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1.
Medicine (Baltimore) ; 103(18): e37992, 2024 May 03.
Article En | MEDLINE | ID: mdl-38701260

BACKGROUND: Multiple takayasu arteritis (TA) is a chronic nonspecific large to medium vasculitis disease that mainly accumulates the aorta and its branches. Pulmonary vascular disease is often seen as stenosis and occlusion, and patients may show no moderate to severe pulmonary hypertension (PH). This study aims to summarize the clinical characteristics and analysis of prognostic factors in patients with PH caused by TA. METHODS: Patients diagnosed with aortitis involving the pulmonary artery by pulmonary arteriography or pulmonary artery and total aortic computed tomography arteriography (CTA). All patients underwent detailed clinical assessment, laboratory data collection, and analysis of imaging data. Patients were followed up and factors affecting the prognosis of the pulmonary arteries were analyzed. RESULTS: Most of the patients' complaints were chest tightness, shortness of breath, decreased activity tolerance, hemoptysis and chest pain. 56.90% of the patients were in at the time of admission. Echocardiographic estimation of pulmonary artery systolic pressure was 90.39 ±â€…22.87 mm Hg. In terms of laboratory tests, 39.66%% of the patients had elevated C-reactive protein and erythrocyte sedimentation rate, and amino-terminal natriuretic peptide precursor on admission. In terms of imaging, all patients had pulmonary artery involvement, which was combined with aortic involvement in 31.03%. Nuclide lung perfusion/ventilation imaging of the patients revealed multiple perfusion defects/absences in the segmental and subsegmental distribution of the lungs. Univariate Cox regression model analysis suggested that patients' WHO functional class at admission, age ≧ 51 years at the time of consultation, and amino-terminal natriuretic peptide precursor ≧ 3500 pg/mL were factors affecting the prognosis. Further multifactorial Cox regression model analysis suggested amino-terminal natriuretic peptide precursor ≧ 3500 pg/mL was an independent predictor of poor prognosis with a hazard ratio (HR) value of 5.248. CONCLUSION: Electrocardiogram and echocardiogram may suggest an increased right heart load; some patients have elevated serum inflammatory indexes. Characteristic imaging manifestations include widening of the main pulmonary artery, multiple pulmonary segmental and subsegmental stenoses.


Hypertension, Pulmonary , Pulmonary Artery , Takayasu Arteritis , Humans , Takayasu Arteritis/complications , Takayasu Arteritis/physiopathology , Female , Hypertension, Pulmonary/etiology , Hypertension, Pulmonary/physiopathology , Retrospective Studies , Adult , Male , Prognosis , Pulmonary Artery/diagnostic imaging , Pulmonary Artery/physiopathology , Middle Aged , Young Adult , Echocardiography/methods , Computed Tomography Angiography/methods
5.
Methodist Debakey Cardiovasc J ; 20(3): 57-64, 2024.
Article En | MEDLINE | ID: mdl-38765209

Chronic thromboembolic pulmonary hypertension is a rare form of pulmonary hypertension in patients who have evidence of chronic thromboembolic occlusion of the pulmonary vasculature. Historically, surgical pulmonary thromboendarterectomy has been the treatment of choice. However, with up to 40% of patients deemed inoperable, balloon pulmonary angioplasty has emerged as an additional treatment strategy. Balloon pulmonary angioplasty is a complementary strategy alongside surgical pulmonary thromboendarterectomy and offers the opportunity for pulmonary revascularization in patients who have more distal disease, higher comorbidities, or residual obstruction following operative intervention. This review examines the history of balloon pulmonary angioplasty, highlights its effectiveness, discusses important complications and risk reduction strategies, and emphasizes the importance of centers forming a multidisciplinary team of providers to manage the complexity of patients with chronic thromboembolic pulmonary hypertension.


