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Comparison of endothelin-1 levels in plasma from human coronary arteries measured by enzyme linked immunosorbent assay and Olink high-throughput proteomics platform

Canadian Journal of Physiology and Pharmacology, 2026

Anwar M., Kuc R., Bullock C., Abraham G., Maguire J., Hoole S., Proudfoot D., Davenport A.

Disease areaApplication areaSample typeProducts
CVD
Technology Evaluation
Plasma
Olink Explore 3072/384

Olink Explore 3072/384

Abstract

Endothelin-1 (ET-1) antagonists are increasingly being approved for new treatments for cardiovascular disease, where elevated ET-1 levels contribute to increased vasoconstriction. Further therapeutic targets, including coronary artery disease, are under investigation. The Olink Explore 3072 Proximity Extension Assay platform enables multiplexed high-throughput measurement of ~3000 plasma proteins, from minimal (≤6 µL) sample volumes. However, it is not known if the two oligonucleotide–tagged antibodies raised against preproET-1 1-212 , used in this Olink assay, specifically measure biologically active ET-1 or the other inactive EDN1-encoded peptides, also secreted by human endothelial cells. Paired plasma samples from 29 patients with coronary artery disease were obtained, using a specialised intra-coronary sampling catheter, designed to obtain site specific biochemical information from within coronary arteries. We compared ET-1 concentrations measured with an ET-1 specific ELISA, demonstrated to have no cross-reactivity with other EDN1-encoded peptides versus values obtained using Olink Explore platform. Olink-measured ET-1 correlated significantly with ELISA-derived ET-1 levels ( r = 0.53, p = 0.003), and Olink values predicted ELISA results. Olink ET-1 concentrations also correlated with ET B receptor levels ( r = 0.40, p < 0.05). These findings indicate that the Olink Explore platform can detect relative changes in biologically active ET-1, supporting its use as a biomarker tool in clinical and translational studies.

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