Plasticity of TTX-sensitive sodium channels PN1 and Brain III in injured human nerves : NeuroReport

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Membrane And Cellular Biophysics And Biochemistry

Plasticity of TTX-sensitive sodium channels PN1 and Brain III in injured human nerves

Coward, K.; Aitken, A.1; Powell, A.1; Plumpton, C.2; Birch, R.4; Tate, S.1; Bountra, C.3; Anand, P.CA

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Abstract

Sensory neurones co-express voltage-gated sodium channels that mediate TTX-sensitive (TTX-S) and TTX-resistant (TTX-R) currents, which may contribute to chronic pain after nerve injury. We previously demonstrated that TTX-R channels were decreased acutely in human sensory cell bodies after central axotomy, but accumulated in nerve terminals after peripheral axotomy. We have now studied the TTX-S channels PN1 and Brain III, using specific antibodies for immunohistochemistry, in dorsal root ganglia (DRG) from 10 patients with traumatic central axotomy, nerves from 16 patients with peripheral axotomy, and controls. PN1 showed temporal changes similar to the TTX-R channels in sensory cell bodies of injured DRG. In contrast, Brain III was found only in injured nerves (not control nerves, or control/central axotomy DRG). PN1 and Brain III are distinct targets for novel analgesics.

© 2001 Lippincott Williams & Wilkins, Inc.

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