scholarly journals Vasoactive Substances in Pulmonary Embolism

1977 ◽  
Author(s):  
M.H. Todd ◽  
J.B. Forrest ◽  
J. Hirsh

Embolisation of the pulmonary vasculature with microspheres releases prostaglandin-1ike substances, PGLS (Piper and Vane, N.Y. Acad. Sei. 180: 363, 1971) but the capacity of autologous blood clots (ABC) to release pulmonary vasoactive substances is disputed. Ten normal mongrel dogs were anesthetised with pentobarbitone sodium and instrumented. Pulmonary venous blood was continuously superfused over isolated tissues for bioassay and then returned to the animal. Injection of ABC into the right atrium increased pulmonary artery pressure from 21 ± 6.5 mm Hg to 38 ± 15 mm Hg (mean ± S.D.), increased arterial pCO2 and decreased arterial pO2. No significant changes in heart rate, systemic arterial blood pressure or cardiac output occurred. In three animals contractions of the blood superfused assay tissues occurred following embolism. This effect was produced in normal assay tissues and those pretreated with antagonists of ACh, Serotonin, Histamine and Catecholamines and could therefore be attributed to PGLS. No cardiovascular or assay tissue tension changes were observed when equivalent volumes of saline or clot lysate were injected into the right atrium.Therefore, pulmonary embolism with ABC can release PGLS which may contribute to the pulmonary artery pressure rise. Vasoactive substances may normally be inactivated in the lung but in some animals appear in pulmonary venous blood.(Supported by the Ontario Heart Foundation)

2018 ◽  
Vol 57 (5) ◽  
pp. 647-654
Author(s):  
Masaomi Gohbara ◽  
Keigo Hayakawa ◽  
Azusa Hayakawa ◽  
Yusuke Akazawa ◽  
Yukihiro Yamaguchi ◽  
...  

2021 ◽  
Vol 22 (Supplement_1) ◽  
Author(s):  
KIRILL Malikov ◽  
MARINA Kirichkova ◽  
MARIA Simakova ◽  
NARECK Marukyan ◽  
OLGA Moiseeva

Abstract Funding Acknowledgements Type of funding sources: None. Introduction Chronic thromboembolic pulmonary hypertension (CTEPH) leads to a progressive increase in pulmonary vascular resistance (PVR) and pulmonary artery pressure (PAP) with the development of severe dysfunction of the right heart and heart failure. Mortality for three years with an average pressure in the pulmonary artery (PA) of more than 50 mmHg is more than 90%. Balloon pulmonary angioplasty (BPA) has a significant advantage over other methods of surgical treatment, but it requires the determination of additional non-invasive markers of effectiveness. Transthoracic echocardiography (TTE) remains the main method for assessing the morphology and function of the heart. Purpose Compare different indicators reflecting the severity of CTEPH with TTE indicators before and after BPA. To evaluate the effectiveness of using BPA for the treatment of patients with CTEPH using routine TTE and speckle tracking mode. Materials and methods For 18 months 30 patients without concomitant cardiovascular pathology were subjected to several BPA sessions. Before treatment, 50% of patients belonged to the 3 CTEPH functional class (FC), 40% to 2 FC, 10% to 1 FC. The average number of sessions was 4.7 ± 1.3. Before the first BPA and after the last, all the patients were performed: six-minute walk test (6MWT, metres), Borg scale (in points), test for NT-proBNP (pg/ml); TTE with assessment of the right ventricle (RV) and left ventricle (LV) including areas of the right atrium (aRA, cm2), mean pulmonary artery pressure (PUPM,mmHg),RV free wall strain (GLSFW, %), RV free wall strain rate (GLSRFW, sm/sec), RV free wall postsystolic shortening (PSSFW, %), tricuspid annular plane systolic excursion (TAPSE, sm), tricuspid annulus systolic velocity (TASV, sm/sec). Results. Before the first BPA session, the 6MWT in the patient group averaged 315.9 ± 9.08 metres, after - 439.5 ± 11.45 m; the Borg from 5.4 ± 0.94 points decreased to 4 ± 1.01 points; NT-proBNP before the treatment was 1513 ± 13.01 pg/ml, after - 171 ± 6.09; according to TTE the ratio of RV/ LV before and after treatment was 1.31 ± 0.02 and 0.97 ± 0.04; aRA was 29.3 ± 4.87 and 22.3 ± 3.53 cm2; basal RV - 52 ± 5.11 and 44 ± 7.26 mm; PUPM decreased from 76.6 ± 7.65 to 31.3 ± 3.78 mmHg; GLSFW from -14.69 ± 2.33 came to 17.5 ± 3.45 %; GLSRFW with -0.9 ± 0.09 to -1.7 ± 0.11 cm/sec; TAPSE from 16.7 ± 1.87 to 18.2 ± 2.34 cm; TASV from 10.11 ± 1.45 to 12.25 ± 1.98 cm/s, PSSFW before treatment was -18.4 ± 1.2%, after treatment in 66% of patients disappeared, in 34% became an average of 17.4 ± 0.9% The distribution of STEPH FC has also changed. Conclusion. BPA leads to an improvement in the tolerance of physical activity, clinical indicators, and parameters of central hemodynamics in the pulmonary circulation, evaluated according to direct manometry, and leads to reverse remodeling of the RV in the long term. Performing a staged BPA leads to an improvement in the functional parameters of contractility of the RV.


