The brain tissue response to surgical injury and its possible contribution to glioma recurrence

Lauriane Hamard1, David Ratel2, Laurent Selek1,3,4

  • 1INSERM UA 01, Clinatec, Centre de recherche biomédicale Edmond J. Safra, CEA 17 rue des Martyrs, 38054, Grenoble cedex, France.

Insights

Surgical brain injury (SBI) response promotes glioma recurrence by activating growth factors and inflammation at the resection margin. Targeting these repair mechanisms could prevent tumor regrowth.

Area of Science:

  • Neuro-oncology
  • Surgical pathology
  • Inflammation research

Background:

  • Glioma surgery has high recurrence rates, particularly at the resection margin.
  • The role of surgical brain injury (SBI) in glioma recurrence is often overlooked.
  • Tissue repair mechanisms following brain injury can paradoxically promote glioma growth.

Purpose of the Study:

  • To review mechanisms of tissue repair after SBI that influence glioma recurrence.
  • To explore the dual role of inflammation in brain healing and tumor growth.
  • To identify potential therapeutic strategies targeting SBI-induced responses.

Main Methods:

  • Literature review of molecular and cellular processes in tissue repair after SBI.
  • Analysis of key signaling pathways (e.g., NFκB, STAT3) involved in healing and glioma growth.
  • Examination of the interplay between inflammation, angiogenesis, and tumor recurrence.

Main Results:

  • SBI triggers repair processes involving growth factors, cytokines, and transcription factors (NFκB, STAT3).
  • These processes promote glioma cell proliferation, survival, angiogenesis, and inflammation.
  • Inflammation, a key component of healing, exhibits both pro- and anti-tumorigenic effects.

Conclusions:

  • The brain's response to SBI can significantly contribute to glioma recurrence at the resection margin.
  • Modulating the inflammatory response to SBI offers a potential therapeutic avenue to prevent local recurrence.
  • Further research is needed to understand and manipulate these complex biological responses for improved glioma treatment.