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Diabetes Reduces Severity of Aortic Aneurysms Depending on the Presence of Cell Division Autoantigen 1 (CDA1).

Diabetes. 2018 Apr;67(4):755-768. Epub 2018 Jan 08
Jiaze Li 1 , Pacific Huynh 1 , Aozhi Dai 1 , Tieqiao Wu 1 , Yugang Tu 1 , Bryna Chow 1 , Helen Kiriazis 2 , Xiao-Jun Du 2 , Leon A Bach 3 , Jennifer L Wilkinson-Berka 4 , Erik Biros 5 , Philip Walker 6 , Maria Nataatmadja 6 , Malcolm West 6 , Jonathan Golledge 7 , Terri J Allen 1 , Mark E Cooper 1 , Zhonglin Chai 1
Jiaze Li 1 , Pacific Huynh 1 , Aozhi Dai 1 , Tieqiao Wu 1 , Yugang Tu 1 , Bryna Chow 1 , Helen Kiriazis 2 , Xiao-Jun Du 2 , Leon A Bach 3 , Jennifer L Wilkinson-Berka 4 , Erik Biros 5 , Philip Walker 6 , Maria Nataatmadja 6 , Malcolm West 6 , Jonathan Golledge 7 , Terri J Allen 1 , Mark E Cooper 1 , Zhonglin Chai 1
+ et al

[No authors listed]

Author information
  • 1 Diabetes Division, Baker IDI Heart and Diabetes Institute, Melbourne, Australia.
  • 2 Experimental Cardiology Laboratory, Baker IDI Heart and Diabetes Institute, Melbourne, Australia.
  • 3 Department of Endocrinology and Diabetes, Alfred Hospital, Melbourne, Australia.
  • 4 Department of Diabetes, Central Clinical School, Monash University, Melbourne, Australia.
  • 5 Vascular Biology Unit, Queensland Research Centre for Peripheral Vascular Disease, James Cook University, Townsville, Australia.
  • 6 University of Queensland, Brisbane, Australia.
  • 7 Department of Vascular and Endovascular Surgery, Townsville Hospital, Townsville, Australia.

摘要


Diabetes is a negative risk factor for aortic aneurysm, but the underlying explanation for this phenomenon is unknown. We have previously demonstrated that cell division autoantigen 1 (CDA1), which enhances transforming growth factor-β signaling, is upregulated in diabetes. We hypothesized that CDA1 plays a key role in conferring the protective effect of diabetes against aortic aneurysms. Male wild-type, CDA1 knockout (KO), apolipoprotein E (ApoE) KO, and CDA1/ApoE double-KO (dKO) mice were rendered diabetic. Whereas aneurysms were not observed in diabetic ApoE KO and wild-type mice, 40% of diabetic dKO mice developed aortic aneurysms. These aneurysms were associated with attenuated aortic transforming growth factor-β signaling, reduced expression of various collagens, and increased aortic macrophage infiltration and matrix metalloproteinase 12 expression. In the well-characterized model of angiotensin II-induced aneurysm formation, concomitant diabetes reduced fatal aortic rupture and attenuated suprarenal aortic expansion, changes not seen in dKO mice. Furthermore, aortic CDA1 expression was downregulated ∼70% within biopsies from human abdominal aortic aneurysms. The identification that diabetes is associated with upregulation of vascular CDA1 and that CDA1 deletion in diabetic mice promotes aneurysm formation provides evidence that CDA1 plays a role in diabetes to reduce susceptibility to aneurysm formation.