| Literature DB >> 32848891 |
Donato Moschetta1,2, Matteo Nicola Dario Di Minno3, Benedetta Porro4, Gianluca L Perrucci5, Vincenza Valerio1,6, Valentina Alfieri1, Ilaria Massaiu1, Alexander N Orekhov7, Alessandro Di Minno8, Paola Songia1, Viviana Cavalca4, Veronika A Myasoedova1, Paolo Poggio1.
Abstract
INTRODUCTION: Osteopontin (OPN) is involved in ectopic calcification. Its circulating form is upregulated in coronary artery disease (CAD) patients. Circulating OPN levels positively correlate with oxidative stress, one of the major triggers of endothelial dysfunction. Endothelial dysfunction is, in turn, associated with reduced nitric oxide (NO) bioavailability due to the impaired arginine pathway. The aim of this study was to better understand the correlations between OPN, oxidative stress markers, and the arginine pathway metabolites. METHODS ANDEntities:
Keywords: OPN; atherosclerosis; citrulline; endothelial dysfunction; nitric oxide
Year: 2020 PMID: 32848891 PMCID: PMC7424048 DOI: 10.3389/fphys.2020.00982
Source DB: PubMed Journal: Front Physiol ISSN: 1664-042X Impact factor: 4.566
FIGURE 1Linear regression analyses between osteopontin (OPN) and GSH/GSSG ratio (A) and 2,3-dinor-8isoPGF2a (B).
FIGURE 2Linear regression analyses between osteopontin (OPN) and arginine (A), ornithine (B), Citrulline (C), asymmetric dimetilarginine [ADMA, (D)], symmetric dimethilarginine [SDMA, (E)], and global arginine bioavailability [GABR, (F)].
FIGURE 3Linear regression analyses between citrulline and ornithine (A) and asymmetric dimetilarginine [ADMA, (B)].
FIGURE 4Proposed molecular pathway. OPN, osteopontin, SDMA, symmetric dimethilarginine, ADMA, asymmetric dimetilarginine, CAT, cationic aminoacid transporter, OTC, ornithinetranscarbamilase, DDAH, dimethylarginine dimethylaminohydrolase, ROS, reactive oxygen species.