4.7 Article

BGP-15 Inhibits Hyperglycemia-Aggravated VSMC Calcification Induced by High Phosphate

期刊

出版社

MDPI
DOI: 10.3390/ijms22179263

关键词

BGP-15; vascular smooth muscle cell; vascular calcification; high glucose; diabetes mellitus

资金

  1. Hungarian Academy of Sciences [11003]
  2. Hungarian Government [OTKA-K132828]
  3. European Union
  4. European Social Fund [GINOP-2.3.2-15-2016-00043]
  5. Thematic Excellence Programme of the Ministry for Innovation and Technology in Hungary [ED_18-1-2019-0028, TKP2020-NKA-04]
  6. Higher Education Institutional Excellence Programme of the Ministry of Innovation and Technology in Hungary [NKFIH-1150-6/2019]

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The study demonstrates that BGP-15 can effectively inhibit vascular smooth muscle cell calcification induced by high phosphate levels, preventing osteochondrogenic phenotypic switch and mineralization, as well as deposition of calcium in the extracellular matrix.
Vascular calcification associated with high plasma phosphate (Pi) level is a frequent complication of hyperglycemia, diabetes mellitus, and chronic kidney disease. BGP-15 is an emerging anti-diabetic drug candidate. This study was aimed to explore whether BGP-15 inhibits high Pi-induced calcification of human vascular smooth muscle cells (VSMCs) under normal glucose (NG) and high glucose (HG) conditions. Exposure of VSMCs to Pi resulted in accumulation of extracellular calcium, elevated cellular Pi uptake and intracellular pyruvate dehydrogenase kinase-4 (PDK-4) level, loss of smooth muscle cell markers (ACTA, TAGLN), and enhanced osteochondrogenic gene expression (KLF-5, Msx-2, Sp7, BMP-2). Increased Annexin A2 and decreased matrix Gla protein (MGP) content were found in extracellular vesicles (EVs). The HG condition markedly aggravated Pi-induced VSMC calcification. BGP-15 inhibited Pi uptake and PDK-4 expression that was accompanied by the decreased nuclear translocation of KLF-5, Msx-2, Sp7, retained VSMC markers (ACTA, TAGLN), and decreased BMP-2 in both NG and HG conditions. EVs exhibited increased MGP content and decreased Annexin A2. Importantly, BGP-15 prevented the deposition of calcium in the extracellular matrix. In conclusion, BGP-15 inhibits Pi-induced osteochondrogenic phenotypic switch and mineralization of VSMCs in vitro that make BGP-15 an ideal candidate to attenuate both diabetic and non-diabetic vascular calcification.

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