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Cell-Free Methylated PTGER4 and SHOX2 Plasma DNA as a Biomarker for Therapy Monitoring and Prognosis in Advanced Stage NSCLC Patients

  • Michael Fleischhacker
  • , Erkan Arslan
  • , Dana Reinicke
  • , Stefan Eisenmann
  • , Gerit Theil
  • , Jens Kollmeier
  • , Christoph Schäper
  • , Christian Grah
  • , Frank Klawonn
  • , Stefan Holdenrieder
  • , Bernd Schmidt
  • DRK Kliniken Berlin
  • Lungenarztpraxis Berlin-Reinickendorf
  • University Hospital
  • Helios Klinikum Emil von Behring
  • University Medicine Greifswald
  • Pneumologie und Lungenkrebszentrum
  • Ostfalia University
  • Helmholtz Centre for Infection Research (HZI)

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Notwithstanding some improvement in the earlier detection of patients with lung cancer, most of them still present with a late-stage disease at the time of diagnosis. Next to the most frequently utilized factors affecting the prognosis of lung cancer patients (stage, performance, and age), the recent application of biomarkers obtained by liquid profiling has gained more acceptance. In our study, we aimed to answer these questions: (i) Is the quantification of free-circulating methylated PTGER4 and SHOX2 plasma DNA a useful method for therapy monitoring, and is this also possible for patients treated with different therapy regimens? (ii) Is this approach possible when blood-drawing tubes, which allow for a delayed processing of blood samples, are utilized? Baseline values for mPTGER4 and mSHOX2 do not allow for clear discrimination between different response groups. In contrast, the combination of the methylation values for both genes shows a clear difference between responders vs. non-responders at the time of re-staging. Furthermore, blood drawing into tubes stabilizing the sample allows researchers more flexibility.

Original languageEnglish
Article number2131
JournalDiagnostics
Volume13
Issue number13
DOIs
StatePublished - Jul 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • liquid profiling
  • mPTGER4
  • mSHOX2
  • methylation
  • plasma

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