4.7 Article

miR-223-3p as a potential biomarker and player for adipose tissue dysfunction preceding type 2 diabetes onset

Journal

MOLECULAR THERAPY-NUCLEIC ACIDS
Volume 23, Issue -, Pages 1035-1052

Publisher

CELL PRESS
DOI: 10.1016/j.omtn.2021.01.014

Keywords

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Funding

  1. Ministerio de Ciencia, Innovacion y Universidades/FEDER [BFU2016-76711-R, BFU2017-90578-REDT, AGL2012/39615, AGL2015-67896-P]
  2. Consejeria de Salud y Bienestar Social/Junta de Andalucia/FEDER [PI-0159-2016, PI-0092-2017]
  3. Plan Propio de Investigacion de la Universidad de Cordoba
  4. Instituto de Salud Carlos III (ISCIII)/FEDER [PIE14/00005]
  5. postdoctoral grant Juan de la Cierva Formacion from the MICINN (Spain) [FJCI-2017-32194]
  6. European Regional Development Fund/European Social Fund Investing in your future
  7. Consejeria de Economia, Conocimiento, Empresas y Universidad/Junta de Andalucia/FEDER [BIO-0139]

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The study reveals a close relationship between circulating miRNAs associated with T2D onset and adipose tissue (AT) dysfunction, specifically highlighting the significance of miR-223-3p secretion and intracellular accumulation in preadipocytes and adipocytes as potential contributors to metabolic dysregulation preceding T2D.
Circulating microRNAs (miRNAs) have been proposed as biomarkers for type 2 diabetes (T2D). Adipose tissue (AT), for which dysfunction is widely associated with T2D development, has been reported as a major source of circulating miRNAs. However, the role of dysfunctional AT in the altered pattern of circulating miRNAs associated with T2D onset remains unexplored. Herein, we investigated the relationship between T2D-associated circulating miRNAs and AT function, as well as the role of preadipocytes and adipocytes as secreting cells of candidate circulating miRNAs. Among the plasma miRNAs related to T2D onset in the CORonary Diet Intervention with Olive oil and cardiovascular PREVention (CORDIOPREV) cohort, baseline miR-223-3p levels (diminished in patients who next developed T2D [incident-T2D]) were significantly related to AT insulin resistance (IR). Baseline serum from incident-T2D participants induced inflammation and IR in 3T3-L1 adipocytes. We demonstrated that tumor necrosis factor (TNF)-alpha inhibited miR-223-3p secretion while enhancing miR-223-3p intracellular accumulation in 3T3-L1 (pre)adipocytes. Overexpression studies showed that an intracellular increase of miR-223-3p impaired glucose and lipid metabolism in these cells. Our findings provide mechanistic insights into the alteration of circulating miRNAs preceding T2D, unveiling both preadipocytes and adipocytes as miR-223-3p-secreting cells and suggesting that inflammation promotes miR-223-3p intracellular accumulation, which might contribute to (pre)adipocyte dysfunction and body metabolic dysregulation.

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