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An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
Down-regulation of CD98 in melphalan-resistant myeloma cells with reduced drug uptake
1Department of Internal Medicine II, Kumamoto University School of Medicine, Kumamoto, Japan.
Abstract:
Although melphalan has been used as a therapeutic reagent for multiple myeloma, many patients become refractory. To elucidate the mechanism of resistance to melphalan, we generated a melphalan-resistant myeloma cell line, KHM-11(EMS), by treating a parental line, KHM-11, with a mutagen, ethylmethanesulfonate. KHM-11(EMS) is 55 times more resistant to melphalan. gamma-Glutamylcysteine synthetase, P-glycoprotein, multidrug-resistance-associated protein, lung-resistance-related protein and the Bcl-2 family of proteins were not responsible for the drug resistance in KHM-11(EMS). Intracellular incorporation of melphalan to myeloma cells was determined by using [(14)C]-labeled melphalan. Accumulation of melphalan in KHM-11(EMS) was 43% of KHM-11, while the efflux rates were comparable in both cell lines. The uptake of melphalan was inhibited by the addition of L-phenylalanine, indicating that melphalan is incorporated through the L-phenylalanine transporter as reported previously. Expression of CD98, which was recently cloned as an L-phenylalanine transporter, was 6-fold decreased in KHM-11(EMS), suggesting that CD98 may be correlated with the incorporation of melphalan. CD98 expression and incorporation of melphalan were analyzed in fresh purified myeloma cells from 5 patients. All myeloma cells from 4 cases expressed CD98 at a high level and incorporated melphalan. However, tumor cells from 1 case expressed CD98 at low levels and did not incorporate melphalan. Taken together, reduced melphalan uptake could be responsible for the drug resistance in KHM-11(EMS), and down-regulation of CD98 may be related to this phenomenon. Further investigation of the correlation between impaired drug uptake and down-regulation of CD98 in myeloma cells should be important to understand the mechanism of resistance to melphalan.
Insights
Melphalan resistance in multiple myeloma may stem from reduced drug uptake, not common resistance proteins. Down-regulation of the L-phenylalanine transporter CD98 is linked to decreased melphalan incorporation in resistant cells.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Melphalan is a key therapeutic for multiple myeloma.
- Acquired melphalan resistance limits treatment efficacy in many patients.
Purpose of the Study:
- To investigate the mechanisms underlying melphalan resistance in multiple myeloma.
- To identify novel molecular targets associated with melphalan refractoriness.
Main Methods:
- Generated a melphalan-resistant myeloma cell line (KHM-11(EMS)) using ethylmethanesulfonate.
- Assessed melphalan accumulation and efflux using [(14)C]-labeled melphalan.
- Analyzed expression of known resistance proteins (e.g., P-glycoprotein, Bcl-2 family) and the L-phenylalanine transporter CD98.
- Correlated CD98 expression and melphalan uptake in patient-derived myeloma cells.
Main Results:
- KHM-11(EMS) cells exhibited 55-fold resistance to melphalan.
- Common drug resistance mechanisms were ruled out.
- Melphalan uptake was significantly reduced (43%) in resistant cells, with comparable efflux rates.
- Reduced CD98 expression (6-fold decrease) correlated with decreased melphalan incorporation.
- Patient myeloma cells with low CD98 expression showed impaired melphalan uptake.
Conclusions:
- Reduced melphalan uptake, potentially mediated by CD98 down-regulation, is a key mechanism of drug resistance in multiple myeloma.
- CD98 represents a potential therapeutic target for overcoming melphalan resistance.
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