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Merck

Tie-2, G-CSF, and Leptin as Promising Diagnostic Biomarkers for Endometrial Cancer: A Pilot Study.

Journal of clinical medicine (2021-03-07)
Luka Roškar, Teja Klančič, Tamara Knific, Tea Lanišnik Rižner, Špela Smrkolj
RESUMEN

Preoperative determination of the extent of endometrial cancer (EC) would avoid the complications associated with radical surgery. Screening of patients' plasma biomarkers might enable a more precise diagnosis of EC and a tailored treatment approach. This prospective case-control monocentric pilot study included 76 postmenopausal women (38 endometrioid EC patients and 38 control patients with benign gynecological conditions), and 37 angiogenic factors (AFs) were investigated as potential biomarkers for EC. AF concentrations in preoperative plasma samples were measured using Luminex xMAP™ multiplexing technology. The plasma levels of sTie-2 and G-CSF were significantly lower in EC compared to control patients, whereas the plasma levels of leptin were significantly higher in EC patients. Neuropilin-1 plasma levels were significantly higher in patients with type 2 EC (grade 3) compared to patients with lower grade cancer or controls. Follistatin levels were significantly higher in patients with lymphovascular invasion, and IL-8 plasma levels were significantly higher in patients with metastases. If validated, the plasma concentrations of the indicated AFs could represent an important additional diagnostic tool for the early detection and characterization of EC. This could guide the decision-making on the extent of surgery. Further studies with larger patient numbers are currently ongoing.

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Millipore
MILLIPLEX® Human Angiogenesis/Growth Factor Magnetic Bead Panel - Cancer Multiplex Assay, Angiogenesie Bead-Based Multiplex Assays using the Luminex technology enables the simultaneous analysis of multiple angiogenic biomarkers in human serum, plasma and cell culture samples.
Millipore
MILLIPLEX® Human Angiogenesis Panel 2, HANG2MAG-12K, Angiogenesis Bead-Based Multiplex Assays using the Luminex technology enables the simultaneous analysis of multiple angiogenic biomarkers in human serum, plasma and cell culture samples.