Literature DB >> 24794965

Different catecholamines induce different patterns of takotsubo-like cardiac dysfunction in an apparently afterload dependent manner.

Bjorn Redfors1, Anwar Ali2, Yangzhen Shao3, Joel Lundgren2, Li-Ming Gan4, Elmir Omerovic3.   

Abstract

BACKGROUND: Takotsubo cardiomyopathy (TCM) is characterized by regional left ventricular dysfunction that cannot be explained by an occlusive lesion in a coronary artery. Catecholamines are implicated in the pathogenesis of TCM but the mechanisms involved are unknown. Because the endogenous and the most commonly used exogenous catecholamines have well defined adrenoceptor subtype affinities, inferences can be made about the importance of each adrenoceptor subtype based on the ability of different catecholamines to induce TCM. We therefore studied which of five well-known catecholamines, that differ in receptor subtype affinity, are able to induce TCM-like cardiac dysfunction in the rat.
METHODS: 255 rats received intraperitoneally isoprenaline (β1/β2-adrenoceptor agonist), epinephrine (β1/β2/α-adrenoceptor agonist), norepinephrine (β1/α-adrenoceptor agonist), dopamine (α/β1/β2-adrenoceptor agonist) or phenylephrine (α-adrenoceptor agonist). Each catecholamine was given in five different doses. We measured blood pressure through a catheter inserted in the right carotid artery and studied cardiac morphology and function by echocardiography.
RESULTS: All catecholamines induced takotsubo-like cardiac dysfunction. Isoprenaline induced low blood pressure and predominantly apical dysfunction whereas the other catecholamines induced high blood pressure and basal dysfunction. In another set of experiments, we continuously infused hydralazine or nitroprusside to rats that received epinephrine or norepinephrine to maintain systolic blood pressure < 120 mm Hg. These rats developed akinesia of the apex instead of the base. Infusion of phenylephrine to maintain blood pressure > 120 mm Hg after isoprenaline administration prevented apical TCM-like dysfunction.
CONCLUSIONS: Catecholamine-induced takotsubo-like cardiac dysfunction appears to be afterload dependent rather than depend on stimulation of a specific adrenergic receptor subtype.
Copyright © 2014 Elsevier Ireland Ltd. All rights reserved.

Entities:  

Keywords:  Adrenoceptor; Catecholamine; Echocardiography; Hemodynamics; Takotsubo syndrome

Mesh:

Substances:

Year:  2014        PMID: 24794965     DOI: 10.1016/j.ijcard.2014.04.103

Source DB:  PubMed          Journal:  Int J Cardiol        ISSN: 0167-5273            Impact factor:   4.164


  18 in total

Review 1.  Autonomic nervous system in Takotsubo syndrome.

Authors:  Sonia Borodzicz; Katarzyna Czarzasta; Grzegorz Opolski; Agnieszka Cudnoch-Jędrzejewska
Journal:  Heart Fail Rev       Date:  2019-01       Impact factor: 4.214

Review 2.  Assessing the Role of High-Dose β-Agonists Use in Triggering Takotsubo Syndrome During Asthma Exacerbation.

Authors:  Danish Abbasi; Saif Faiek; Waqas J Siddiqui; Angel Lopez-Candales
Journal:  Perm J       Date:  2022-04-05

Review 3.  Epidemiology and pathophysiology of Takotsubo syndrome.

Authors:  Yoshihiro J Akashi; Holger M Nef; Alexander R Lyon
Journal:  Nat Rev Cardiol       Date:  2015-04-07       Impact factor: 32.419

4.  Computational modeling of Takotsubo cardiomyopathy: effect of spatially varying β-adrenergic stimulation in the rat left ventricle.

Authors:  Sander Land; Steven A Niederer; William E Louch; Åsmund T Røe; Jan Magnus Aronsen; Daniel J Stuckey; Markus B Sikkel; Matthew H Tranter; Alexander R Lyon; Sian E Harding; Nicolas P Smith
Journal:  Am J Physiol Heart Circ Physiol       Date:  2014-09-19       Impact factor: 4.733

Review 5.  Epidemiology, pathogenesis, and management of takotsubo syndrome.

Authors:  Shams Y-Hassan; Per Tornvall
Journal:  Clin Auton Res       Date:  2017-09-15       Impact factor: 4.435

6.  Differences between Takotsubo cardiomyopathy and reverse Takotsubo cardiomyopathy associated with subarachnoid hemorrhage.

Authors:  Tadashi Kumai; Joji Inamasu; Eiichi Watanabe; Keiko Sugimoto; Yuichi Hirose
Journal:  Int J Cardiol Heart Vasc       Date:  2016-05-11

7.  Conventional Coronary Angiography Induced Takotsubo Cardiomyopathy Complicated with Cardiac Tamponade.

Authors:  Min Gyu Kang; Kye-Hwan Kim; Jin-Sin Koh; Young-Hoon Jeong; Jin-Yong Hwang; Jeong Rang Park
Journal:  Case Rep Cardiol       Date:  2017-03-01

8.  International Expert Consensus Document on Takotsubo Syndrome (Part I): Clinical Characteristics, Diagnostic Criteria, and Pathophysiology.

Authors:  Jelena-Rima Ghadri; Ilan Shor Wittstein; Abhiram Prasad; Scott Sharkey; Keigo Dote; Yoshihiro John Akashi; Victoria Lucia Cammann; Filippo Crea; Leonarda Galiuto; Walter Desmet; Tetsuro Yoshida; Roberto Manfredini; Ingo Eitel; Masami Kosuge; Holger M Nef; Abhishek Deshmukh; Amir Lerman; Eduardo Bossone; Rodolfo Citro; Takashi Ueyama; Domenico Corrado; Satoshi Kurisu; Frank Ruschitzka; David Winchester; Alexander R Lyon; Elmir Omerovic; Jeroen J Bax; Patrick Meimoun; Guiseppe Tarantini; Charanjit Rihal; Shams Y-Hassan; Federico Migliore; John D Horowitz; Hiroaki Shimokawa; Thomas Felix Lüscher; Christian Templin
Journal:  Eur Heart J       Date:  2018-06-07       Impact factor: 29.983

Review 9.  Acute and Chronic Pheochromocytoma-Induced Cardiomyopathies: Different Prognoses?: A Systematic Analytical Review.

Authors:  Marie Batisse-Lignier; Bruno Pereira; Pascal Motreff; Romain Pierrard; Christelle Burnot; Charles Vorilhon; Salwan Maqdasy; Béatrice Roche; Francoise Desbiez; Guillaume Clerfond; Bernard Citron; Jean-René Lusson; Igor Tauveron; Romain Eschalier
Journal:  Medicine (Baltimore)       Date:  2015-12       Impact factor: 1.817

10.  Incidence and Prognostic Relevance of Cardiopulmonary Failure in Takotsubo Cardiomyopathy.

Authors:  Ibrahim El-Battrawy; Siegfried Lang; Uzair Ansari; Katherine Sattler; Michael Behnes; Katja Schramm; Christian Fastner; Erol Tülümen; Xiaobo Zhou; Ursula Hoffmann; Martin Borggrefe; Ibrahim Akin
Journal:  Sci Rep       Date:  2017-11-07       Impact factor: 4.379

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