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Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions.

Publication ,  Journal Article
Craige, SM; Kant, S; Reif, M; Chen, K; Pei, Y; Angoff, R; Sugamura, K; Fitzgibbons, T; Keaney, JF
Published in: Free radical biology & medicine
December 2015

Vascular reactive oxygen species (ROS) are known to be involved in atherosclerosis development and progression. NADPH oxidase 4 (Nox4) is a constitutively active ROS-producing enzyme that is highly expressed in the vascular endothelium. Nox4 is unique in its biology and has been implicated in vascular repair, however, the role of Nox4 in atherosclerosis is unknown. Therefore, to determine the effect of endothelial Nox4 on development of atherosclerosis, Apoe E-/- mice +/- endothelial Nox4 (ApoE-/- + EC Nox4) were fed a high cholesterol/high fat (Western) diet for 24 weeks. Significantly fewer atherosclerotic lesions were observed in the ApoE-/- + EC Nox4 mice as compared to the ApoE-/- littermates, which was most striking in the abdominal region of the aorta. In addition, markers of T cell populations were markedly different between the groups; T regulatory cell marker (FoxP3) was increased whereas T effector cell marker (T-bet) was decreased in aorta from ApoE-/- + EC Nox4 mice compared to ApoE-/- alone. We also observed decreased monokine induced by gamma interferon (MIG; CXCL9), a cytokine known to recruit and activate T cells, in plasma and tissue from ApoE-/- + EC Nox4 mice. To further investigate the link between endothelial Nox4 and MIG expression, we utilized cultured endothelial cells from our EC Nox4 transgenic mice and human cells with adenoviral overexpression of Nox4. In these cultured cells, upregulation of Nox4 attenuated endothelial cell MIG expression in response to interferon-gamma. Together these data suggest that endothelial Nox4 expression reduces MIG production and promotes a T cell distribution that favors repair over inflammation, leading to protection from atherosclerosis.

Duke Scholars

Published In

Free radical biology & medicine

DOI

EISSN

1873-4596

ISSN

0891-5849

Publication Date

December 2015

Volume

89

Start / End Page

1 / 7

Related Subject Headings

  • T-Lymphocytes, Regulatory
  • Reverse Transcriptase Polymerase Chain Reaction
  • Real-Time Polymerase Chain Reaction
  • Reactive Oxygen Species
  • RNA, Messenger
  • Oxidative Stress
  • NADPH Oxidases
  • NADPH Oxidase 4
  • Mice, Transgenic
  • Mice, Knockout
 

Citation

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MLA
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Craige, S. M., Kant, S., Reif, M., Chen, K., Pei, Y., Angoff, R., … Keaney, J. F. (2015). Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions. Free Radical Biology & Medicine, 89, 1–7. https://doi.org/10.1016/j.freeradbiomed.2015.07.004
Craige, Siobhan M., Shashi Kant, Michaella Reif, Kai Chen, Yongmei Pei, Rebecca Angoff, Koichi Sugamura, Timothy Fitzgibbons, and John F. Keaney. “Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions.Free Radical Biology & Medicine 89 (December 2015): 1–7. https://doi.org/10.1016/j.freeradbiomed.2015.07.004.
Craige SM, Kant S, Reif M, Chen K, Pei Y, Angoff R, et al. Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions. Free radical biology & medicine. 2015 Dec;89:1–7.
Craige, Siobhan M., et al. “Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions.Free Radical Biology & Medicine, vol. 89, Dec. 2015, pp. 1–7. Epmc, doi:10.1016/j.freeradbiomed.2015.07.004.
Craige SM, Kant S, Reif M, Chen K, Pei Y, Angoff R, Sugamura K, Fitzgibbons T, Keaney JF. Endothelial NADPH oxidase 4 protects ApoE-/- mice from atherosclerotic lesions. Free radical biology & medicine. 2015 Dec;89:1–7.
Journal cover image

Published In

Free radical biology & medicine

DOI

EISSN

1873-4596

ISSN

0891-5849

Publication Date

December 2015

Volume

89

Start / End Page

1 / 7

Related Subject Headings

  • T-Lymphocytes, Regulatory
  • Reverse Transcriptase Polymerase Chain Reaction
  • Real-Time Polymerase Chain Reaction
  • Reactive Oxygen Species
  • RNA, Messenger
  • Oxidative Stress
  • NADPH Oxidases
  • NADPH Oxidase 4
  • Mice, Transgenic
  • Mice, Knockout