Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice

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Standard

Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice. / Wilhelmson, Anna S; Fagman, Johan B; Johansson, Inger; Zou, Zhiyuan V; Andersson, Axel G; Svedlund Eriksson, Elin; Johansson, Maria E; Lindahl, Per; Fogelstrand, Per; Tivesten, Åsa.

I: Endocrinology, Bind 157, Nr. 10, 10.2016, s. 3915-3923.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Wilhelmson, AS, Fagman, JB, Johansson, I, Zou, ZV, Andersson, AG, Svedlund Eriksson, E, Johansson, ME, Lindahl, P, Fogelstrand, P & Tivesten, Å 2016, 'Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice', Endocrinology, bind 157, nr. 10, s. 3915-3923. https://doi.org/10.1210/en.2016-1100

APA

Wilhelmson, A. S., Fagman, J. B., Johansson, I., Zou, Z. V., Andersson, A. G., Svedlund Eriksson, E., Johansson, M. E., Lindahl, P., Fogelstrand, P., & Tivesten, Å. (2016). Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice. Endocrinology, 157(10), 3915-3923. https://doi.org/10.1210/en.2016-1100

Vancouver

Wilhelmson AS, Fagman JB, Johansson I, Zou ZV, Andersson AG, Svedlund Eriksson E o.a. Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice. Endocrinology. 2016 okt.;157(10):3915-3923. https://doi.org/10.1210/en.2016-1100

Author

Wilhelmson, Anna S ; Fagman, Johan B ; Johansson, Inger ; Zou, Zhiyuan V ; Andersson, Axel G ; Svedlund Eriksson, Elin ; Johansson, Maria E ; Lindahl, Per ; Fogelstrand, Per ; Tivesten, Åsa. / Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice. I: Endocrinology. 2016 ; Bind 157, Nr. 10. s. 3915-3923.

Bibtex

@article{cc68a0d9a72740118ecf5deb1e7df074,
title = "Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice",
abstract = "Intimal hyperplasia is a vascular pathological process involved in the pathogenesis of atherosclerosis. Data suggest that T, the most important sex steroid hormone in males, protects men from atherosclerotic cardiovascular disease. T mainly acts via the androgen receptor (AR), and in this study we evaluated formation of intimal hyperplasia in male AR knockout (ARKO) mice using a vascular injury model. Two weeks after ligation of the carotid artery, male ARKO mice showed increased intimal area and intimal thickness compared with controls. After endothelial denudation by an in vivo scraping injury, there was no difference in the reendothelialization in ARKO compared with control mice. Ex vivo, we observed increased outgrowth of vascular smooth muscle cells from ARKO compared with control aortic tissue explants; the number of outgrown cells was almost doubled in ARKO. In vitro, stimulation of human aortic vascular smooth muscle cells with a physiological T concentration inhibited both migration and proliferation of the cells. Analyzing the expression of central regulators of cell proliferation and migration, we found that mRNA and protein levels of p27 were lower in uninjured arteries from ARKO mice and that T replacement to castrated male mice increased p27 mRNA in an AR-dependent manner. In conclusion, AR deficiency in male mice increases intimal hyperplasia in response to vascular injury, potentially related to the effects of androgens/AR to inhibit proliferation and migration of smooth muscle cells.",
author = "Wilhelmson, {Anna S} and Fagman, {Johan B} and Inger Johansson and Zou, {Zhiyuan V} and Andersson, {Axel G} and {Svedlund Eriksson}, Elin and Johansson, {Maria E} and Per Lindahl and Per Fogelstrand and {\AA}sa Tivesten",
year = "2016",
month = oct,
doi = "10.1210/en.2016-1100",
language = "English",
volume = "157",
pages = "3915--3923",
journal = "Journal of Clinical Endocrinology and Metabolism",
issn = "0013-7227",
publisher = "Oxford University Press",
number = "10",

}

RIS

TY - JOUR

T1 - Increased Intimal Hyperplasia After Vascular Injury in Male Androgen Receptor-Deficient Mice

AU - Wilhelmson, Anna S

AU - Fagman, Johan B

AU - Johansson, Inger

AU - Zou, Zhiyuan V

AU - Andersson, Axel G

AU - Svedlund Eriksson, Elin

AU - Johansson, Maria E

AU - Lindahl, Per

AU - Fogelstrand, Per

AU - Tivesten, Åsa

PY - 2016/10

Y1 - 2016/10

N2 - Intimal hyperplasia is a vascular pathological process involved in the pathogenesis of atherosclerosis. Data suggest that T, the most important sex steroid hormone in males, protects men from atherosclerotic cardiovascular disease. T mainly acts via the androgen receptor (AR), and in this study we evaluated formation of intimal hyperplasia in male AR knockout (ARKO) mice using a vascular injury model. Two weeks after ligation of the carotid artery, male ARKO mice showed increased intimal area and intimal thickness compared with controls. After endothelial denudation by an in vivo scraping injury, there was no difference in the reendothelialization in ARKO compared with control mice. Ex vivo, we observed increased outgrowth of vascular smooth muscle cells from ARKO compared with control aortic tissue explants; the number of outgrown cells was almost doubled in ARKO. In vitro, stimulation of human aortic vascular smooth muscle cells with a physiological T concentration inhibited both migration and proliferation of the cells. Analyzing the expression of central regulators of cell proliferation and migration, we found that mRNA and protein levels of p27 were lower in uninjured arteries from ARKO mice and that T replacement to castrated male mice increased p27 mRNA in an AR-dependent manner. In conclusion, AR deficiency in male mice increases intimal hyperplasia in response to vascular injury, potentially related to the effects of androgens/AR to inhibit proliferation and migration of smooth muscle cells.

AB - Intimal hyperplasia is a vascular pathological process involved in the pathogenesis of atherosclerosis. Data suggest that T, the most important sex steroid hormone in males, protects men from atherosclerotic cardiovascular disease. T mainly acts via the androgen receptor (AR), and in this study we evaluated formation of intimal hyperplasia in male AR knockout (ARKO) mice using a vascular injury model. Two weeks after ligation of the carotid artery, male ARKO mice showed increased intimal area and intimal thickness compared with controls. After endothelial denudation by an in vivo scraping injury, there was no difference in the reendothelialization in ARKO compared with control mice. Ex vivo, we observed increased outgrowth of vascular smooth muscle cells from ARKO compared with control aortic tissue explants; the number of outgrown cells was almost doubled in ARKO. In vitro, stimulation of human aortic vascular smooth muscle cells with a physiological T concentration inhibited both migration and proliferation of the cells. Analyzing the expression of central regulators of cell proliferation and migration, we found that mRNA and protein levels of p27 were lower in uninjured arteries from ARKO mice and that T replacement to castrated male mice increased p27 mRNA in an AR-dependent manner. In conclusion, AR deficiency in male mice increases intimal hyperplasia in response to vascular injury, potentially related to the effects of androgens/AR to inhibit proliferation and migration of smooth muscle cells.

U2 - 10.1210/en.2016-1100

DO - 10.1210/en.2016-1100

M3 - Journal article

C2 - 27533884

VL - 157

SP - 3915

EP - 3923

JO - Journal of Clinical Endocrinology and Metabolism

JF - Journal of Clinical Endocrinology and Metabolism

SN - 0013-7227

IS - 10

ER -

ID: 167470243