1990PubMedRequires access

Quinine circumvents the doxorubicin resistance of a multidrug resistant human leukemic cell-line, K562/DXR.

Éric Solary, Isabelle Velay, Bruno Chauffert, Denis Caillot, Jeanne-Marie Bidan, Monique Dumas, Olivier Casasnovas, H. Guy

Open publisher page 9 citations

Abstract

Reversal of multidrug resistance (MDR) has been obtained in vitro by a variety of agents but clinical use of these resistance modifiers is hampered by their own toxicity. Quinine, the natural isomer of quinidine, is demonstrated to circumvent doxorubicin (DXR) resistance of an MDR human leukemic cell-line, K562/DXR. In culture medium, quinine (5 mu/ml or more) significantly increases cytotoxicity and accumulation of DXR in the resistant cells but not in the parental sensitive cells. When quinine is administered by continuous intravenous infusion in the doses conventionally used in chloroquino-resistant malaria (30 mg/kg/d), serum levels reach 8-11 micrograms/ml without prohibitive toxicity. Sera from quinine-treated patients enhance DXR uptake in K562/DXR cells in dose-dependent fashion. The conditions for the safe use of quinine as an MDR modifier in the treatment of refractory human hemopoietic malignancies are defined.

About this research paper

What this paper is about

Reversal of multidrug resistance (MDR) has been obtained in vitro by a variety of agents but clinical use of these resistance modifiers is hampered by their own toxicity. Quinine, the natural isomer of quinidine, is demonstrated to circumvent doxorubicin (DXR) resistance of an MDR human leukemic cell-line, K562/DXR. In culture medium, quinine (5 mu/ml or more) significantly increases cytotoxicity and accumulation of DXR in the resistant cells but not in the parental sensitive cells. When quinine is administered by continuous intravenous infusion in the doses conventionally used in chloroquino-resistant malaria (30 mg/kg/d), serum levels reach 8-11 micrograms/ml without prohibitive toxicity. Sera from quinine-treated patients enhance DXR uptake in K562/DXR cells in dose-dependent fashion. The conditions for the safe use of quinine as an MDR modifier in the treatment of refractory human hemopoietic malignancies are defined.

Why it matters

OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Reversal of multidrug resistance (MDR) has been obtained in vitro by a variety of agents but clinical use of these resistance modifiers is hampered by their own toxicity. Quinine, the natural isomer of quinidine, is demonstrated to circumvent doxorubicin (DXR) resistance of an MDR human leukemic cell-line, K562/DXR. In culture medium, quinine (5 mu/ml or more) significantly increases cytotoxicity and accumulation of DXR in the resistant cells but not in the parental sensitive cells. When quinine is administered by continuous intravenous infusion in the doses conventionally used in chloroquino-resistant malaria (30 mg/kg/d), serum levels reach 8-11 micrograms/ml without prohibitive toxicity. Sera from quinine-treated patients enhance DXR uptake in K562/DXR cells in dose-dependent fashion. The conditions for the safe use of quinine as an MDR modifier in the treatment of refractory human hemopoietic malignancies are defined.

Key concepts: Quinine, Doxorubicin, Pharmacology, K562 cells, Multiple drug resistance, Quinidine, Toxicity, Cell culture

Related papers

Back to paper searchBrowse research topicsOriginal source
Quinine circumvents the doxorubicin resistance of a multidrug resistant human leukemic cell-line, K562/DXR. — Research Paper | ScholarLens