Functional Investigation of IGF1R Mutations in Multiple Myeloma

Sofia Catalina Heredia-Guerrero1, Marietheres Evers1, Sarah Keppler1

  • 1Institute of Pathology, University of Würzburg, 97080 Würzburg, Germany.

Cancers
|June 19, 2024
PubMed

Insights

Investigating insulin-like growth factor-1 receptor (IGF1R) mutations in multiple myeloma (MM) revealed their impact on signaling. Combining linsitinib with carfilzomib showed enhanced anti-myeloma activity, suggesting a potential therapeutic strategy for MM patients.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • High expression and mutations of insulin-like growth factor-1 receptor (IGF1R) are linked to worse prognosis in multiple myeloma (MM).
  • Previous trials combining an IGF1R inhibitor with bortezomib showed promise, but IGF1R expression didn't correlate with response.

Purpose of the Study:

  • To investigate the functional impact of IGF1R mutations on survival signaling, cell viability, proliferation, and response to therapy in MM.
  • To evaluate the anti-myeloma activity of linsitinib, an IGF1R inhibitor, in combination with carfilzomib, a proteasome inhibitor.

Main Methods:

  • Transfected human myeloma cell lines (HMCLs) with wild-type (WT) and mutant IGF1R.
  • Generated CRISPR-Cas9 IGF1R knockouts in HMCLs.
  • Tested the anti-MM activity of linsitinib alone and with carfilzomib in seven HMCLs.

Main Results:

  • IGF1R knockout reduced cell proliferation.
  • IGF1R overexpression moderately increased survival signaling but did not affect viability.
  • The mutant IGF1R (D1146N) affected IGF1R activation but not downstream signaling.
  • Linsitinib and carfilzomib combination demonstrated enhanced anti-myeloma activity in most tested HMCLs, irrespective of IGF1R mutation status.

Conclusions:

  • IGF1R mutations can influence IGF1R activation and downstream signaling pathways.
  • Combining linsitinib with carfilzomib represents a potential therapeutic strategy for MM patients who may benefit from IGF1R blockade.

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