Angioplasty, Balloon , Hypertension, Pulmonary , Pulmonary Artery , Pulmonary Embolism , Humans , Pulmonary Embolism/physiopathology , Pulmonary Embolism/therapy , Pulmonary Embolism/surgery , Pulmonary Embolism/complications , Chronic Disease , Treatment Outcome , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/therapy , Hypertension, Pulmonary/diagnosis , Pulmonary Artery/physiopathology , Pulmonary Artery/surgery , Risk Factors , Arterial Pressure , Endarterectomy/adverse effects
6.
Open Heart ; 11(1)2024 May 07.
Article En | MEDLINE | ID: mdl-38719497

BACKGROUND: The treatment of pulmonary hypertension (PH) has improved rapidly in recent decades. There is increasing evidence to support the role of early intervention and treatment in affecting clinical outcomes in PH. OBJECTIVES: To assess treatment effects before and after the escalation of specific PH treatments using continuous heart monitoring with a Reveal LINQ loop recorder. METHODS: Patients were compared before and after treatment escalation. Treatment escalation was defined as an additional pulmonary arterial hypertension (PAH) drug, pulmonary endarterectomy, percutaneous balloon angioplasty or bilateral lung transplantation. Specifically, changes in heart rate variability (HRV), heart rate (HR) and physical activity were assessed. RESULTS: In this prospective study, 41 patients (27 with PAH and 14 with chronic thromboembolic pulmonary hypertension (CTEPH)) were enrolled. Among them, 15 (36.6%) patients underwent PH treatment escalation. Prior to escalation, patients were monitored for a median of 100 (range: 68-100) days and after therapy escalation for a median duration of 165 (range: 89-308) days. In the escalation group, there was a significant increase in HRV, physical activity indexed by daytime HR and a significant decrease in nighttime HR assessed at baseline and after treatment escalation in both the PAH and CTEPH groups. This was paralleled by significant improvements in WHO functional class, 6-min walking distance and N-terminal pro-b-type natriuretic peptide. CONCLUSIONS: This is the first study to demonstrate an association between specific PH therapies and changes in HRV, HR nighttime and physical activity. This indicates the potential of continuous monitoring in the evaluation of treatment effects in PH.


Heart Rate , Hypertension, Pulmonary , Humans , Female , Male , Middle Aged , Prospective Studies , Heart Rate/physiology , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/diagnosis , Hypertension, Pulmonary/therapy , Treatment Outcome , Endarterectomy/methods , Aged , Antihypertensive Agents/therapeutic use , Time Factors , Angioplasty, Balloon/methods , Adult , Lung Transplantation , Electrocardiography, Ambulatory/methods , Pulmonary Artery/physiopathology
7.
Sleep Med Clin ; 19(2): 307-325, 2024 Jun.
Article En | MEDLINE | ID: mdl-38692755

The pathophysiological interplay between sleep-disordered breathing (SDB) and pulmonary hypertension (PH) is complex and can involve a variety of mechanisms by which SDB can worsen PH. These mechanistic pathways include wide swings in intrathoracic pressure while breathing against an occluded upper airway, intermittent and/or sustained hypoxemia, acute and/or chronic hypercapnia, and obesity. In this review, we discuss how the downstream consequences of SDB can adversely impact PH, the challenges in accurately diagnosing and classifying PH in the severely obese, and review the limited literature assessing the effect of treating obesity, obstructive sleep apnea, and obesity hypoventilation syndrome on PH.


Hypertension, Pulmonary , Obesity Hypoventilation Syndrome , Sleep Apnea, Obstructive , Humans , Obesity Hypoventilation Syndrome/therapy , Obesity Hypoventilation Syndrome/physiopathology , Obesity Hypoventilation Syndrome/diagnosis , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/therapy , Hypertension, Pulmonary/diagnosis , Sleep Apnea, Obstructive/physiopathology , Sleep Apnea, Obstructive/therapy , Sleep Apnea, Obstructive/complications , Sleep Apnea, Obstructive/diagnosis
8.
BMC Pulm Med ; 24(1): 226, 2024 May 10.
Article En | MEDLINE | ID: mdl-38724947

