Objective: Using a mouse model of Eln (elastin) insufficiency that spontaneously develops neointima in the ascending aorta, we sought to understand the origin and phenotypic heterogeneity of smooth muscle cells (SMCs) contributing to intimal hyperplasia. We were also interested in exploring how vascular cells adapt to the absence of Eln. Approach and Results: We used single-cell sequencing together with lineage-specific cell labeling to identify neointimal cell populations in a noninjury, genetic model of neointimal formation. Inactivating Eln production in vascular SMCs results in rapid intimal hyperplasia around breaks in the ascending aorta's internal elastic lamina. Using lineage-specific drivers to both lineage mark and inactivate Eln expression in the secondary heart field and neural crest aortic SMCs, we found that cells with a secondary heart field lineage are significant contributors to neointima formation. We also identified a small population of secondary heart field-derived SMCs underneath and adjacent to the internal elastic lamina. Within the neointima of SMC-Eln knockout mice, 2 unique SMC populations were identified that are transcriptionally different from other SMCs. While these cells had a distinct gene signature, they expressed several genes identified in other studies of neointimal lesions, suggesting that some mechanisms underlying neointima formation in Eln insufficiency are shared with adult vessel injury models.
Conclusions: These results highlight the unique developmental origin and transcriptional signature of cells contributing to neointima in the ascending aorta. Our findings also show that the absence of Eln, or changes in elastic fiber integrity, influences the SMC biological niche in ways that lead to altered cell phenotypes.
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http://dx.doi.org/10.1161/ATVBAHA.120.315681 | DOI Listing |
Anat Histol Embryol
January 2025
Department of Surgery and Radiology, Faculty of Veterinary Medicine, University of Tehran, Tehran, Iran.
This study investigates the gross morphological and morphometric characteristics of thoracic and lumbar intervertebral discs (IVDs) in guinea pigs, utilising micro-CT imaging and anatomical dissection. The findings reveal 13 thoracic and six lumbar IVDs were identified, with thoracic discs transitioning from rounded forms at T1-T3 to triangular and heart-shaped structures at T4-T13, while lumbar IVDs exhibited a consistently flattened heart shape. Morphometric analysis revealed statistically significant differences, with lumbar IVDs being larger in lateral and dorsoventral width, disc area, annulus fibrosus (AF) area and nucleus pulposus (NP) area, and ventral height compared to thoracic discs.
View Article and Find Full Text PDFAnn Thorac Surg Short Rep
September 2023
Advocate Heart Institute, Advocate Christ Medical Center, Oak Lawn, Illinois.
Background: We describe our clinical experience performing device exchange from a HeartMate II (HM2) or HVAD to a HeartMate 3 (HM3) left ventricular assist device.
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Ann Thorac Surg Short Rep
December 2024
Division of Cardiac Surgery, Inova Heart and Vascular Institute, Inova Health Systems, Falls Church, Virginia.
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View Article and Find Full Text PDFAnn Thorac Surg Short Rep
December 2024
Department of Cardiology, Puerta de Hierro University Hospital, Madrid, Spain.
We report a case of a woman who underwent mitral ring and tricuspid annuloplasty. Two months later, she presented with acute heart failure secondary to severe aortic regurgitation, which was a complication of the cardiac surgery. Given the high surgical risk of reoperation in this the patient, she underwent transcatheter aortic valve implantation, with a good result.
View Article and Find Full Text PDFAnn Thorac Surg Short Rep
March 2023
Department of Cardiovascular Surgery, Houston Methodist Hospital, Houston, Texas.
Background: Complex or malignant left-sided heart tumors present a challenge for resection and reconstruction. Cardiac autotransplantation was developed to address this but is a complex technique. Partial autotransplantation was developed to simplify the procedure.
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