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Biomedical subjects

I M Robbins

Publications and source records attributed to I M Robbins.

13 recordsLinked to original sources

Effects of the dual endothelin-receptor antagonist bosentan in patients with pulmonary hypertension: a randomised placebo-controlled study.

BACKGROUND: Endothelin 1, a powerful endogenous vasoconstrictor and mitogen, might be a cause of pulmonary hypertension. We describe the efficacy and safety of bosentan, a dual endothelin-receptor antagonist that can be taken orally, in patients with severe pulmonary hypertension. METHODS: In this double-blind, placebo-controlled study, 32 patients with pulmonary hypertension (primary or associated with scleroderma) were randomly assigned to bosentan (62.5mg taken twice daily for 4 weeks then 125 mg twice daily) or placebo for a minimum of 12 weeks. The primary endpoint was change in exercise capacity. Secondary endpoints included changes in cardiopulmonary haemodynamics, Borg dyspnoea index, WHO functional class, and withdrawal due to clinical worsening. Analysis was by intention to treat. FINDINGS: In patients given bosentan, the distance walked in 6 min improved by 70 m at 12 weeks compared with baseline, whereas it worsened by 6 m in those on placebo (difference 76 m [95% CI 12-139], p=0.021). The improvement was maintained for at least 20 weeks. The cardiac index was 1.0 L min(-1) m(-2) (95% CI 0.6-1.4, p<0.0001) greater in patients given bosentan than in those given placebo. Pulmonary vascular resistance decreased by 223 dyn s cm(-)(5) with bosentan, but increased by 191 dyn s cm(-5) with placebo (difference -415 [-608 to -221], p=0.0002). Patients given bosentan had a reduced Borg dyspnoea index and an improved WHO functional class. All three withdrawals from clinical worsening were in the placebo group (p=0.033). The number and nature of adverse events did not differ between the two groups. INTERPRETATION: Bosentan increases exercise capacity and improves haemodynamics in patients with pulmonary hypertension, suggesting that endothelin has an important role in pulmonary hypertension.

Antihypertensive Agents↗

Percutaneous pulmonary artery and vein stenting: a novel treatment for mediastinal fibrosis.

Mediastinal fibrosis is a rare consequence of infection with the fungus Histoplasma capsulatum that can lead to occlusion of large pulmonary arteries and veins and mainstem bronchi. Medical and surgical treatments for this disorder have been ineffective. We describe successful treatment for central pulmonary arterial and venous obstruction due to mediastinal fibrosis in four patients using percutaneously placed intravascular stents. Patients were severely limited, World Health Organization functional class III or IV. At the time of right and left heart catheterization, stents were placed in pulmonary arteries (n = 1), veins (n = 2), or both (n = 1) to relieve vascular obstruction resulting from mediastinal fibrosis. Immediate hemodynamic and clinical improvement was observed in all patients. Three of the four patients have had sustained improvement in exercise tolerance, from 3.5 mo to 4.5 yr after stent placement. The only complication was a self-limited pulmonary hemorrhage in one patient. Our initial experience suggests that percutaneous stent placement to relieve central pulmonary arterial or venous obstruction due to mediastinal fibrosis is an effective new treatment modality.

Adult↗

Iatrogenic paradoxical air embolism in pulmonary hypertension.

Paradoxical systemic air embolism (PAE) occurring as a complication of right-to-left intracardiac shunting during evaluation and treatment of pulmonary hypertension (PH) has not been previously reported. We report four cases of PH-associated PAE recently encountered at our center. Two patients with PH experienced transient neurologic deficits during agitated-saline contrast echocardiography (ASCE), and a patent foramen ovale was subsequently diagnosed in both patients. Two patients with Eisenmenger's syndrome (ES), while receiving epoprostenol via multilumen catheters, experienced transient neurologic deficits while flushing the unused port of the catheter. No patient experienced permanent neurologic deficits. We conclude that ASCE poses a risk for PAE in patients with PH and clinically silent, previously undetected, right-to-left intracardiac shunts, and that multilumen catheters used for long-term epoprostenol therapy in ES carry a risk of PAE.

