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10.1177/1849454416663659

http://scihub22266oqcxt.onion/10.1177/1849454416663659
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C5548327!5548327!28936261
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suck abstract from ncbi


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pmid28936261      J+Circ+Biomark 2016 ; 5 (ä): ä
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  • The signature of circulating microparticles in heart failure patients with metabolic syndrome #MMPMID28936261
  • Berezin AE; Kremzer A; Berezina T; Martovitskaya Y
  • J Circ Biomark 2016[Jan]; 5 (ä): ä PMID28936261show ga
  • The role of pattern of circulating endothelial cell-derived microparticles, platelet-derived microparticles (PMPs), and monocyte-derived microparticles (MMPs) in metabolic syndrome (MetS) patients with chronic heart failure (CHF) is not still understood. The aim of the study was to investigate a pattern of circulating microparticles (MPs) in MetS patients with CHF in relation to neurohumoral and inflammatory activation. The study retrospectively involved 101 patients with MetS and 35 healthy volunteers. Biomarkers were measured at baseline of the study. The results of the study have shown that numerous circulating PMPs- and MMPs in subjects with MetS (with or without CHF) insufficiently distinguished from level obtained in healthy volunteers. We found elevated level of CD31+/annexin V+ MPs in association with lower level of CD62E+ MPs. Therefore, we found that biomarkers of biomechanical stress serum N-terminal brain natriuretic peptide and inflammation (high-sensitive C-reactive protein ,osteoprotegerin) remain statistically significant predictors for decreased CD62E+ to CD31+/annexin V+ ratio in MetS patients with CHF. In conclusion, decreased CD62E+ to CD31+/annexin V+ ratio reflected that impaired immune phenotype of MPs may be discussed as a surrogate marker of CHF development in MetS population.
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