Spontaneous coronary artery dissection with leucoencephalopathy associated with thrombospondin Type 1 domain

Gotabhaya Ranasinghe1, Rasika Sovis1, Sajeev Shellvacumar1

  • 1Institute of Cardiology, National Hospital of Sri Lanka, Kynsey Road, Colombo 01000, Sri Lanka.

PubMed

Insights

A rare case links spontaneous coronary artery dissection with leucoencephalopathy (SCADLE) to a THSD1 gene mutation. This discovery highlights a potential genetic cause for SCADLE, impacting both coronary and cerebral arteries.

Area of Science:

  • Cardiovascular Medicine
  • Genetics
  • Neurology

Background:

  • Spontaneous coronary artery dissection (SCAD) is an infrequent cause of acute coronary syndrome.
  • Genetic factors are implicated in SCAD, but remain unidentified in many cases.
  • This report details a rare case of SCAD with leucoencephalopathy (SCADLE).

Observation:

  • A 36-year-old female presented with ST-elevation myocardial infarction due to SCAD in the left anterior descending artery.
  • Brain MRI revealed leucoencephalopathy, with white matter hyper-intensities and lacunar infarcts.
  • Genetic analysis identified a THSD1 gene variant (c.67°C > G, p. Arg224Gly).

Findings:

  • The identified THSD1 gene variant is associated with extracellular matrix (ECM) protein dysfunction.
  • This mutation follows an autosomal dominant inheritance pattern.
  • THSD1 mutations are linked to arterial dissections, fibromuscular dysplasia, and intracranial hemorrhages.

Implications:

  • SCADLE may result from arteriopathy due to ECM protein dysfunction in cerebral and coronary vasculature.
  • This finding suggests a potential genetic basis for SCADLE, linking coronary and neurological manifestations.
  • Understanding the role of THSD1 in SCADLE could inform future diagnostic and therapeutic strategies.
Abstract

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