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Vascular Smooth Muscle Sirtuin-1 Protects Against Diet-Induced Aortic Stiffness.
Fry, Jessica L; Al Sayah, Leona; Weisbrod, Robert M; Van Roy, Isabelle; Weng, Xiang; Cohen, Richard A; Bachschmid, Markus M; Seta, Francesca.
Afiliação
  • Fry JL; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Al Sayah L; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Weisbrod RM; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Van Roy I; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Weng X; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Cohen RA; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Bachschmid MM; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA.
  • Seta F; From the Vascular Biology Section, School of Medicine, Boston University Medical Campus, MA. setaf@bu.edu.
Hypertension ; 68(3): 775-84, 2016 09.
Article em En | MEDLINE | ID: mdl-27432859
ABSTRACT
Arterial stiffness, a major cardiovascular risk factor, develops within 2 months in mice fed a high-fat, high-sucrose (HFHS) diet, serving as a model of human metabolic syndrome, and it is associated with activation of proinflammatory and oxidant pathways in vascular smooth muscle (VSM) cells. Sirtuin-1 (SirT1) is an NAD(+)-dependent deacetylase regulated by the cellular metabolic status. Our goal was to study the effects of VSM SirT1 on arterial stiffness in the context of diet-induced metabolic syndrome. Overnight fasting acutely decreased arterial stiffness, measured in vivo by pulse wave velocity, in mice fed HFHS for 2 or 8 months, but not in mice lacking SirT1 in VSM (SMKO). Similarly, VSM-specific genetic SirT1 overexpression (SMTG) prevented pulse wave velocity increases induced by HFHS feeding, during 8 months. Administration of resveratrol or S17834, 2 polyphenolic compounds known to activate SirT1, prevented HFHS-induced arterial stiffness and were mimicked by global SirT1 overexpression (SirT1 bacterial artificial chromosome overexpressor), without evident metabolic improvements. In addition, HFHS-induced pulse wave velocity increases were reversed by 1-week treatment with a specific, small molecule SirT1 activator (SRT1720). These beneficial effects of pharmacological or genetic SirT1 activation, against HFHS-induced arterial stiffness, were associated with a decrease in nuclear factor kappa light chain enhancer of activated B cells (NFκB) activation and vascular cell adhesion molecule (VCAM-1) and p47phox protein expressions, in aorta and VSM cells. In conclusion, VSM SirT1 activation decreases arterial stiffness in the setting of obesity by stimulating anti-inflammatory and antioxidant pathways in the aorta. SirT1 activators may represent a novel therapeutic approach to prevent arterial stiffness and associated cardiovascular complications in overweight/obese individuals with metabolic syndrome.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Molécula 1 de Adesão de Célula Vascular / Sirtuína 1 / Dieta Hiperlipídica / Rigidez Vascular / Obesidade Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Animals Idioma: En Revista: Hypertension Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Marrocos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Molécula 1 de Adesão de Célula Vascular / Sirtuína 1 / Dieta Hiperlipídica / Rigidez Vascular / Obesidade Tipo de estudo: Prognostic_studies / Risk_factors_studies Limite: Animals Idioma: En Revista: Hypertension Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Marrocos