Adult↗

Increased levels of prostaglandin D(2) suggest macrophage activation in patients with primary pulmonary hypertension.

STUDY OBJECTIVE: TXA(2) (thromboxane A(2)) is a lipid mediator believed to be produced primarily by platelets in normal subjects, although macrophages are capable of synthesis. There is increased production of TXA(2) in patients with primary pulmonary hypertension (PPH), which may reflect augmented production by macrophages. The objective of this study was to determine if macrophages are activated in PPH and whether they contribute to the increased production of TXA(2). STUDY TYPE: Case control. SETTING: University hospital. METHODS: We measured the urinary metabolites of three mediators that predominantly derive from different cell types in vivo: (1) TX-M (platelets and macrophages), a TXA(2) metabolite; (2) prostaglandin D(2) (PGD(2)) metabolite (PGD-M); and (3) N-methylhistamine (mast cells), a histamine metabolite, in 12 patients with PPH and 11 normal subjects. RESULTS: The mean (+/- SEM) excretion of both TX-M and PGD-M at baseline was increased in PPH patients, compared to normal subjects (460 +/- 50 pg/mg creatinine vs 236 +/- 16 pg/mg creatinine [p = 0.0006], and 1,390 +/- 221 pg/mg creatinine vs 637 +/- 65 pg/mg creatinine [p = 0.005], respectively). N-methylhistamine excretion was not increased compared to normal subjects. There was a poor correlation between excretion of TX-M and PGD-M (r = 0.36) and between excretion of PGD-M and methylhistamine (r = 0.09) in individual patients. CONCLUSION: In patients with PPH, increased levels of PGD-M, without increased synthesis of N-methylhistamine, suggest that macrophages are activated. The lack of correlation between urinary metabolite levels of TXA(2) and PGD(2) implies that macrophages do not contribute substantially to elevated TXA(2) production in patients with PPH. They may, however, have a role in the pathogenesis and/or maintenance of PPH, which warrants further investigation.

Adolescent↗

Continuous intravenous epoprostenol for pulmonary hypertension due to the scleroderma spectrum of disease. A randomized, controlled trial.

BACKGROUND: Pulmonary hypertension is a progressive and often fatal complication of the scleroderma spectrum of disease for which no treatment has been proven effective in a randomized trial. OBJECTIVE: To determine the effect of epoprostenol on pulmonary hypertension secondary to the scleroderma spectrum of disease. DESIGN: Randomized, open-label, controlled trial. SETTING: 17 pulmonary hypertension referral centers. PATIENTS: 111 patients with moderate to severe pulmonary hypertension. INTERVENTION: Epoprostenol plus conventional therapy or conventional therapy alone. MEASUREMENTS: The primary outcome measure was exercise capacity. Other measures were cardiopulmonary hemodynamics, signs and symptoms of pulmonary hypertension and scleroderma, and survival. RESULTS: Exercise capacity improved with epoprostenol (median distance walked in 6 minutes, 316 m at 12 weeks compared with 270 m at baseline) but decreased with conventional therapy (192 m at 12 weeks compared with 240 m at baseline). The difference between treatment groups in the median distance walked at week 12 was 108 m (95% CI, 55.2 m to 180.0 m) (P < 0.001). Hemodynamics improved at 12 weeks with epoprostenol. The changes in mean pulmonary artery pressure for the epoprostenol and conventional therapy groups were -5.0 and 0.9 mm Hg, respectively (difference, -6.0 mm Hg [CI, -9.0 to -3.0 mm Hg), and the mean changes in pulmonary vascular resistance were -4.6 and 0.9 mm Hg/L per minute, respectively (difference, -5.5 mm Hg/L per minute [CI, -7.3 to -3.7 mm Hg/L per minute). Twenty-one patients treated with epoprostenol and no patients receiving conventional therapy showed improved New York Heart Association functional class. Borg Dyspnea Scores and Dyspnea-Fatigue Ratings improved in the epoprostenol group. Trends toward greater improvement in severity of the Raynaud phenomenon and fewer new digital ulcers were seen in the epoprostenol group. Four patients in the epoprostenol group and five in the conventional therapy group died (P value not significant). Side effects of epoprostenol therapy included jaw pain, nausea, and anorexia. Adverse events related to the epoprostenol delivery system included sepsis, cellulitis, hemorrhage, and pneumothorax (4% incidence for each condition). CONCLUSIONS: Continuous epoprostenol therapy improves exercise capacity and cardiopulmonary hemodynamics in patients with pulmonary hypertension due to the scleroderma spectrum of disease.

