Investigations on MRI changes after 5-aminolevulinic acid mediated interstitial photodynamic therapy for malignant

Mohamed El Fahim1,2, Marco Foglar1,3, Herbert Stepp1,4

  • 1Laser-Forschungslabor, LIFE Center, LMU University Hospital, LMU Munich, Fraunhoferstrasse 20, 82152, Planegg, Germany.

Insights

Interstitial photodynamic therapy (iPDT) shows promise for glioblastoma. Early postoperative MRI findings, particularly contrast enhancement overlap, may predict treatment response and progression-free survival.

Area of Science:

  • Neuro-oncology
  • Medical imaging
  • Photodynamic therapy

Background:

  • Glioblastoma treatment remains challenging with poor prognosis.
  • Interstitial photodynamic therapy (iPDT) offers an alternative therapeutic approach.
  • Understanding intracranial tissue response to iPDT is crucial for treatment optimization.

Purpose of the Study:

  • To investigate intracranial tissue reactions and morphological changes following iPDT for glioblastoma.
  • To evaluate the utility of MRI at specific time points for assessing iPDT response.
  • To identify potential imaging biomarkers for predicting treatment outcomes.

Main Methods:

  • Retrospective analysis of MRI sequences (T1, T2, DWI, ADC) in 16 glioblastoma patients.
  • Imaging data acquired pre-iPDT, within 1 day post-iPDT, and at 3-6 months follow-up.
  • Assessment of changes in hypointense areas, necrosis, enhancement, edema, diffusion restriction, and blood volume.

Main Results:

  • Postoperative MRI revealed increased edema and diffusion restriction.
  • A distinct "iPDT remnant" structure was identified on T2 images.
  • Reduced iPDT remnant size and normalized diffusion were observed at follow-up.
  • A small overlap between initial tumor enhancement and early postoperative enhancement correlated with longer progression-free survival.

Conclusions:

  • MRI, particularly when performed at specific intervals post-iPDT, is vital for monitoring treatment response.
  • Early postoperative contrast enhancement patterns may serve as a predictive biomarker for iPDT efficacy.
  • Neuroradiological interpretation of iPDT effects requires consideration of unique morphological changes.