Volume 53, Issue 3 pp. 849-855
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Antiproliferative Action of Benzodiazepines in Cultured Brain Cells Is Not Mediated Through the Peripheral-Type Benzodiazepine Acceptor

Adrienne M. C. Gorman

Adrienne M. C. Gorman

Department of Biochemistry, Trinity College

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Gerard B. O'Beirne

Gerard B. O'Beirne

Department of Biochemistry, Trinity College

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Ciaran M. Regan

Ciaran M. Regan

Department of Pharmacology, University College, Dublin, Ireland

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D. Clive Williams

Corresponding Author

D. Clive Williams

Department of Biochemistry, Trinity College

Address correspondence and reprint requests to Dr. D. C, Williams at Department of Biochemistry, Trinity College, Dublin 2, Ireland.Search for more papers by this author
First published: September 1989
Citations: 38

Abstract

The benzodiazepines, Ro 5–4864, diazepam, clonazepam, and also PK-11195, inhibited, at micromolar concentrations, the proliferation of rat C6 glioma and mouse neuro-2A neuroblastoma cells in culture. The cells possessed high levels of “peripheral-type” high-affinity benzodiazepine binding sites as judged by binding assays and displacement potencies. However, the different potencies and specificities of compounds for the antiproliferative actions and binding affinities for the binding site suggest that the antiproliferative actions were not mediated through the peripheral-type binding site. In support of this, these compounds have also been shown to inhibit proliferation of some nonneuronal cultured cell lines, e.g., mouse SP2/0-Agl4 hybridoma and rat NCTC epithelial cells, which have no detectable high-affinity peripheral-type benzodiazepine binding sites.

Abbreviations used:

  • DMEM
  • Dulbecco's modified Eagle's medium
  • DPBS
  • Dulbecco's phosphate-buffered saline
  • PCS
  • foetal calf serum
  • NBTI
  • nitrobenzylthioinosine
  • SDS
  • sodium dodecyl sulphate
  • SP2
  • SP2/O-Agl4
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