Mechanistic study of PpIX accumulation using the JFCR39 cell panel revealed a role for dynamin 2-mediated exocytosis

Yuya Kitajima1, Takuya Ishii1, Takeo Kohda1

  • 1SBI Pharmaceuticals Co., Ltd, Tokyo, Japan.

Scientific Reports
|June 19, 2019
PubMed

Insights

5-aminolevulinic acid (5-ALA) photodynamic therapy relies on protoporphyrin IX (PpIX) accumulation. This study found dynamin 2, not ABCG2, is key for PpIX excretion in tumor cells, impacting treatment efficacy.

Area of Science:

  • Oncology
  • Biochemistry
  • Cell Biology

Background:

  • 5-aminolevulinic acid (5-ALA) is used for cancer photodynamic diagnosis (PDD) and therapy (PDT).
  • Tumor cells accumulate protoporphyrin IX (PpIX), a photosensitive heme precursor, when treated with 5-ALA.
  • Efficient PpIX accumulation, dependent on cellular uptake and reduced excretion, is crucial for ALA-PDD/PDT efficacy.

Purpose of the Study:

  • To investigate PpIX production and accumulation in diverse tumor cells using the JFCR39 cell panel.
  • To identify cellular factors involved in PpIX excretion by tumor cells.
  • To clarify the role of ABCG2 and dynamin 2 in PpIX transport.

Main Methods:

  • Utilized the JFCR39 cell panel to analyze PpIX production and accumulation.
  • Investigated the correlation between PpIX excretion and the expression of ABCG2 and dynamin 2.
  • Assessed the impact of ABCG2 and dynamin inhibitors on intracellular PpIX levels.

Main Results:

  • ABCG2 expression showed a weak correlation with PpIX excretion, despite ABCG2 inhibitors increasing PpIX accumulation in some cell lines.
  • Dynamin 2 expression levels strongly correlated with PpIX excretion rates.
  • Dynamin inhibitors significantly reduced PpIX excretion and increased intracellular PpIX accumulation.

Conclusions:

  • Dynamin 2, a molecule involved in exocytosis, plays a significant role in tumor cell PpIX excretion.
  • This study establishes a causal link between dynamin 2 expression and PpIX excretion, challenging the primary role of ABCG2.
  • Understanding dynamin 2's role can optimize 5-ALA based cancer therapies.

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