Adult↗

Epoprostenol for treatment of pulmonary hypertension in patients with systemic lupus erythematosus.

OBJECTIVE: Pulmonary hypertension with pathological changes similar to those observed in primary pulmonary hypertension occurs in patients with systemic lupus erythematosus (SLE). The efficacy of chronic epoprostenol therapy in SLE has not been well described. The objective of this paper is to describe our experience with long-term epoprostenol therapy in patients with pulmonary hypertension associated with SLE. DESIGN: Case series of six patients with SLE and associated pulmonary hypertension receiving chronic treatment with epoprostenol. RESULTS: All 6 patients had severe pulmonary hypertension. Mean pulmonary artery pressure (mPAP) was 57 +/- 9 mm Hg (mean +/- SD), and pulmonary vascular resistance was 14 +/- 7 units before beginning therapy with epoprostenol. In 4 patients who underwent repeat hemodynamic evaluation (9 to 16 months after starting epoprostenol), mean pulmonary artery pressure decreased by 38 +/- 21% and pulmonary vascular resistance by 58 +/- 12%. Clinically, all patients improved from New York Heart Association class III or IV to class I or II. Doses of epoprostenol ranged from 4 to 46 ng/kg/min, and the longest duration of therapy has been 2.5 years. Side effects from epoprostenol have not differed from those seen in patients with primary pulmonary hypertension, and except for one patient, there has been no exacerbation of SLE. CONCLUSION: Epoprostenol was effective for the treatment of pulmonary hypertension in this small group of patients with SLE. Further evaluation of epoprostenol therapy for patients with SLE and other diseases associated with pulmonary hypertension is warranted.

Adult↗

Pulmonary veno-occlusive disease: a case series and new observations.

STUDY OBJECTIVES: The aim of this study was to describe our experience at one institution with pulmonary veno-occlusive disease (PVOD) during the past 10 years, with particular reference to new findings and long-term outcome. SETTING: Tertiary care, academic medical center. PATIENTS AND METHODS: Eleven patients who were evaluated and treated for PVOD at our institution were retrospectively studied. Included were all available clinical, radiographic, hemodynamic, and pathologic data. RESULTS: All 11 patients in our series had at least one symptom or clinical finding that, in conjunction with known pulmonary hypertension, suggested the diagnosis of PVOD. Digital clubbing, not previously reported in PVOD, was found in 5 patients, rales in 6, and increased interstitial markings on chest radiograph in 10. Half of the 10 patients who underwent acute vasodilator testing exhibited a decrease in pulmonary artery pressure of > 20%, although one patient died shortly after receiving IV calcium-channel blockers. Three patients have demonstrated sustained clinical improvement with therapy, which includes calcium-channel blockers, epoprostenol, and lung transplantation in one patient each. However, outcome was generally poor, with a 72% mortality within 1 year of diagnosis. CONCLUSION: The diagnosis of PVOD requires a high clinical suspicion. However, both physical examination findings and radiographic studies often provide clues to the diagnosis, which may obviate the need for lung biopsy in the majority of cases. Although there may be patients who respond to medical therapy, the use of vasoactive medications in patients with PVOD should be undertaken with great caution. Long-term survival is poor, and lung transplantation remains the only proven therapy.

Adult↗

Pulmonary vein stenosis after catheter ablation of atrial fibrillation.

