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Pathology of Genetic Variants in Spontaneous Coronary Artery Dissection

Takamasa Tanaka, Rika Kawakami, Brady Gaynor, Desiree Williams and 17 more

Circulation | Sep 1, 2026

Abstract

Abstract

BACKGROUND: Spontaneous coronary artery dissection (SCAD) is characterized by a separation of the coronary artery wall, causing myocardial infarction and sudden death. This study is one of the first to clarify the impact of pathological genetic variants in candidate SCAD-related genes on the histopathological and morphological properties of human SCAD lesions. METHODS: A total of 28 SCAD cases were selected from the CVPath Autopsy Registry. Histological differences in collagen and smooth muscle cells were compared among 3 groups: culprit SCAD (C-SCAD), defined as the coronary segment containing a dissection in cases with SCAD; nonculprit SCAD, defined as unaffected coronary segments (ie, healthy arteries) in cases with SCAD; and non-SCAD controls. Whole-exome sequencing was performed, and the identified variants were filtered to isolate pathogenic or likely pathogenic variants. Protein expression corresponding to the identified variants was assessed by immunostaining. RESULTS: Collagen content was significantly reduced in C-SCAD lesions compared with controls, and immunohistochemical staining for smoothelin was reduced in the media of C-SCAD lesions compared with controls, whereas there were no significant differences between C-SCAD and nonculprit SCAD. Further, the nuclear height/width ratio of smooth muscle cells was increased, suggesting smooth muscle cell phenotypic modulation. In whole-exome sequencing analysis, pathogenic or likely pathogenic variants were detected in 25% of cases, which showed a higher frequency of multivessel dissection. In SCAD cases with pathogenic or likely pathogenic variants in COL3A1 (collagen type III alpha 1), FBN1 (fibrillin-1), or FLNA (filamin A), the expression of the corresponding protein was reduced in the media. CONCLUSIONS: Reduced medial collagen and smooth muscle cell phenotypic modulation may be possible predisposing conditions for SCAD, regardless of the presence of pathogenic or likely pathogenic variants. The presence of pathogenic variants in extracellular matrix–related genes may further compromise arterial wall medial integrity, contributing to more severe disease. These findings provide novel pathological and genetic insights into the pathogenesis of SCAD and may inform future diagnostic and therapeutic strategies.

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Authors

Researchers on this paper

Takamasa Tanaka

first | Research Institute for Work, Technology and Culture | ORCID 0000-0002-1437-0032

Rika Kawakami

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0002-8896-6971

Brady Gaynor

middle | University of Maryland, Baltimore | ORCID 0000-0002-4142-0613

Desiree Williams

middle | Research Institute for Work, Technology and Culture | ORCID 0009-0003-4944-848X

Jacques Augenstreich

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0003-2147-2675

Atsushi Sakamoto

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0002-6372-9224

Hiroyuki Jinnouchi

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0002-2557-3660

Kenji Kawai

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0001-7160-9508

Takao Konishi

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0002-0496-3184

Tatsuya Shiraki

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0003-1901-1642

Teruo Sekimoto

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0002-1054-9406

Takafumi Nakayama

middle | Research Institute for Work, Technology and Culture | ORCID 0000-0003-3529-6238

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Citation

BibTeX

@article{Tanaka2026Pathology,
  title = {Pathology of Genetic Variants in Spontaneous Coronary Artery Dissection},
  author = {Takamasa Tanaka and Rika Kawakami and Brady Gaynor and Desiree Williams and Jacques Augenstreich and Atsushi Sakamoto and Hiroyuki Jinnouchi and Kenji Kawai and Takao Konishi and Tatsuya Shiraki and Teruo Sekimoto and Takafumi Nakayama and Kazuhiro Fujiyoshi and Tomoyo Hamana and Yusuke Adachi and Keisha Medina Diaz and Charles C. Hong and Alyssa Grogan and Braxton D. Mitchell and Renu Virmani and Aloke V. Finn},
  journal = {Circulation},
  year = {2026},
  doi = {10.1161/circulationaha.126.080495},
  url = {https://doi.org/10.1161/circulationaha.126.080495}
}

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