysfunction. SOLVD Investigators.

OBJECTIVES: This study examined the relation between neurohumoral activation and severity of left ventricular dysfunction and congestive heart failure in a broad group of patients with depressed left ventricular function who were not recruited on the basis of eligibility for a therapeutic trial. BACKGROUND: Previous studies have established the presence of neurohumoral activation in patients with severe congestive heart failure. It is not known whether the activation of these neurohumoral mechanisms is related to an impairment in left ventricular function. METHODS: From the 6,273 patients recruited into the Studies of Left Ventricular Dysfunction Registry (SOLVD), a subgroup of 859 patients were randomly selected, and their plasma norepinephrine, plasma renin activity, arginine vasopressin and atrial natriuretic peptide levels were correlated with clinical findings, New York Heart Association functional class, left ventricular ejection fraction and drug use. RESULTS: There was a weak but significant correlation between ejection fraction and an increase in plasma norepinephrine (rho = -0.18, p < 0.0001), plasma renin activity (rho = -0.24, p < 0.0001) and arginine vasopressin (rho = -0.12, p < 0.003). The only exception was atrial natriuretic peptide, which showed the best correlation to ejection fraction (rho = -0.37, p < 0.0001). Deterioration in functional class was associated more with increases in atrial natriuretic peptide (p = 0.0003) and plasma renin activity (p = 0.0003) and less with an increase in plasma norepinephrine. Of the clinical variables, elevated jugular venous pressure and third heart sound (S3) gallop were significantly associated with increased levels of plasma norepinephrine, plasma renin activity and atrial natriuretic peptide. We then compared the relation of neurohormones with clinical signs, functional status, ejection fraction and drug therapy and controlled for mutual interactive effects. After adjustment, a decrease in ejection fraction was still significantly related to an increase in plasma norepinephrine, plasma renin activity and atrial natriuretic peptide. In contrast, only a difference between functional classes I and III/IV was associated with an increase in plasma renin activity and atrial natriuretic peptide levels. CONCLUSIONS: Neurohumoral activation in patients with heart failure is related to severity of left ventricular functional depression, and this relation is independent of functional class or concomitant drug therapy.

Aged↗

Effects of nisoldipine therapy on myocardial perfusion and neuro-hormonal status in patients with severe ischaemic left ventricular dysfunction.

The effects of nisoldipine on regional myocardial perfusion and neuro-hormonal status were assessed in a double-blind, placebo-controlled study of 32 patients. All patients had ischaemic left ventricular dysfunction, with a left ventricular ejection fraction between 25% and 35%; per protocol, they were stratified according to concomitant use of ACE inhibitors. After baseline measurements at rest, including single photon emission computed tomography (SPECT) with Tc-MIBI, plasma neuro-hormones (norepinephrine, renin, arginine vasopressin, atrial natriuretic peptide) and echocardiography, the patients were randomized to nisoldipine (core coat tablet, 20 mg once daily; n = 16) or placebo (n = 16). Measurements were repeated after 8 weeks. SPECT data were analysed qualitatively (visual comparison by blinded observer) and quantitatively to derive an index of hypoperfusion representing the percentage of the left ventricular mass with Tc-MIBI activity below normal. At baseline, all patients had left ventricular areas with reduced Tc-MIBI uptake and 29 patients also had increases in plasma neuro-hormones. With nisoldipine, the extent of hypoperfusion (quantitative analysis) was reduced in 8/14 patients vs only 2/14 patients with placebo (P = 0.046, 2-tailed test). The benefit of nisoldipine was similar in patients with or without ACE inhibitor therapy and was also confirmed by the visual analysis of the data. Further, none of the neuro-hormones examined was significantly modified by nisoldipine. Thus, chronically underperfused areas are present at rest in patients with ischaemic left ventricular dysfunction, and nisoldipine significantly improved Tc-MIBI uptake in these areas without evidence of detrimental changes in plasma neuro-hormones.(ABSTRACT TRUNCATED AT 250 WORDS)

Arginine Vasopressin↗

Angiotensin-converting enzyme inhibition prolongs survival and modifies the transition to heart failure in rats with pressure overload hypertrophy due to ascending aortic stenosis.

