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Effects of photodynamic therapy on adhesion molecules and metastasis

N Rousset1, V Vonarx, S Eléouet

  • 1Département Laser, Hôpital Laënnec, Nantes, France.

Insights

Photodynamic therapy (PDT) significantly reduces cancer metastasis by decreasing cell adhesiveness and altering adhesion molecule expression. These effects, observed with benzoporphyrin derivative monoacid ring A (BPD) and Photofrin, are crucial for understanding PDT

Area of Science:

  • Oncology
  • Biochemistry
  • Cell Biology

Background:

  • Photodynamic therapy (PDT) is known to damage cancer cells and affect their adhesion properties, a key factor in metastasis.
  • Previous studies demonstrated that hematoporphyrin derivative (HPD)-PDT reduces cancer cell adhesiveness and metastatic potential in vivo.
  • The current study investigates the impact of PDT on cancer cell metastasis and the expression of adhesion molecules.

Purpose of the Study:

  • To analyze the influence of PDT on cancer cell metastatic potential in vivo.
  • To evaluate the in vitro effect of PDT on the expression of adhesion molecules involved in cancer metastasis.
  • To compare the efficacy of benzoporphyrin derivative monoacid ring A (BPD) and Photofrin in reducing metastasis and altering adhesion molecule expression.

Main Methods:

  • Two colon cancer cell lines (PROb and REGb) with differing metastatic properties were used.
  • Phototoxicity was assessed using the MTT assay to determine optimal PDT doses.
  • Flow cytometry was employed to analyze the expression of ICAM-1, MHC-1, CD44v6, and its lectins (àHt1.3, PNA, SNA, UEA).
  • In vivo metastatic potential was evaluated by injecting PDT-treated cells into rats and counting lung metastases.

Main Results:

  • PDT significantly reduced lung metastases in vivo by 71-97% for BPD and 90-97% for Photofrin.
  • PDT treatment led to a significant decrease in CD44v6, its lectins (àHt1.3, PNA, SNA), and MHC-1 expression in both PROb and REGb cells.
  • The observed changes in adhesion molecule expression partially explain the reduction in metastatic potential.

Conclusions:

  • PDT, using BPD and Photofrin, effectively reduces cancer cell metastatic potential in vivo.
  • PDT alters the expression of key adhesion molecules, including CD44v6, contributing to reduced metastasis.
  • The transient nature of these molecular changes suggests complex mechanisms underlying PDT's anti-metastatic effects.

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