1980 ◽  
Vol 59 (s6) ◽  
pp. 465s-468s ◽  
Author(s):  
T. L. Svendsen ◽  
J. E. Carlsen ◽  
O. Hartling ◽  
A. McNair ◽  
J. Trap-Jensen

1. Dose-response curves for heart rate, cardiac output, arterial blood pressure and pulmonary artery pressure were obtained in 16 male patients after intravenous administration of three increasing doses of pindolol, propranolol or placebo. All patients had an uncomplicated acute myocardial infarction 6–8 months earlier. 2. The dose-response curves were obtained at rest and during repeated bouts of supine bicycle exercise. The cumulative dose amounted to 0.024 mg/kg body weight for pindolol and to 0.192 mg/kg body weight for propranolol. 3. At rest propranolol significantly reduced heart rate and cardiac output by 12% and 15% respectively. Arterial mean blood pressure was reduced by 9.2 mmHg. Mean pulmonary artery pressure increased significantly by 2 mmHg. Statistically significant changes in these variables were not seen after pindolol or placebo. 4. During exercise pindolol and propranolol both reduced cardiac output, heart rate and arterial blood pressure to the same extent. After propranolol mean pulmonary artery pressure was increased significantly by 3.6 mmHg. Pindolol and placebo did not change pulmonary artery pressure significantly. 5. The study suggests that pindolol may offer haemodynamic advantages over β-receptor-blocking agents without intrinsic sympathomimetic activity during low activity of the sympathetic nervous system, and may be preferable in situations where the β-receptor-blocking effect is required only during physical or psychic stress.


1993 ◽  
Vol 2 (6) ◽  
pp. 474-477 ◽  
Author(s):  
PA Shinners ◽  
MO Pease

OBJECTIVE: To compare hemodynamic measurements made before turning and at 5 and 30 minutes after turning, and to determine whether the stabilization period affects the difference between supine and side-lying pulmonary artery pressures. METHODS: This study was performed in the cardiothoracic surgical intensive care unit of a midwestern university hospital. The 31 postoperative open-heart surgical patients, 26 men and 5 women aged 41 to 76 years (64 +/- 9.3, mean +/- SD) with pulmonary artery catheters in place, were divided into two groups to compare supine to side-lying pressures and the time intervals between the position changes. The supine-first subjects (Group A) were placed in the supine position for baseline measurements and turned to either the right or left side-lying position for the 5- and 30-minute pulmonary artery pressure measurements. The side-first subjects (Group B) were placed in either the right or left side-lying position for baseline measurements and then in the supine position for the 5- and 30-minute pulmonary artery pressure measurements. RESULTS: Pulmonary artery pressures, heart rate and arterial pressure were not significantly different at 5 and 30 minutes. Supine pulmonary artery pressures in Group A were not significantly different from supine pressures in Group B. Side-lying pulmonary artery pressures in Group A were not significantly different from side-lying pressures in Group B. Side-lying vs supine pulmonary artery pressures were significantly different in both Group A and Group B. CONCLUSION: The current practice of turning and settling the patient, zeroing the transducer and proceeding to make the pulmonary artery pressure readings appears to be valid. The stabilization period after turning does not explain the differences found between side-lying and supine pulmonary artery pressures.


