Endomyocardial biopsy-proven hydroxychloroquine-induced cardiomyopathy in a patient with rheumatoid arthritis.
Anureet MalhotraMihir Abhijit PathakTarun DaliaAndrija VidicPublished in: BMJ case reports (2023)
Hydroxychloroquine is a disease-modifying antirheumatic drug used for various rheumatological conditions. Its long-term use is well-known to have toxic effects on cardiac muscle cells. We present a biopsy-proven case of hydroxychloroquine-induced cardiotoxicity with detailed histopathological and imaging findings. The patient was referred to our heart failure clinic for concerns of reduction in left ventricular ejection fraction despite being on guideline-directed medical therapy. She had been diagnosed with rheumatoid arthritis, pulmonary hypertension and then subsequently heart failure with reduced ejection fraction 5 years ago. The evaluation included right heart catheterisation, cardiac MRI and endomyocardial biopsy. Light and electron microscopy showed myocyte hypertrophy and vacuolar change, abnormal mitochondria, myeloid bodies and curvilinear bodies. These findings were specific for hydroxychloroquine-induced cardiomyopathy. This case highlights the importance of clinical monitoring, early suspicion and consideration of drug-induced toxicities as a culprit for heart failure.
Keyphrases
- heart failure
- drug induced
- left ventricular
- rheumatoid arthritis
- liver injury
- ejection fraction
- high glucose
- cardiac resynchronization therapy
- pulmonary hypertension
- aortic stenosis
- diabetic rats
- atrial fibrillation
- healthcare
- skeletal muscle
- induced apoptosis
- case report
- magnetic resonance imaging
- ultrasound guided
- mitral valve
- disease activity
- stem cells
- hypertrophic cardiomyopathy
- acute myeloid leukemia
- acute myocardial infarction
- primary care
- emergency department
- signaling pathway
- cell cycle arrest
- electron microscopy
- computed tomography
- photodynamic therapy
- adverse drug
- bone marrow
- fine needle aspiration
- pulmonary artery
- cell proliferation
- high resolution
- mesenchymal stem cells
- diffusion weighted imaging
- endoplasmic reticulum