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Intrinsic resistance to chemotherapeutic agents in murine osteosarcoma cells

H Takeshita1, K Kusuzaki, T Ashihara

  • 1Department of Orthopaedic Surgery, Otsu Municipal Hospital, Shiga Prefecture, Japan. h2-take@kf6.so-net.ne.jp

Abstract

Insights

Intrinsic drug resistance in osteosarcoma may stem from reduced drug accumulation due to decreased plasma membrane permeability. This finding offers insights into overcoming multidrug resistance in osteosarcoma treatment.

Area of Science:

  • Oncology
  • Cell Biology
  • Pharmacology

Background:

  • Drug resistance in osteosarcoma is categorized as acquired or intrinsic.
  • Mechanisms of acquired drug resistance are well-studied, but intrinsic resistance mechanisms remain largely unknown.
  • Investigating intrinsic drug resistance is crucial for improving osteosarcoma chemotherapy.

Purpose of the Study:

  • To elucidate the cytological and biochemical differences between acquired and intrinsic drug resistance in osteosarcoma cells.
  • To compare the mechanisms of resistance in a newly cloned intrinsically resistant cell line (MOS/IR1) and an acquired resistant cell line (MOS/ADR1).

Main Methods:

  • Established and characterized two osteosarcoma cell lines: MOS/ADR1 (acquired resistance) and MOS/IR1 (intrinsic resistance).
  • Assessed drug resistance levels, cell morphology, alkaline phosphatase activity, and DNA content.
  • Investigated P-glycoprotein expression, intracellular drug accumulation, and the effects of P-glycoprotein antagonists and ATP depletion.
  • Evaluated cross-resistance patterns and the impact of plasma membrane permeabilization.

Main Results:

  • Both MOS/ADR1 and MOS/IR1 cells exhibited significant doxorubicin resistance.
  • MOS/ADR1 cells overexpressed P-glycoprotein, while MOS/IR1 cells did not.
  • MOS/IR1 cells showed reduced intracellular accumulation of doxorubicin, linked to decreased plasma membrane permeability.
  • MOS/IR1 cells displayed broad cross-resistance to multiple drugs, correlated with drug molecular weight, unlike MOS/ADR1 cells.

Conclusions:

  • Intrinsic drug resistance in MOS/IR1 cells is likely due to decreased plasma membrane permeability, reducing intracellular drug accumulation.
  • This mechanism may explain intrinsic multidrug resistance in osteosarcoma.
  • Understanding these mechanisms can guide strategies to overcome intrinsic drug resistance in osteosarcoma therapy.

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