1991 ◽  
Vol 21 (2) ◽  
pp. 248
Author(s):  
Kwang Kon Koh ◽  
Myung A Kim ◽  
Joo Hee Cho ◽  
Myoung Mook Lee ◽  
Young Bae Park ◽  
...  

2020 ◽  
Author(s):  
Mahsa Behnemoon ◽  
Elham Laleh ◽  
Amin Sedokani ◽  
Ayatay Bahrami

Abstract Background: Pulmonary embolism (PE) is a relatively common health problem and the third most common cause of cardiovascular death with a 15-20 percent mortality rate. Severe pulmonary arterial hypertension is not common in acute forms of the disease, and we usually expect only mild to moderate degrees of PAH in these patients. However, we have encountered numerous cases of severe pulmonary hypertension after acute PE in our practice. In this study, we aimed to evaluate the echocardiographic findings of patients admitted with documented PE in a 5 years study of two heart centers of Urmia.Methods: In this retrospective study, the data of 183 patients with a definitive diagnosis of acute pulmonary embolism based on pulmonary CT angiography have entered the study.Results: Of the 183 cases diagnosed with pulmonary embolism with an average age of 61.15 years, 45.4% were male and 54.6% were female. Shortness of breath, chest pain, and hemoptysis were seen in 88%, 49.2%, and 13.1% of patients, respectively. Tachypnea and tachycardia were the most common clinical findings with a frequency of 54.1%. Echocardiographic findings of right ventricular enlargement and right ventricular dysfunction were observed in 66.7% and 67.8% of patients, respectively and 42.1% of patients had severe pulmonary hypertension. We found a significant relationship between pulmonary artery pressure severity and shock state as well as in-hospital mortality. While only 3 patients out of 64 cases (4%) with normal or mildly elevated pulmonary artery pressure died in their hospital stay period, the mortality rate was 28.5% in patients with moderate or severe pulmonary artery hypertension (p-value=0.002).Conclusion: we found a relatively high frequency of severe pulmonary artery hypertension in patients admitted with the definite diagnosis of acute pulmonary embolism and there was a significant correlation between pulmonary artery pressure severity and shock state, as well as in-hospital mortality. So, echocardiographic findings including right ventricular systolic pressure and TR velocity may have additional prognostic value in the decision making of acute PE patients and could be helpful in reducing in-hospital mortality of this complex illness provided being included in prognostic models of acute PE, based on future studies.


2011 ◽  
Vol 10 (3) ◽  
pp. 105-110
Author(s):  
L. I. Agapitov ◽  
Yu. M. Belozerov ◽  
Yu. L. Mizernitsky ◽  
S. E. Tsyplenkova

We studied pulmonary hemodynamics and right ventricular diastolic function in 300 healthy children and 392 children with chronic bronchopulmonary pathology in an isometric exercise. Using echocardiography were determined systolic, diastolic, mean, pulmonary artery pressure, total pulmonary resistance, diastolic function of the right ventricle. Defined normal values of reactivity of pulmonary hemodynamics and diastolic function of the right ventricle in an isometric load. In patients with chronic bronchopulmonary pathology set higher increase of systolic, diastolic, mean, pulmonary artery pressure, decrease diastolic reserve the right ventricle compared to the control. The worst violations of pulmonary hemodynamics and diastolic function of the right ventricle during isometric load observed in patients with chronic Infectious-inflammatory and interstitial lung disease.


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