Author: Oudit, G. Y.; Kassiri, Z.; Jiang, C.; Liu, P. P.; Poutanen, S. M.; Penninger, J. M.; Butany, J.
Title: SARSâ€coronavirus modulation of myocardial ACE2 expression and inflammation in patients with SARS Cord-id: qzv030tr Document date: 2009_5_6
ID: qzv030tr
Snippet: Background Angiotensin converting enzyme 2 (ACE2), a monocarboxylase that degrades angiotensin II to angiotensin 1–7, is also the functional receptor for severe acute respiratory syndrome (SARS) coronavirus (SARSâ€CoV) and is highly expressed in the lungs and heart. Patients with SARS also suffered from cardiac disease including arrhythmias, sudden cardiac death, and systolic and diastolic dysfunction. Materials and methods We studied mice infected with the human strain of the SARSâ€CoV and
Document: Background Angiotensin converting enzyme 2 (ACE2), a monocarboxylase that degrades angiotensin II to angiotensin 1–7, is also the functional receptor for severe acute respiratory syndrome (SARS) coronavirus (SARSâ€CoV) and is highly expressed in the lungs and heart. Patients with SARS also suffered from cardiac disease including arrhythmias, sudden cardiac death, and systolic and diastolic dysfunction. Materials and methods We studied mice infected with the human strain of the SARSâ€CoV and encephalomyocarditis virus and examined ACE2 mRNA and protein expression. Autopsy heart samples from patients who succumbed to the SARS crisis in Toronto (Canada) were used to investigate the impact of SARS on myocardial structure, inflammation and ACE2 protein expression. Results Pulmonary infection with the human SARSâ€CoV in mice led to an ACE2â€dependent myocardial infection with a marked decrease in ACE2 expression confirming a critical role of ACE2 in mediating SARSâ€CoV infection in the heart. The SARSâ€CoV viral RNA was detected in 35% (7/20) of autopsied human heart samples obtained from patients who succumbed to the SARS crisis during the Toronto SARS outbreak. Macrophageâ€specific staining showed a marked increase in macrophage infiltration with evidence of myocardial damage in patients who had SARSâ€CoV in their hearts. The presence of SARSâ€CoV in the heart was also associated with marked reductions in ACE2 protein expression. Conclusions Our data show that SARSâ€CoV can mediate myocardial inflammation and damage associated with downâ€regulation of myocardial ACE2 system, which may be responsible for the myocardial dysfunction and adverse cardiac outcomes in patients with SARS.
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