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Published on: June 11, 2019
Manganese-Enhanced Magnetic Resonance Imaging in Takotsubo Syndrome
Trisha Singh1,2,3, Shruti Joshi1,2,3, Lucy E Kershaw1,2
1BHF/University Centre for Cardiovascular Science (T.S., S.J., L.E.K., A.H.B., M.R.D., S.I.S., D.E.N.), University of Edinburgh, UK.
Insights
Takotsubo syndrome patients show abnormal myocardial calcium handling, evident through reduced manganese uptake on MRI, persisting even after recovery. This finding suggests calcium dysregulation is key to the condition and highlights MRI
Area of Science:
- Cardiology
- Cardiovascular Imaging
- Biophysics
Background:
- Takotsubo syndrome, a stress-induced cardiac emergency, has rising incidence but poorly understood pathophysiology.
- Myocardial calcium homeostasis defects are implicated in cardiac contractile dysfunction.
- Previous studies have not explored calcium handling in takotsubo syndrome.
Purpose of the Study:
- To investigate myocardial calcium handling in takotsubo syndrome patients.
- To utilize manganese-enhanced magnetic resonance imaging (MEMRI) during acute and recovery phases.
- To explore the role of calcium dysregulation in takotsubo syndrome pathophysiology.
Main Methods:
- Recruited 20 takotsubo syndrome patients and 20 matched controls.
- Performed gadolinium and manganese-enhanced MRI during hospitalization.
- Repeated MEMRI after at least 3 months for recovery assessment.
Main Results:
- Takotsubo patients exhibited reduced left ventricular ejection fraction and increased left ventricular mass.
- Elevated native T1 and T2 values were observed in affected myocardial segments.
- MEMRI revealed significantly reduced myocardial manganese uptake in patients, persisting post-recovery.
Conclusions:
- Profound perturbation of myocardial manganese uptake in takotsubo syndrome suggests abnormal calcium handling.
- This abnormality persists for at least 3 months, despite functional recovery.
- MEMRI shows potential for diagnosing, characterizing, and risk-stratifying takotsubo syndrome.
Background:
Takotsubo syndrome is an acute cardiac emergency characterized by transient left ventricular systolic dysfunction typically following a stressful event. Despite its rapidly rising incidence, its pathophysiology remains poorly understood. Takotsubo syndrome may pass unrecognized, especially if timely diagnostic imaging is not performed. Defective myocardial calcium homeostasis is a central cause of contractile dysfunction and has not been explored in takotsubo syndrome. We aimed to investigate myocardial calcium handling using manganese-enhanced magnetic resonance imaging during the acute and recovery phases of takotsubo syndrome.
Methods:
Twenty patients with takotsubo syndrome (63±12 years of age; 90% female) and 20 volunteers matched on age, sex, and cardiovascular risk factors (59±11 years of age; 70% female) were recruited from the Edinburgh Heart Centre between March 2020 and October 2021. Patients underwent gadolinium and manganese-enhanced magnetic resonance imaging during index hospitalization with repeat manganese-enhanced magnetic resonance imaging performed after at least 3 months.
Results:
Compared with matched control volunteers, patients had a reduced left ventricular ejection fraction (51±11 versus 67±8%; P<0.001), increased left ventricular mass (86±11 versus 57±14 g/m2; P<0.001), and, in affected myocardial segments, elevated native T1 (1358±49 versus 1211±28 ms; P<0.001) and T2 (60±7 versus 38±3 ms; P<0.0001) values at their index presentation. During manganese-enhanced imaging, kinetic modeling demonstrated a substantial reduction in myocardial manganese uptake (5.1±0.5 versus 8.2±1.1 mL/[100 g of tissue ·min], respectively; P<0.0001), consistent with markedly abnormal myocardial calcium handling. After recovery, left ejection fraction, left ventricular mass, and T2 values were comparable with those of matched control volunteers. Despite this, native and postmanganese T1 and myocardial manganese uptake remained abnormal compared with matched control volunteers (6.6±0.5 versus 8.2±1.1 mL/[100 g of tissue ·min]; P<0.0001).
Conclusions:
In patients with takotsubo syndrome, there is a profound perturbation of myocardial manganese uptake, which is most marked in the acute phase but persists for at least 3 months despite apparent restoration of normal left ventricular ejection fraction and resolution of myocardial edema, suggesting abnormal myocardial calcium handling may be implicated in the pathophysiology of takotsubo syndrome. Manganese-enhanced magnetic resonance imaging has major potential to assist in the diagnosis, characterization, and risk stratification of patients with takotsubo syndrome.
Registration:
URL: https://www.
Clinicaltrials:
gov; Unique identifier: NCT04623788.
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