Sphingolipids and multidrug resistance of cancer cells

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Access status: Embargo until 2050-01-01 , chp%3A10.1007%2F4-431-34200-1_20.pdf (1.25 MB)

Publication date

2006

Authors

van Meer, G.ISNI 0000000397008035
Egmond, M.R.ISNI 0000000138583836
Halter, D.

Editors

Hirabayashi, Y.
Igarashi, Y.
Merrill jr., A.H.

Advisors

Supervisors

DOI

Document Type

Part of book

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Abstract

Multidrug resistance is a dramatic complication that can impede cancer treatment. Some cancer cells can become resistant to a cytostatic agent, survive and develop resistance to most agents available for chemotherapy. As multi-drug resistance is linked to sphingolipid metabolism, manipulating sphingolipid metabolism might be a way to circumvent the sensitization of cancer cells to chemotherapy. Two strategies seem particularly promising. One is to drive sphingolipid metabolism towards the production of proapoptotic lipid ceramide, which leads to cell death, and away from sphingosine-l-phosphate and glucosylceramide, which stimulate proliferation. The other is to alter the expression or activity of multidrug effiux pumps that in many cases supply the molecular basis for multidrug resistance.

Keywords

SDG 3 - Good Health and Well-being

Citation

van Meer, G, Egmond, M R & Halter, D 2006, Sphingolipids and multidrug resistance of cancer cells. in Y Hirabayashi, Y Igarashi & A H Merrill jr. (eds), Sphingolipid Biology. Springer, Tokyo, pp. 263-270.