Endothelial reactive oxygen-forming NADPH oxidase 5 is a possible player in diabetic aortic aneurysm but not atherosclerosis

© 2022. The Author(s)..

Atherosclerosis and its complications are major causes of cardiovascular morbidity and death. Apart from risk factors such as hypercholesterolemia and inflammation, the causal molecular mechanisms are unknown. One proposed causal mechanism involves elevated levels of reactive oxygen species (ROS). Indeed, early expression of the ROS forming NADPH oxidase type 5 (Nox5) in vascular endothelial cells correlates with atherosclerosis and aortic aneurysm. Here we test the pro-atherogenic Nox5 hypothesis using mouse models. Because Nox5 is missing from the mouse genome, a knock-in mouse model expressing human Nox5 in its physiological location of endothelial cells (eNOX5ki/ki) was tested as a possible new humanised mouse atherosclerosis model. However, whether just on a high cholesterol diet or by crossing in aortic atherosclerosis-prone ApoE-/- mice with and without induction of diabetes, Nox5 neither induced on its own nor aggravated aortic atherosclerosis. Surprisingly, however, diabetic ApoE-/- x eNOX5ki/ki mice developed aortic aneurysms more than twice as often correlating with lower vascular collagens, as assessed by trichrome staining, without changes in inflammatory gene expression, suggesting that endothelial Nox5 directly affects extracellular matrix remodelling associated with aneurysm formation in diabetes. Thus Nox5-derived reactive oxygen species are not a new independent mechanism of atherosclerosis but may enhance the frequency of abdominal aortic aneurysms in the context of diabetes. Together with similar clinical findings, our preclinical target validation opens up a first-in-class mechanism-based approach to treat or even prevent abdominal aortic aneurysms.

Medienart:

E-Artikel

Erscheinungsjahr:

2022

Erschienen:

2022

Enthalten in:

Zur Gesamtaufnahme - volume:12

Enthalten in:

Scientific reports - 12(2022), 1 vom: 07. Juli, Seite 11570

Sprache:

Englisch

Beteiligte Personen:

Ho, Florence [VerfasserIn]
Watson, Anna M D [VerfasserIn]
Elbatreek, Mahmoud H [VerfasserIn]
Kleikers, Pamela W M [VerfasserIn]
Khan, Waheed [VerfasserIn]
Sourris, Karly C [VerfasserIn]
Dai, Aozhi [VerfasserIn]
Jha, Jay [VerfasserIn]
Schmidt, Harald H H W [VerfasserIn]
Jandeleit-Dahm, Karin A M [VerfasserIn]

Links:

Volltext

Themen:

EC 1.6.3.-
Journal Article
NADPH Oxidase 5
Oxygen
Reactive Oxygen Species
Research Support, Non-U.S. Gov't
S88TT14065

Anmerkungen:

Date Completed 11.07.2022

Date Revised 15.09.2022

published: Electronic

Citation Status MEDLINE

doi:

10.1038/s41598-022-15706-5

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

NLM343193329