BACKGROUND: This report describes the complication of pulmonary vein stenosis with resultant severe pulmonary hypertension that developed in 2 patients after successful catheter ablation of chronic atrial fibrillation. METHODS AND RESULTS: Three months after successful catheter ablation of atrial fibrillation, both patients developed progressive dyspnea and pulmonary hypertension. Both were found to have severe stenosis of all 4 pulmonary veins near the junction with the left atrium. Balloon dilation of the stenotic pulmonary veins was performed in these patients, with improvement in dyspnea and pulmonary hypertension. CONCLUSIONS: The complication of pulmonary vein stenosis is potentially life-threatening, and the application of radiofrequency current within the pulmonary veins with standard catheter technology should be avoided. This complication can be treated with balloon dilation, although the long-term course is unknown.

Adult↗

Angiotensin II mediates systemic rebound hypertension after cessation of prostacyclin infusion in sheep.

Prostacyclin (or epoprostenol), an arachidonic acid metabolite, is an effective treatment for patients with primary pulmonary hypertension. Interruption of chronic prostacyclin infusion can result in recurrent symptoms of dyspnea and fatigue. The etiology of this phenomenon is unknown. We hypothesized that sympathoadrenal activation could lead to increased vascular tone after abrupt termination of the infusion. To evaluate this effect, we monitored six chronically instrumented, awake sheep during and after infusion of prostacyclin. Prostacyclin decreased mean arterial pressure (MAP) by 14% and increased cardiac output by 33%. After the infusion ceased, MAP rebounded 23% above baseline, and cardiac output decreased by 28% from peak values within 10 min. We were unable to demonstrate an increase in norepinephrine levels after cessation of prostacyclin, nor did alpha-adrenergic blockade affect postinfusion hemodynamics. However, plasma renin activity increased >10-fold at peak infusion and remained elevated for up to 2 h after discontinuation of prostacyclin. Coinfusion of the angiotensin II-receptor antagonist L-158,809 resulted in complete abrogation of the postcessation rise in MAP. We conclude that renin-angiotensin system activation is primarily responsible for systemic hypertension occurring after abrupt cessation of prostacyclin infusion in sheep and that angiotensin II receptor blockade prevents this response. Our data do not support a role for sympathetic nervous system activation in the systemic pressor response after prostacyclin infusion.

Adrenergic alpha-Antagonists↗

A survey of diagnostic practices and the use of epoprostenol in patients with primary pulmonary hypertension.

STUDY OBJECTIVE: To obtain information about the diagnosis and management of primary pulmonary hypertension (PPH), especially about the use of epoprostenol (Glaxo-Wellcome; Research Triangle Park, NC) in this patient population. BACKGROUND: Long-term IV epoprostenol therapy was approved recently for use in patients with PPH who are unresponsive to conventional therapy. Although epoprostenol represents a major advance in the treatment of PPH, there is no published consensus regarding the optimal use of this therapy. METHODS: A five-page survey was mailed to 23 investigators at medical centers treating five or more patients with PPH with long-term epoprostenol therapy. RESULTS: Nineteen of 23 investigators responded to the survey. During the initial hemodynamic evaluation, 11 investigators used changes in pulmonary vascular resistance (PVR), pulmonary artery pressure (PAP), and cardiac output, 5 investigators considered PVR and PAP only, and 2 investigators analyzed PVR alone to define a short-term vasodilator response. During long-term therapy, two thirds of the investigators increased the dose at scheduled intervals, while all investigators increased the dose in response to worsening symptoms. Epoprostenol doses were reported to range from 0.5 to 270 ng/kg/min. Nine investigators routinely repeated right heart catheterization an average of 7.5+/-3.8 months after starting epoprostenol, and the mean decrease in pulmonary artery pressure was between 15 and 25%. CONCLUSION: This survey indicates that there is wide variation in the evaluation of patients with PPH and in the use of epoprostenol therapy. The lack of consensus suggests the need for multicenter collaborative studies in order to optimize the use of epoprostenol therapy for PPH.

Antihypertensive Agents↗