Aortic cellular diversity and quantitative genome-wide association study trait prioritization through single-nuclear RNA sequencing of the aneurysmal human aorta

EL Chou, M Chaffin, B Simonson… - … and Vascular Biology, 2022 - Am Heart Assoc
Background: Mural cells in ascending aortic aneurysms undergo phenotypic changes that
promote extracellular matrix destruction and structural weakening. To explore this biology …

Aortic Cellular Diversity and Quantitative Genome-Wide Association Study Trait Prioritization Through Single-Nuclear RNA Sequencing of the Aneurysmal Human …

EL Chou, M Chaffin, B Simonson… - … and Vascular Biology, 2022 - europepmc.org
Background Mural cells in ascending aortic aneurysms undergo phenotypic changes that
promote extracellular matrix destruction and structural weakening. To explore this biology …

Aortic Cellular Diversity and Quantitative Genome-Wide Association Study Trait Prioritization Through Single-Nuclear RNA Sequencing of the Aneurysmal Human …

EL Chou, M Chaffin, B Simonson… - Arteriosclerosis …, 2022 - pubmed.ncbi.nlm.nih.gov
Background Mural cells in ascending aortic aneurysms undergo phenotypic changes that
promote extracellular matrix destruction and structural weakening. To explore this biology …

Aortic Cellular Diversity and Quantitative Genome-Wide Association Study Trait Prioritization Through Single-Nuclear RNA Sequencing of the Aneurysmal Human …

EL Chou, M Chaffin, B Simonson… - Arteriosclerosis …, 2022 - ingentaconnect.com
Background: Mural cells in ascending aortic aneurysms undergo phenotypic changes that
promote extracellular matrix destruction and structural weakening. To explore this biology …

Aortic Cellular Diversity and Quantitative Genome-Wide Association Study Trait Prioritization Through Single-Nuclear RNA Sequencing of the Aneurysmal Human …

EL Chou, M Chaffin, B Simonson… - … and Vascular Biology, 2022 - europepmc.org
Background Mural cells in ascending aortic aneurysms undergo phenotypic changes that
promote extracellular matrix destruction and structural weakening. To explore this biology …