4.8 Article

Decreased vascular lesion formation in mice with inducible endothelial-specific expression of protein kinase Akt

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 116, Issue 2, Pages 334-343

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI26223

Keywords

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Funding

  1. NHLBI NIH HHS [HL52233, R01 HL080187-02, HL71049, R01 HL071049, R01 HL080187-01A1, R01 HL070274-03, R01 HL080187, R01 HL052233-07, R01 HL052233-06, R01 HL052233, R01 HL070274-01, R01 HL070274-02, R01 HL052233-08, HL70274, R01 HL071049-02, R01 HL070274] Funding Source: Medline
  2. NIDDK NIH HHS [R01 DK062729-03, R01 DK062729-02, R01 DK062729, R01 DK062729-01A1, DK62729] Funding Source: Medline
  3. NINDS NIH HHS [P50 NS010828-300036, P01 NS010828, P50 NS010828-290036, P50 NS010828, P01 NS010828-330036] Funding Source: Medline

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To determine whether endothelial Akt could affect vascular lesion formation, mutant mice with a constitutively active Akt transgene, which could be inducibly targeted to the vascular endothelium using the tet-off system (EC-Akt Tg mice), were generated. After withdrawal of doxycycline, EC-Akt Tg mice demonstrated increased endothelial-specific Akt activity and NO production. After blood flow cessation caused by carotid artery ligation, neointimal formation was attenuated in induced EC-Akt Tg mice compared with noninduced EC-Akt Tg mice and control littermates. To determine the role of eNOS in mediating these effects, mice were treated with N-omega-nitro-L-arginine methyl ester (L-NAME). Neointimal formation was attenuated to a lesser extent in induced EC-Akt Tg mice treated with L-NAME, suggesting that some of the vascular protective effects were NO independent. Indeed, endothelial activation of Akt resulted in less EC apoptosis in ligated arteries. Immunostaining demonstrated decreased inflammatory and proliferative changes in induced EC-Akt Tg mice after vascular injury. These findings indicate that endothelial activation of Akt suppresses lesion formation via increased NO production, preservation of functional endothelial layer, and suppression of inflammatory and proliferative changes in the vascular wall. These results suggest that enhancing endothelial Akt activity alone could have therapeutic benefits after vascular injury.

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