BACKGROUND: Inhaled nitric oxide (iNO) selectively acts on the pulmonary vasculature of ventilated lung tissue by reducing pulmonary vascular resistance and intrapulmonary shunt. This effect may reduce ventilation/perfusion mismatch and decrease pulmonary hypertension in patients with interstitial lung disease. METHODS: In a prospective, single-blinded, randomized, placebo-controlled trial, participants with advanced interstitial lung disease, underwent two separate six-minute walk tests (6MWT): one with iNO and the other with a placebo. The primary outcome measured the difference in meters between the distances covered in the two tests. Secondary outcomes included oxygen saturation levels, distance-saturation product, and Borg dyspnea score. A predefined subgroup analysis was conducted for patients with pulmonary hypertension. RESULTS: Overall, 44 patients were included in the final analysis. The 6MWT distance was similar for iNO treatment and placebo, median 362 m (IQR 265-409) vs 371 m (IQR 250-407), respectively (p = 0.29). Subgroup analysis for patients with pulmonary hypertension showed no difference in 6MWT distance with iNO and placebo, median 339 (256-402) vs 332 (238-403) for the iNO and placebo tests respectively (P=0.50). No correlation was observed between mean pulmonary artery pressure values and the change in 6MWT distance with iNO versus placebo (spearman correlation Coefficient 0.24, P=0.33). CONCLUSION: In patients with advanced interstitial lung disease, both with and without concurrent pulmonary hypertension, the administration of inhaled nitric oxide failed to elicit beneficial effects on the six-minute walk distance and oxygen saturation. The use of inhaled NO was found to be safe and did not lead to any serious side effects. TRIAL REGISTRATION: (NCT03873298, MOH_2018-04-24_002331).


Exercise Tolerance , Hypertension, Pulmonary , Lung Diseases, Interstitial , Nitric Oxide , Walk Test , Humans , Lung Diseases, Interstitial/drug therapy , Lung Diseases, Interstitial/physiopathology , Nitric Oxide/administration & dosage , Male , Female , Administration, Inhalation , Middle Aged , Aged , Prospective Studies , Exercise Tolerance/drug effects , Hypertension, Pulmonary/drug therapy , Hypertension, Pulmonary/physiopathology , Single-Blind Method , Oxygen Saturation
10.
PLoS One ; 19(5): e0298727, 2024.
Article En | MEDLINE | ID: mdl-38768104

Cardiac output (CO) is one of the primary prognostic factors evaluated during the follow-up of patients treated for pulmonary hypertension (PH). It is recommended that it be measured using the thermodilution technique during right heart catheterization. The difficulty to perform iterative invasive measurements on the same individual led us to consider a non-invasive option. The aims of the present study were to assess the agreement between CO values obtained using bioreactance (Starling™ SV) and thermodilution, and to evaluate the ability of the bioreactance monitor to detect patients whose CO decreased by more than 15% during follow-up and, accordingly, its usefulness for patient monitoring. A prospective cohort study evaluating the performance of the Starling™ SV monitor was conducted in patients with clinically stable PH. Sixty patients referred for hemodynamic assessment were included. CO was measured using both the thermodilution technique and bioreactance during two follow-up visits. A total of 60 PH patients were included. All datasets were available at the baseline visit (V0) and 50 of them were usable during the follow-up visit (V1). Median [IQR] CO was 4.20 l/min [3.60-4.70] when assessed by bioreactance, and 5.30 l/min [4.57-6.20] by thermodilution (p<0.001). The Spearman correlation coefficient was 0.51 [0.36-0.64], and the average deviation on Bland-Altman plot was -1.25 l/min (95% CI [-1.48-1.01], p<0.001). The ability of the monitor to detect a variation in CO of more than 15% between two follow-up measurements, when such variation existed using thermodilution, was insufficient for clinical practice (AUC = 0.54, 95% CI [0.33-0.75]).


Cardiac Output , Hypertension, Pulmonary , Thermodilution , Humans , Cardiac Output/physiology , Female , Male , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/diagnosis , Middle Aged , Thermodilution/methods , Follow-Up Studies , Prospective Studies , Aged , Reproducibility of Results , Monitoring, Physiologic/methods , Cardiac Catheterization , Adult
11.
Int J Mol Sci ; 25(9)2024 Apr 30.
Article En | MEDLINE | ID: mdl-38732160

