Journal of Translational Medicine (Nov 2020)

Transcriptome analysis identifies putative multi-gene signature distinguishing benign and malignant pancreatic head mass

  • Bishnupriya Chhatriya,
  • Moumita Mukherjee,
  • Sukanta Ray,
  • Barsha Saha,
  • Somdatta Lahiri,
  • Sandip Halder,
  • Indranil Ghosh,
  • Sujan Khamrui,
  • Kshaunish Das,
  • Samsiddhi Bhattacharjee,
  • Saroj Kant Mohapatra,
  • Srikanta Goswami

DOI
https://doi.org/10.1186/s12967-020-02597-1
Journal volume & issue
Vol. 18, no. 1
pp. 1 – 15

Abstract

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Abstract Background Most often, the patients with pancreatic diseases are presented with a mass in pancreatic head region and existing methods of diagnosis fail to confirm whether the head mass is malignant or benign. As subsequent management of the disease hugely depends on the correct diagnosis, we wanted to explore possible biomarkers which could distinguish benign and malignant pancreatic head masses. Methods In order to address that gap, we performed a case–control study to identify genome-wide differentially expressed coding and noncoding genes between pancreatic tissues collected from benign and malignant head masses. These genes were next shortlisted using stringent criteria followed by selection of top malignancy specific genes. They subsequently got validated by quantitative RT-PCR and also in other patient cohorts. Survival analysis and ROC analysis were also performed. Results We identified 55 coding and 13 noncoding genes specific for malignant pancreatic head masses. Further shortlisting and validation, however, resulted in 5 coding genes as part of malignancy specific multi-gene signature, which was validated in three independent patient cohorts of 145 normal and 153 PDAC patients. We also found that overexpression of these genes resulted in survival disadvantage in the patients and ROC analysis identified that combination of 5 coding genes had the AUROC of 0.94, making them potential biomarker. Conclusions Our study identified a multi-gene signature comprising of 5 coding genes (CDCA7, DLGAP5, FOXM1, TPX2 and OSBPL3) to distinguish malignant head masses from benign ones.

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