BACKGROUND: We tested the hypotheses that long-term administration of the angiotensin-converting enzyme (ACE) inhibitor fosinopril will regress hypertrophy, modify the transition to heart failure, and prolong survival in rats with chronic left ventricular (LV) pressure overload due to ascending aortic stenosis. METHODS AND RESULTS: Aortic stenosis was created in weanling male Wistar rats by a stainless steel clip placed on the ascending aorta. Age-matched control animals underwent a sham operation (Sham group, n = 57). Six weeks after surgery, rats with aortic stenosis were randomized to receive either oral fosinopril 50 mg.kg-1.d-1 (Fos/LVH group, n = 38) or no drug (LVH group, n = 36) for 15 weeks. Pilot studies confirmed that this dosage produced significant inhibition of LV tissue ACE in vivo. Animals were monitored daily, and survival during the 15-week treatment period was assessed by actuarial analysis. At 15 weeks, in vivo LV systolic and diastolic pressures and heart rate were measured. To assess contractile function, the force-calcium relation was evaluated by use of the isovolumic buffer-perfused, balloon-in-LV heart preparation at comparable coronary flow rates per gram LV weight. Quantitative morphometry was performed. Mortality during the 15-week trial was significantly less in the Fos/LVH group than in the LVH group (3% versus 31%, P < .005). No deaths occurred in the Sham group. In vivo LV systolic pressure was similar between Fos/LVH and LVH hearts (223 +/- 10 versus 232 +/- 9 mm Hg) and significantly higher than the Sham group (99 +/- 3 mm Hg, P < .05). In vivo LV diastolic pressure was significantly lower in Fos/LVH hearts than in LVH hearts (10 +/- 2 versus 15 +/- 2 mm Hg), and both were significantly higher than in the Sham group (5 +/- 1 mm Hg, P < .05). Heart rate was similar among all groups. Despite equivalent elevation of LV systolic pressure, fosinopril resulted in regression of myocyte hypertrophy in Fos/LVH versus LVH (myocyte cell width, 14.8 +/- 0.5 versus 20.8 +/- 2.2 microns, P < .05) to normal levels (Sham, 16.3 +/- 0.9 microns). Quantitative morphometry demonstrated that the regression of LV myocyte hypertrophy in the Fos/LVH group was associated with a relative increase in the fractional volume of fibrillar collagen and noncollagen interstitium. In the isolated heart experiments, LV systolic developed pressure relative to perfusate [Ca2+] was significantly higher in Fos/LVH hearts than in LVH hearts. The improvement in systolic function was not related to any difference in myocardial high-energy phosphate levels, since LV ATP and creatine phosphate levels were similar in Fos/LVH and LVH hearts. CONCLUSIONS: In rats with ascending aortic stenosis, chronic ACE inhibition with fosinopril improved survival, decreased the extent of LV hypertrophy, and improved cardiac function despite persistent elevation of LV systolic pressure. The favorable effects of fosinopril may be related in part to inhibition of the effects of cardiac ACE on myocyte hypertrophy rather than to systemic hemodynamic mechanisms.

Angiotensin-Converting Enzyme Inhibitors↗

Mitogenic effect of serotonin on vascular endothelial cells.

BACKGROUND: Recent studies indicate that serotonin (5-HT) has a growth-promoting effect on several different cell types, including smooth muscle cells. After percutaneous transluminal coronary angioplasty, there is damage and denudation of vascular endothelial cells, which promotes platelet aggregation at the site of injury. Aggregating platelets release 5-HT; thus, a high concentration of the amine may be present at sites of endothelial damage, which may act as a mitogen to endothelial cells. METHODS AND RESULTS: The mitogenic effect of 5-HT was examined on canine and bovine aortic endothelial cells by (1) assessing the increase in [3H]thymidine incorporation into DNA and (2) assessing the increase in the absolute number of cells after stimulation with 5-HT. 5-HT at an added concentration of 200 to 1000 mumol/L in the media induced a significant increase in [3H]thymidine incorporation into endothelial cells and an increase in cell number. This effect was not observed with fibroblasts. As the concentrations of added 5-HT were decreased, the endothelial cells had to be stimulated with 5-HT for longer periods to induce the same degree of cellular proliferation. The precursors and metabolic breakdown products of 5-HT were inactive. The 5-HT-induced endothelial proliferation was reversed by 5-HT2 receptor antagonists and pertussis toxin. These data suggest that the mitogenic effect of 5-HT on endothelial cells is mediated by the 5-HT2 receptor, which is coupled to a G protein. CONCLUSIONS: 5-HT is a mitogen for endothelial cells at concentrations likely to be present at sites of vascular injury. This effect is probably mediated via the 5-HT2 receptor. The growth-promoting effects of 5-HT on endothelial cells may facilitate the healing of intima after vascular damage.