Despite the end of the pandemic, coronavirus disease 2019 (COVID-19) remains a major public health concern. The first waves of the virus led to a better understanding of its pathogenesis, highlighting the fact that there is a specific pulmonary vascular disorder. Indeed, COVID-19 may predispose patients to thrombotic disease in both venous and arterial circulation, and many cases of severe acute pulmonary embolism have been reported. The demonstrated presence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) within the endothelial cells suggests that direct viral effects, in addition to indirect effects of perivascular inflammation and coagulopathy, may contribute to pulmonary vasculopathy in COVID-19. In this review, we discuss the pathological mechanisms leading to pulmonary vascular damage during acute infection, which appear to be mainly related to thromboembolic events, an impaired coagulation cascade, micro- and macrovascular thrombosis, endotheliitis and hypoxic pulmonary vasoconstriction. As many patients develop post-COVID symptoms, including dyspnea, we also discuss the hypothesis of pulmonary vascular damage and pulmonary hypertension as a sequela of the infection, which may be involved in the pathophysiology of long COVID.


COVID-19 , SARS-CoV-2 , Humans , COVID-19/complications , COVID-19/virology , COVID-19/pathology , SARS-CoV-2/pathogenicity , Lung/blood supply , Lung/pathology , Lung/virology , Pulmonary Embolism/virology , Pulmonary Embolism/etiology , Hypertension, Pulmonary/etiology , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/virology , Hypertension, Pulmonary/pathology , Post-Acute COVID-19 Syndrome , Thrombosis/virology , Thrombosis/etiology , Thrombosis/pathology
13.
Curr Probl Cardiol ; 49(7): 102614, 2024 Jul.
Article En | MEDLINE | ID: mdl-38692447

Pulmonary hypertension (PH) with high pulmonary vascular resistance (PVR) is a very often diagnosed contraindication for orthotopic heart transplantation (OHT). It is a direct consequence of left ventricle failure characterized by high diastolic pressure obstructing the collection of blood from the pulmonary vessels. The occurrence of this situation grows with the increasing time of waiting for OHT, and with the progression of heart failure. Mechanical circulatory support (MCS) devices, particularly left ventricular assist devices (LVADs), have emerged as pivotal interventions for patients with fixed PH, offering a potential bridge to transplantation. The pathophysiological impact of PH in heart transplant candidates is profound, as it is associated with increased perioperative risk and heightened mortality post-transplantation. The selection of heart transplant candidates thus mandates a careful evaluation of PH, with an emphasis on distinguishing between reversible and fixed forms of the condition. Reversible PH can often be managed with medical therapies; however, fixed PH presents a more daunting challenge, necessitating more aggressive interventions like MCS. Patients are supported with LVADs until evidence of pulmonary afterload reversal is evident and then can be considered for heart transplantation. However, in those who are non-responders or have complications while being supported, their option for transplant is revoked. Despite these advancements, the heterogeneity of MCS devices and their mechanisms of action necessitates a nuanced understanding of their efficacy.


Heart Failure , Heart Transplantation , Heart-Assist Devices , Hypertension, Pulmonary , Humans , Hypertension, Pulmonary/therapy , Hypertension, Pulmonary/etiology , Hypertension, Pulmonary/physiopathology , Heart Failure/therapy , Heart Failure/physiopathology , Treatment Outcome , Vascular Resistance/physiology
14.
Circ Heart Fail ; 17(5): e010826, 2024 May.
Article En | MEDLINE | ID: mdl-38708598

