scholarly journals Prognostic value of parameters of right ventricular and pulmonary artery function in patients with pulmonary hypertension receiving specific vasodilator therapy

2017 ◽  
Vol 9 (1) ◽  
pp. 46
Author(s):  
C. Ginghina ◽  
R. Enache ◽  
E. Popa ◽  
R.O. Jurcut ◽  
I.M. Coman ◽  
...  
2019 ◽  
Vol 116 (10) ◽  
pp. 1700-1709 ◽  
Author(s):  
Mario Boehm ◽  
Xuefei Tian ◽  
Yuqiang Mao ◽  
Kenzo Ichimura ◽  
Melanie J Dufva ◽  
...  

Abstract Aims The temporal sequence of events underlying functional right ventricular (RV) recovery after improvement of pulmonary hypertension-associated pressure overload is unknown. We sought to establish a novel mouse model of gradual RV recovery from pressure overload and use it to delineate RV reverse-remodelling events. Methods and results Surgical pulmonary artery banding (PAB) around a 26-G needle induced RV dysfunction with increased RV pressures, reduced exercise capacity and caused liver congestion, hypertrophic, fibrotic, and vascular myocardial remodelling within 5 weeks of chronic RV pressure overload in mice. Gradual reduction of the afterload burden through PA band absorption (de-PAB)—after RV dysfunction and structural remodelling were established—initiated recovery of RV function (cardiac output and exercise capacity) along with rapid normalization in RV hypertrophy (RV/left ventricular + S and cardiomyocyte area) and RV pressures (right ventricular systolic pressure). RV fibrotic (collagen, elastic fibres, and vimentin+ fibroblasts) and vascular (capillary density) remodelling were equally reversible; however, reversal occurred at a later timepoint after de-PAB, when RV function was already completely restored. Microarray gene expression (ClariomS, Thermo Fisher Scientific, Waltham, MA, USA) along with gene ontology analyses in RV tissues revealed growth factors, immune modulators, and apoptosis mediators as major cellular components underlying functional RV recovery. Conclusion We established a novel gradual de-PAB mouse model and used it to demonstrate that established pulmonary hypertension-associated RV dysfunction is fully reversible. Mechanistically, we link functional RV improvement to hypertrophic normalization that precedes fibrotic and vascular reverse-remodelling events.


2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Jose R. Navas-Blanco ◽  
Justin Miranda ◽  
Victor Gonzalez ◽  
Asif Mohammed ◽  
Oscar D. Aljure

Abstract Background The World Symposium of Pulmonary Hypertension in 2018, updated the definition of pulmonary hypertension (PH) as mean pulmonary artery pressures (PAP) > 20 mmHg. Pulmonary venous hypertension secondary to left-heart disease, constitutes the most common cause of PH, and the determination of a co-existent pre-capillary (primary) PH becomes paramount, particularly at the moment of evaluating and managing patients with heart failure. Pulmonary artery pressures above the systemic pressures define supra-systemic PH and generally leads to frank right ventricular failure and high mortality. Case presentation We present the perioperative management of a patient with rheumatic mitral valve disease, initially found to have severe PH due to pulmonary venous hypertension, who underwent percutaneous mitral balloon valvuloplasty complicated with mitral chordae rupture, severe mitral regurgitation and supra-systemic PH. Multiple medical therapies and an intra-aortic balloon pump were used as means of non-surgical management of this complication. Conclusions This case report illustrates the perioperative implications of combined pre- and post-capillary PH and supra-systemic PH, as this has not been widely discussed in previous literature. A thorough literature review of the clinical characteristics of PH, methods to determine co-existent pre- and post-capillary PH components, as well as concomitant right ventricular failure is presented. Severe PH has known detrimental effects on the hemodynamic status of patients, which can ultimately lead to a decrease in effective cardiac output and poor tissue perfusion.


2010 ◽  
Vol 55 (10) ◽  
pp. A154.E1446
Author(s):  
Gerin Rachel Stevens ◽  
Ana Garcia-Alvarez ◽  
Sean Pinney ◽  
Mario J. Garcia ◽  
Valentin Fuster ◽  
...  

