Journal of the Neurological Sciences
Volume 194, Issue 1 , Pages 21-28, 15 February 2002

GCPII (NAALADase) inhibition prevents long-term diabetic neuropathy in type 1 diabetic BB/Wor rats

  • W Zhang

      Affiliations

    • Department of Pathology, Wayne State University, 540 E. Canfield Ave., Detroit, MI 48201, USA
    • Morris Hood Jr. Comprehensive Diabetes Center, Wayne State University, Detroit, MI, USA
  • ,
  • B Slusher

      Affiliations

    • Guilford Pharmaceutical Inc., Baltimore, MD, USA
  • ,
  • Y Murakawa

      Affiliations

    • Department of Pathology, Wayne State University, 540 E. Canfield Ave., Detroit, MI 48201, USA
    • Morris Hood Jr. Comprehensive Diabetes Center, Wayne State University, Detroit, MI, USA
  • ,
  • K.M Wozniak

      Affiliations

    • Guilford Pharmaceutical Inc., Baltimore, MD, USA
  • ,
  • T Tsukamoto

      Affiliations

    • Guilford Pharmaceutical Inc., Baltimore, MD, USA
  • ,
  • P.F Jackson

      Affiliations

    • Guilford Pharmaceutical Inc., Baltimore, MD, USA
  • ,
  • A.A.F Sima

      Affiliations

    • Corresponding Author InformationCorresponding author. Department of Pathology, Wayne State University, 540 E. Canfield Ave., Detroit, MI 48201, USA. Tel.: +1-313-577-1150; fax: +1-313-577-0057
    • Department of Pathology, Wayne State University, 540 E. Canfield Ave., Detroit, MI 48201, USA
    • Department of Neurology, Wayne State University, Detroit, MI, USA
    • Morris Hood Jr. Comprehensive Diabetes Center, Wayne State University, Detroit, MI, USA

Received 8 June 2001; received in revised form 25 September 2001; accepted 5 November 2001.

Abstract 

Aims/Hypothesis: Hyperglutamatergic activity induced by ischemia is believed to underlie neuronal damage in a variety of neurological disorders, including neuropathic pain. Since ischemia is believed to be a prominent mechanism involved in diabetic polyneuropathy (DPN), we investigated the effect of the glutamate carboxypeptidase II (GCPII, EC #3.4–17.21; previously termed NAALADase), an enzyme responsible for the hydrolysis of the neuropeptide NAAG to NAA and glutamate, on the development of DPN in type 1 diabetic BB/Wor rats. Methods: Diabetic animals were treated with 10 mg/kg/day i.p. of the selective GCPII inhibitor GPI-5232 from onset of diabetes for 6 months. Hyperalgesia to thermal stimulation and nerve conduction velocity (NCV) were measured monthly. The effect on structural DPN was assessed by scoring of single, teased myelinated fibers, myelinated fiber morphometry and ultrastructural examination of C-fibers at 6 months. Results: GCPII inhibition showed significant but partial effects on hyperalgesia (p<0.001), nerve conduction slowing (p<0.01) axonal and nodal structural changes (p<0.001), small myelinated fiber atrophy, and degenerative changes of C-fibers. Conclusions: GCPII inhibition has beneficial effects on hyperalgesia, nerve function, and structural degenerative changes in DPN, which are likely mediated by inhibition of ischemia-induced glutamate release.

Keywords:  Neuropathy, GCPII inhibition, Glutamate, NAAG, Nerve conduction, Hyperalgesia, Pathology

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PII: S0022-510X(01)00670-0

Journal of the Neurological Sciences
Volume 194, Issue 1 , Pages 21-28, 15 February 2002