BACKGROUND: While tricuspid annular plane systolic excursion (TAPSE) captures the predominant longitudinal motion of the right ventricle (RV), it does not account for ventricular morphology and radial motion changes in various forms of pulmonary hypertension. This study aims to account for both longitudinal and radial motions by dividing TAPSE by RV area and to assess its clinical significance. METHODS: We performed a retrospective analysis of 71 subjects with New York Heart Association class II to III dyspnea who underwent echocardiogram and invasive cardiopulmonary exercise testing (which defined 4 hemodynamic groups: control, isolated postcapillary pulmonary hypertension, combined postcapillary pulmonary hypertension, and pulmonary arterial hypertension). On the echocardiogram, TAPSE was divided by RV area in diastole (TAPSE/RVA-D) and systole (TAPSE/RVA-S). Analyses included correlations (Pearson and linear regression), receiver operating characteristic, and survival curves. RESULTS: On linear regression analysis, TAPSE/RVA metrics (versus TAPSE) had a stronger correlation with pulmonary artery compliance (r=0.48-0.54 versus 0.38) and peak VO2 percentage predicted (0.23-0.30 versus 0.18). Based on the receiver operating characteristic analysis, pulmonary artery compliance ≥3 mL/mm Hg was identified by TAPSE/RVA-D with an under the curve (AUC) of 0.79 (optimal cutoff ≥1.1) and by TAPSE/RVA-S with an AUC of 0.83 (optimal cutoff ≥1.5), but by TAPSE with only an AUC of 0.67. Similarly, to identify peak VO2 <50% predicted, AUC of 0.66 for TAPSE/RVA-D and AUC of 0.65 for TAPSE/RVA-S. Death or cardiovascular hospitalization at 12 months was associated with TAPSE/RVA-D ≥1.1 (HR, 0.38 [95% CI, 0.11-0.56]) and TAPSE/RVA-S ≥1.5 (HR, 0.44 [95% CI, 0.16-0.78]), while TAPSE was not associated with adverse outcomes (HR, 0.99 [95% CI, 0.53-1.94]). Among 31 subjects with available cardiac magnetic resonance imaging, RV ejection fraction was better correlated with novel metrics (TAPSE/RVA-D r=0.378 and TAPSE/RVA-S r=0.328) than TAPSE (r=0.082). CONCLUSIONS: In a broad cohort with suspected pulmonary hypertension, TAPSE divided by RV area was superior to TAPSE alone in correlations with pulmonary compliance and exercise capacity. As a prognostic marker of right heart function, TAPSE/RVA-D <1.1 and TAPSE/RVA-S <1.5 predicted adverse cardiovascular outcomes.


Exercise Test , Exercise Tolerance , Pulmonary Artery , Ventricular Function, Right , Humans , Male , Female , Retrospective Studies , Middle Aged , Exercise Tolerance/physiology , Ventricular Function, Right/physiology , Pulmonary Artery/physiopathology , Pulmonary Artery/diagnostic imaging , Aged , Heart Ventricles/physiopathology , Heart Ventricles/diagnostic imaging , Hypertension, Pulmonary/physiopathology , Tricuspid Valve/diagnostic imaging , Tricuspid Valve/physiopathology , Echocardiography , Predictive Value of Tests , Prognosis
16.
Circ Heart Fail ; 17(5): e011227, 2024 May.
Article En | MEDLINE | ID: mdl-38572639

BACKGROUND: This study aims to assess the impact of sotatercept on exercise tolerance, exercise capacity, and right ventricular function in pulmonary arterial hypertension. METHODS: SPECTRA (Sotatercept Phase 2 Exploratory Clinical Trial in PAH) was a phase 2a, single-arm, open-label, multicenter exploratory study that evaluated the effects of sotatercept by invasive cardiopulmonary exercise testing in participants with pulmonary arterial hypertension and World Health Organization functional class III on combination background therapy. The primary end point was the change in peak oxygen uptake from baseline to week 24. Cardiac magnetic resonance imaging was performed to assess right ventricular function. RESULTS: Among the 21 participants completing 24 weeks of treatment, there was a significant improvement from baseline in peak oxygen uptake, with a mean change of 102.74 mL/min ([95% CIs, 27.72-177.76]; P=0.0097). Sotatercept demonstrated improvements in secondary end points, including resting and peak exercise hemodynamics, and 6-minute walk distance versus baseline measures. Cardiac magnetic resonance imaging showed improvements from baseline at week 24 in right ventricular function. CONCLUSIONS: The clinical efficacy and safety of sotatercept demonstrated in the SPECTRA study emphasize the potential of this therapy as a new treatment option for patients with pulmonary arterial hypertension. Improvements in right ventricular structure and function underscore the potential for sotatercept as a disease-modifying agent with reverse-remodeling capabilities. REGISTRATION: URL: https://www.clinicaltrials.gov; Unique identifier: NCT03738150.


