Nucleoside transporters: biological insights and therapeutic applications.

Future Med Chem

Department of Pharmacology, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH 44106, USA.

Published: July 2012

AI Article Synopsis

  • Nucleoside transporters regulate the concentration of purine and pyrimidine nucleosides in and out of cells, with two main families: equilibrative (gradient-dependent) and concentrative (sodium-coupled) transporters.
  • These transporters play key roles in various physiological processes, including inflammation, cardiovascular function, and nutrient movement across the blood-brain barrier, as well as in diseases like cardiovascular issues and cancer.
  • The review explores therapeutic possibilities involving nucleoside analogs against cancer and suggests future research on new compounds to measure nucleoside transport activity in cells and organisms.

Article Abstract

Nucleoside transporters play important physiological roles by regulating intra- and extra-cellular concentrations of purine and pyrimidine (deoxy)nucleosides. This review describes the biological function and activity of the two major families of membrane nucleoside transporters that exist in mammalian cells. These include equilibrative nucleoside transporters that transport nucleosides in a gradient-dependent fashion and concentrative nucleoside transporters that import nucleosides against a gradient by coupling movement with sodium transport. Particular emphasis is placed on describing the roles of nucleoside transport in normal physiological processes, including inflammation, cardiovascular function and nutrient transport across the blood-brain barrier. In addition, the role of nucleoside transport in pathological conditions such as cardiovascular disease and cancer are discussed. The potential therapeutic applications of manipulating nucleoside transport activities are discussed, focusing on nucleoside analogs as anti-neoplastic agents. Finally, we discuss future directions for the development of novel chemical entities to measure nucleoside transport activity at the cellular and organismal level.

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Source
http://dx.doi.org/10.4155/fmc.12.79DOI Listing

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