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Cholesterol efflux alterations in adolescent obesity: role of adipose-derived extracellular vesical microRNAs.
Barberio, Matthew D; Kasselman, Lora J; Playford, Martin P; Epstein, Samuel B; Renna, Heather A; Goldberg, Madeleine; DeLeon, Joshua; Voloshyna, Iryna; Barlev, Ashley; Salama, Michael; Ferrante, Sarah C; Nadler, Evan P; Mehta, Nehal; Reiss, Allison B; Freishtat, Robert J.
Afiliação
  • Barberio MD; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
  • Kasselman LJ; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Playford MP; National Heart Lung and Blood Institute, Bethesda, MD, USA.
  • Epstein SB; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
  • Renna HA; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Goldberg M; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
  • DeLeon J; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Voloshyna I; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Barlev A; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Salama M; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
  • Ferrante SC; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
  • Nadler EP; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
  • Mehta N; National Heart Lung and Blood Institute, Bethesda, MD, USA.
  • Reiss AB; Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA. Allison.Reiss@nyulangone.org.
  • Freishtat RJ; Center for Genetic Medicine Research, Children's Research Institute, Children's National Health System, Washington, DC, 20010, USA.
J Transl Med ; 17(1): 232, 2019 07 22.
Article em En | MEDLINE | ID: mdl-31331347
ABSTRACT

BACKGROUND:

Macrophage cholesterol efflux capacity has been identified as a predictor for cardiovascular disease. We assessed the relationship between adipocyte-derived extracellular vesicle microRNAs and macrophage cholesterol efflux capacity.

METHODS:

We assessed an adolescent cohort (n = 93, Age, median (IQR) = 17 (3) year, Female = 71, Male = 22) throughout the BMI continuum (BMI = 45.2 (13.2) kg/m2) for (1) cholesterol efflux capacity and lipoprotein profiles; (2) adipocyte-derived extracellular vesicle microRNAs in serum; (3) the role of visceral adipose tissue extracellular vesicle in regulation of cholesterol efflux and cholesterol efflux gene expression in THP-1 macrophages in vitro.

RESULTS:

Efflux capacity was significantly associated with HDL (r = 0.30, p = 0.01) and LDL (r = 0.33, p = 0.005) particle size. Multivariate-analysis identified six microRNAs associated (p < 0.05) with cholesterol efflux capacity miR-3129-5p (Beta = 0.695), miR-20b (0.430), miR9-5p (0.111), miR-320d (- 0.190), miR301a-5p (0.042), miR-155-5p (0.004). In response to increasing concentrations (1 µg/mL vs. 3 µg/mL) of VAT extracellular vesicle, cholesterol efflux (66% ± 10% vs. 49% ± 2%; p < 0.01) and expression of ABCA1 (FC = 1.9 ± 0.8 vs 0.5 ± 0.2; p < 0.001), CD36 (0.7 ± 0.4 vs. 2.1 ± 0.8, p = 0.02), CYP27A1 (1.4 ± 0.4 vs. 0.9 ± 0.5; p < 0.05), and LXRA (1.8 ± 1.1 vs. 0.5 ± 0.2; p < 0.05) was altered in THP-1 cells in vitro.

CONCLUSION:

Adipocyte-derived extracellular vesicle microRNAs may, in part, be involved macrophage cholesterol efflux regulation.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Tecido Adiposo / Colesterol / MicroRNAs / Obesidade Infantil / Vesículas Extracelulares Limite: Adolescent / Female / Humans / Male Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Tecido Adiposo / Colesterol / MicroRNAs / Obesidade Infantil / Vesículas Extracelulares Limite: Adolescent / Female / Humans / Male Idioma: En Ano de publicação: 2019 Tipo de documento: Article