Angioplasty↗

Neurohumoral aspects of heart failure.

Understanding the possible role of neurohumoral mechanisms in patients with heart failure has begun to alter the way in which clinicians are likely to approach the management of these patients. Abnormalities in patients with congestive heart failure can no longer be explained only on the basis of hemodynamic changes; they should also include an assessment of the neurohormonal activation. It is highly likely that, in patients with progressive deterioration in cardiac function, the critical interaction between neurohormonal mechanisms and hemodynamic changes leads to the progression of this clinical syndrome.

Animals↗

Endothelial-dependent procoagulant and anticoagulant mechanisms. Recent advances in understanding.

Modulation of endothelial cell coagulant function is one of a group of changes common to many cytokine-mediated events. Changes that 1) cause migration of leukocytes, 2) increase vascular permeability, and 3) increase the thrombotic potential occur at atherosclerotic arterial branch points, in tumor vasculature, and at sites of inflammation. Regulation of procoagulant activity on the luminal surface of the vessel is crucial and is achieved by presentation of a predominantly anticoagulant surface on the endothelium. Inflammatory mediators can cause a decrease in the expression of the anticoagulant mechanisms and up-regulation of the procoagulant tissue factor. However, under these conditions very little tissue factor is exposed to the blood; instead it is sequestered under the endothelium and presumably becomes exposed only when significant vascular damage is present. Inhibition of intravascular coagulation by factor IXai without impairment of extravascular hemostasis suggests that when tissue factor concentrations are low, the continued generation of factor Xa is dependent on the presence of factor IXa. The demonstration that the blockade of factor IXa is selective for prevention of intravascular thrombus formation suggests a new means for managing intravascular thrombosis without altering the normal hemostatic mechanisms.

Animals↗

Active site-blocked factor Xa prevents thrombus formation in the coronary vasculature in parallel with inhibition of extravascular coagulation in a canine thrombosis model.

Factor Xa is a central procoagulant enzyme, linking the intrinsic and extrinsic activation mechanisms to the final common pathway of coagulation. To assess its contribution to pathologic thrombosis, studies were performed in a canine coronary thrombosis model. Thrombus formation was initiated by the application of electric current via a needle electrode placed in the lumen of the left circumflex coronary artery. When 50% occlusion of the vessel developed, the current was stopped and animals received an intravenous bolus of either saline, bovine glutamyl-glycinyl-arginyl-factor Xa (Xai), a competitive inhibitor of factor Xa assembly into the prothrombinase complex, Factor X, or heparin. Animals infused with saline or factor X (300 micrograms/kg) developed total occlusion of the vessel due to a fibrin/platelet thrombus in 70 +/- 11 minutes (36 of 36 animals) and 74 +/- 13 minutes (8 of 8 animals), respectively. In contrast, infusion of Xai prevented thrombus formation completely at a dose of 300 micrograms/kg (8 of 8 animals). As the dose of Xai was decreased, its antithrombotic effect was diminished, with a patency rate of only 2 of 6 animals at a dose of 90 micrograms/kg. Xai at 300 micrograms/kg prevented the accumulation of 125I-fibrinogen/fibrin at the site of the coronary thrombus by approximately 63% and decreased deposition of 111In-labeled platelets by approximately 57%. Hemostatic parameters of animals infused with Xai demonstrated prolongation of the PT and dose-dependent increased extravascular bleeding tendency. These data indicate that factor Xa has a comparably important role in thrombus formation and extravascular hemostasis, and contrast with previous results in this same animal model in which IXai selectively prevented clotting in the coronary vasculature.

Amino Acid Sequence↗