Literature DB >> 19633102

Activated cell survival cascade protects cardiomyocytes from cell death in Tako-Tsubo cardiomyopathy.

Holger M Nef1, Helge Möllmann, Pirmin Hilpert, Christian Troidl, Sandra Voss, Andreas Rolf, Christopher B Behrens, Michael Weber, Christian W Hamm, Albrecht Elsässer.   

Abstract

AIMS: Tako-Tsubo cardiomyopathy (TTC) is characterized by rapid regeneration of contractile dysfunction. From recent studies it is known that excessive catecholamine levels due to emotional or physical stress might play a central role. After sympathetic activation, the PIK3/AKT pathway is a key regulator of many cellular responses, including cytoprotective effects. Thus, the purpose of this study was to investigate whether the PIK3/AKT pathway plays a pivotal role in TTC. METHODS AND
RESULTS: A total of 16 consecutive patients diagnosed with TTC were studied. Left ventricular biopsies were taken during the acute phase and after functional recovery. Specimens were examined by quantitative RT-PCR and western blotting. Representative genes of the PI3K/AKT pathway (PIK3-R1, PTEN, GSK3beta, mTOR, PP2A, eIF4E) were compared with left ventricular controls from non-transplanted healthy hearts. PI3K expression was increased during the acute phase and after functional recovery. AKT protein levels were unaltered, but phosphorylation significantly increased during the acute phase. Both PTEN (PI3K antagonist) and PP2 (unspecific phosphatase) were down-regulated. Phosphorylation of the PI3K/AKT downstream target mTOR was increased, while expression of both GSK3 isoforms was decreased. The Bax/Bcl2 ratio was increased in the acute and recovery phases.
CONCLUSION: PI3K/AKT signalling is activated in TTC. This activated cell survival cascade might protect cardiomyocytes from cell death and also contribute to rapid regeneration in TTC.

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Year:  2009        PMID: 19633102     DOI: 10.1093/eurjhf/hfp076

Source DB:  PubMed          Journal:  Eur J Heart Fail        ISSN: 1388-9842            Impact factor:   15.534


  23 in total

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4.  [Historical and current pathophysiological concepts of stress (Tako-Tsubo) cardiomyopathy].

Authors:  S Szardien; H Möllmann; A Elsässer; C W Hamm; H M Nef
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Review 5.  Mechanisms of stress (Takotsubo) cardiomyopathy.

Authors:  Holger M Nef; Helge Möllmann; Yoshihiro J Akashi; Christian W Hamm
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7.  High levels of circulating epinephrine trigger apical cardiodepression in a β2-adrenergic receptor/Gi-dependent manner: a new model of Takotsubo cardiomyopathy.

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Review 8.  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

Review 9.  Advancements in the diagnostic workup, prognostic evaluation, and treatment of takotsubo syndrome.

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Journal:  Heart Fail Rev       Date:  2020-09       Impact factor: 4.214

Review 10.  Brain-Heart Interaction: Cardiac Complications After Stroke.

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