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Biopsy-proven myocardial sequels in Kawasaki disease with giant coronary aneurysms
Susumu Yonesaka1, Toru Takahashi, Shuji Eto
1Department of Nursing, Hirosaki University, Japan. yonesaka@cc.hirosaki-u.ac.jp
Insights
Kawasaki disease with giant coronary aneurysms can cause asymptomatic myocardial damage, including microangiopathies and fibrosis. Aggressive follow-up is crucial for detecting potential cardiac lesions in affected children.
Area of Science:
- Cardiology
- Pediatric Pathology
- Vascular Biology
Background:
- Kawasaki disease (KD) with giant coronary aneurysms (GCAs) often presents asymptomatically.
- Conventional diagnostics may miss prior myocardial lesions or future risks in KD-GCAs.
- Long-term histopathology of the myocardium, particularly intramural small vessels, requires evaluation in asymptomatic KD-GCAs.
Purpose of the Study:
- To evaluate the long-term histopathology of the myocardium in asymptomatic patients with Kawasaki disease and giant coronary aneurysms.
- To identify residual myocardial lesions, especially in intramural small vessels, using endomyocardial biopsies.
Main Methods:
- 16 Kawasaki patients with GCAs underwent serial endomyocardial biopsies.
- Histopathological evaluation included light and electron microscopy.
- Microangiopathies, mitochondrial abnormalities, and myofibril changes were assessed.
Main Results:
- High incidence of myocardial abnormalities (degeneration, hypertrophy, inflammation) in initial biopsies.
- Follow-up biopsies showed increased inflammatory cell infiltration, interstitial fibrosis, and myofibril disarray.
- Intravenous immunoglobulin treatment correlated with increased fibrous tissue.
- Electron microscopy revealed microangiopathies and microthrombi in intramural vessels.
Conclusions:
- Asymptomatic Kawasaki disease with giant coronary aneurysms can harbor residual myocardial lesions.
- Pathophysiology may involve direct injury, ischemia, or thrombosis.
- More aggressive follow-up is recommended to detect asymptomatic myocardial damage in this patient subgroup.
Background:
Although most Kawasaki disease with giant coronary aneurysms is asymptomatic, conventional investigations might not identify previous lesions, or all Kawasaki disease with giant aneurysms at risk of future myocardial lesions. We evaluated the long-term histopathology of the myocardium, especially of intramural small vessels in asymptomatic Kawasaki disease with giant aneurysms.
Method:
The initial study comprised 16 consecutive Kawasaki patients - male-to-female ratio was 12:4 - aged from 2 to 12 years, and in the subsequent study, the same patients were aged from 4.9 to 16 years. Endomyocardial biopsies were histopathologically evaluated. Microangiopathies, mitochondrial abnormalities, and loss or disarray of myofibrils were compared by electron microscopy.
Results:
The incidence of histopathological abnormalities such as degeneration, hypertrophy, and inflammatory cell infiltration was quite high in the initial study, and inflammatory cell infiltration, interstitial fibrosis, and disarray were very noticeable at follow-up biopsies. The area of fibrous tissue was significantly higher in patients administered with intravenous immunoglobulin at follow-up biopsies. Electron microscopy showed microangiopathies including microthrombi within intramural small vessels in some patients at follow-up biopsies. The sites of the coronary aneurysms did not seem to have an impact on the biopsy findings, suggesting that the underlying pathophysiology is related to the original disease process.
Conclusions:
Whether the abnormalities were due to direct myocardial injury, chronic ischaemia, repeated small-vessel thrombosis, or other problems associated only with biopsies, is difficult to determine. However, this subgroup had residual abnormal lesions in the myocardium. Follow-up should be more aggressive in this group of patients to identify myocardial damage that could be asymptomatic.
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