Exercise Tolerance , Pulmonary Arterial Hypertension , Ventricular Function, Right , Humans , Exercise Tolerance/drug effects , Male , Female , Ventricular Function, Right/drug effects , Middle Aged , Pulmonary Arterial Hypertension/drug therapy , Pulmonary Arterial Hypertension/physiopathology , Adult , Treatment Outcome , Exercise Test , Recombinant Fusion Proteins/therapeutic use , Aged , Hypertension, Pulmonary/drug therapy , Hypertension, Pulmonary/physiopathology , Oxygen Consumption/drug effects , Walk Test , Activin Receptors, Type II/therapeutic use , Recovery of Function
17.
An Acad Bras Cienc ; 96(3): e20230446, 2024.
Article En | MEDLINE | ID: mdl-38655920

Pulmonary arterial hypertension (PAH) is characterized by right ventricular failure and diminished cardiac output, potentially leading to renal and bone impairments. In contrast, resistance exercise training (RT) offers cardiovascular and bone health benefits. This study aimed to assess the impacts of stable PAH induced by monocrotaline (MCT) and RT on renal morphometry, as well as bone morphometry and biomechanical properties in male Wistar rats. Four experimental groups, untrained control (UC, n=7), trained control (TC, n=7), untrained hypertensive (UH, n=7), trained hypertensive (TH, n=7), were defined. After the first MCT or saline injection (20 mg/kg), trained rats were submitted to a RT program (i.e., Ladder climbing), 5 times/week. Seven days later the rats received the second MCT or saline dose. After euthanasia, renal and femoral histomorphometry and femoral biomechanical properties were assessed. PAH reduced renal glomerular area and volume, which was prevented by the RT. While PAH did not harm the femoral morphometry, structural and mechanical properties, RT improved the femoral parameters (e.g., length, percentage of trabeculae and bone marrow, ultimte and yield loads). Experimental stable PAH promotes renal but not bone damages, whereas RT prevents renal deteriorations and improves the femoral morphological and biomechanical properties.


Disease Models, Animal , Kidney , Monocrotaline , Physical Conditioning, Animal , Rats, Wistar , Resistance Training , Animals , Male , Physical Conditioning, Animal/physiology , Rats , Kidney/physiopathology , Kidney/pathology , Resistance Training/methods , Pulmonary Arterial Hypertension/physiopathology , Femur/pathology , Femur/physiopathology , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/chemically induced
20.
Methods Mol Biol ; 2803: 163-172, 2024.
Article En | MEDLINE | ID: mdl-38676892

Pulmonary hypertension (PH) is a devastating disease, characterized by complex remodeling of the pulmonary vasculature. PH is classified into five groups based on different etiology, pathology, as well as therapy and prognosis. Animal models are essential for the study of underlying mechanisms, pathophysiology, and preclinical testing of new therapies for PH. The complexity of the disease with different clinical entities dictates the necessity for more than one animal model to resemble PH, as a single model cannot imitate the broad spectrum of human PH.Here we describe a detailed protocol for creating a rat model of PH with right ventricular (RV) failure. Furthermore, we present how to characterize it hemodynamically by invasive measurements of RV and pulmonary arterial (PA) pressures. Animals subjected to this model display severe pulmonary vascular remodeling and RV dysfunction. In this model, rats undergo a single subcutaneous injection of Sugen (SU5416, a vascular endothelial growth factor inhibitor) and are immediately exposed to chronic hypoxia in a hypoxia chamber for 3-6 weeks. This Sugen/Hypoxia rat model resembles Group 1 PH.


Disease Models, Animal , Heart Failure , Hypertension, Pulmonary , Hypoxia , Animals , Hypertension, Pulmonary/physiopathology , Hypertension, Pulmonary/pathology , Hypertension, Pulmonary/etiology , Rats , Hypoxia/metabolism , Heart Failure/physiopathology , Heart Failure/etiology , Heart Failure/pathology , Pyrroles/pharmacology , Indoles/pharmacology , Ventricular Dysfunction, Right/physiopathology , Ventricular Dysfunction, Right/etiology , Hemodynamics , Pulmonary Artery/pathology , Pulmonary Artery/physiopathology , Male , Humans , Vascular Remodeling , Vascular Endothelial Growth Factor A/metabolism
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