Issue 14, 2022

Iron deficiency exacerbates aortic medial degeneration by inducing excessive mitochondrial fission

Abstract

Iron deficiency (ID) is a global nutritional deficiency that was shown to be involved in the pathogenesis of aortic aneurysm and dissection (AAD) in our previous studies. Some studies suggested that mitochondrial dynamics was involved in the apoptosis and phenotypic transformation of vascular smooth muscle cells (VSMCs). However, little is known about the role of mitochondrial dynamics in aortic medial degeneration (AMD) promoted by an iron deficient diet. The present study investigated the effect of ID on the phenotypic transformation of VSMCs, the progression of AMD, and the underlying mechanism. The expression of p-Drp1 (Ser616) and Fis1 was markedly upregulated in the aortic media of AAD patients and ApoE−/− mice with subcutaneous AngII osmotic pumps. ID facilitated the formation of mitochondria-associated endoplasmic reticulum membranes (MAMs), which triggered excessive mitochondrial fission, induced the phenotypic transformation of VSMCs, and ultimately accelerated the progression of AMD. Furthermore, the present study indicated that an inhibitor of Drp1 could partially reverse this process. Maintaining iron balance in the human body may prevent the development of AAD.

Graphical abstract: Iron deficiency exacerbates aortic medial degeneration by inducing excessive mitochondrial fission

Supplementary files

Article information

Article type
Paper
Submitted
23 Apr 2022
Accepted
31 May 2022
First published
01 Jun 2022

Food Funct., 2022,13, 7666-7683

Iron deficiency exacerbates aortic medial degeneration by inducing excessive mitochondrial fission

X. Zhong, Q. Wu, Z. Wang, M. Zhang, S. Zheng, F. Shi, Y. Chen, Y. Che, S. Yuan and K. Xing, Food Funct., 2022, 13, 7666 DOI: 10.1039/D2FO01084D

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