2021 ◽  
Author(s):  
Janus Adler Hyldebrandt ◽  
Nikolaj Bøgh ◽  
Camilla Omann Christensen ◽  
Peter Agger

Abstract Background: Pulmonary hypertension is a significant risk factor in patients undergoing surgery. The combined effects of general anaesthesia and positive pressure ventilation can aggravate this condition and cause increased pulmonary blood pressures, reduced systemic blood pressures and ventricular contractility. Although perioperative use of inotropic support or vasopressors is almost mandatory for these patients, preference is disputed. In this study, we investigated the effects of norepinephrine and dobutamine and their ability to improve the arterio-ventricular relationship and haemodynamics in pigs suffering from chronic pulmonary hypertension.Method: Pulmonary hypertension was induced in five pigs by banding the pulmonary artery at 2–3 weeks of age. Six pigs served as controls. After 16 weeks of pulmonary artery banding, the animals were re-examined under general anaesthesia using biventricular conductance catheters and a pulmonary artery catheter. After baseline measurements, the animals were exposed to both norepinephrine and dobutamine infusions in incremental doses, with a stabilizing period in between the infusions. The hypothesis of differences between norepinephrine and dobutamine with incremental doses was tested using repeated two-way ANOVA and Bonferroni multiple comparisons post-test. Results: At baseline, pulmonary artery banded animals had increased right ventricular pressure (+39%, p=0.04), lower cardiac index (-23% p=0.04), lower systolic blood pressure (-13%, p=0.02) and reduced left ventricular end-diastolic volume (-33%, p=0.02). When incremental doses of norepinephrine and dobutamine were administered, the right ventricular arterio-ventricular coupling was improved only by dobutamine (p<0.05). Norepinephrine increased both left ventricular end-diastolic volume and left ventricular contractility to a greater extent (p<0.05) in pulmonary artery banded animals. While the cardiac index was improved equally by norepinephrine and dobutamine treatments in pulmonary artery banded animals, norepinephrine had a significantly greater effect on mean arterial pressure (p<0.05) and diastolic arterial pressure (p<0.05).Conclusion: While norepinephrine and dobutamine improved cardiac index equally, it was obtained in different manners. Dobutamine significantly improved the right ventricular function and the arterio-ventricular coupling. Norepinephrine increased systemic resistance, thereby improving arterial pressures and left ventricular systolic function by maintaining left ventricular end-diastolic volume.


1988 ◽  
Vol 255 (5) ◽  
pp. H1232-H1239 ◽  
Author(s):  
H. J. Priebe

This study was performed to determine 1) the effects of acute pulmonary embolization (induced by injection of autologous muscle) on right ventricular (RV) performance, coronary hemodynamics, and gas exchange; and 2) the efficacy of subsequent administration of nitroglycerin, prostaglandin E1, and hydralazine with regard to improvement in RV function and gas exchange in eight open-chest dogs. After embolization, pulmonary artery (PA) pressure and vascular resistance (PVR) increased three- to fivefold without changes in RV end-diastolic dimensions (ultrasonic dimension technique) or pressure. However, systolic dimensions increased, and stroke volume (SV) fell. Gas exchange, lung compliance, and pH worsened. Subsequent administration of nitroglycerin (5 micrograms.kg-1.min-1) and prostaglandin E1 (0.2 micrograms.kg-1.min-1) caused further decreases in SV and pH. In contrast, hydralazine (mean 0.15 mg/kg) improved myocardial segment shortening, SV, PVR, pulmonary artery flow, and gas exchange. Coronary blood flow increased by 110%. Thus in this canine model of combined pulmonary hypertension and respiratory insufficiency, nitroglycerin and prostaglandin E1 exerted no beneficial cardiopulmonary effects. In contrast, hydralazine improved regional and global RV performance and gas exchange.


2018 ◽  
Vol 39 (suppl_1) ◽  
Author(s):  
P Moceri ◽  
N Duchateau ◽  
D Baudouy ◽  
C Sanfiorenzo ◽  
F Squara ◽  
...  

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