Differential expression of platelet derived growth factor-beta in malignant mesothelioma: a clue to future therapies?

H W Pogrebniak1, I A Lubensky, H I Pass

  • 1Thoracic Oncology Section, Surgery Branch, National Cancer Institute/NIH, Bethesda, MD 20892.

Surgical Oncology
|August 1, 1993
PubMed

Insights

Malignant mesothelioma (MM) tumors often overexpress platelet-derived growth factor-beta (PDGF-beta) mRNA, suggesting a potential autocrine mechanism driving cancer growth. This finding may inform new biologic therapies for this difficult-to-treat cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Malignant mesothelioma (MM) exhibits resistance to conventional treatments.
  • Autocrine growth mechanisms, driven by factors like platelet-derived growth factor (PDGF), are being explored for novel MM therapies.
  • PDGF, a mitogen for mesenchymal cells, is produced by MM cell lines, suggesting a role in tumor promotion.

Purpose of the Study:

  • To investigate the expression of PDGF-beta mRNA in malignant mesothelioma tumor specimens.
  • To determine if PDGF-beta is upregulated in MM and potentially contributes to tumor growth via an autocrine pathway.

Main Methods:

  • RNA extraction from 16 out of 18 MM tumor specimens.
  • Northern blot analysis to detect and quantify PDGF-beta mRNA expression.
  • Comparison of PDGF-beta expression levels in tumors versus a positive control (stimulated monocytes).

Main Results:

  • PDGF-beta mRNA transcripts were detected in all 16 usable MM tumor specimens.
  • Elevated PDGF-beta expression, above control levels, was observed in 10 out of 16 (63%) MM patients.
  • A significant increase in PDGF-beta expression was noted, with the highest levels being 230% greater than the lowest.

Conclusions:

  • PDGF-beta mRNA is frequently expressed in malignant mesothelioma tumors.
  • The upregulation of PDGF-beta suggests its potential involvement in MM pathogenesis through an autocrine mechanism.
  • Understanding PDGF-beta's role could lead to the development of targeted biologic therapies for MM.