Spinal NKCC1 Blockade Inhibits TRPV1-Dependent Referred Allodynia
Open Access
- 1 January 2007
- journal article
- Published by SAGE Publications in Molecular Pain
- Vol. 3, 17
- https://doi.org/10.1186/1744-8069-3-17
Abstract
Background: The Na+, K+, 2Cl− type I cotransporter (NKCC1) and TRPV1 receptors, at the level of the dorsal horn, have been implicated in mediating allodynia in response to an inflammatory insult. The NKCC1 cotransporter regulates intracellular [Cl−] and thus the magnitude and polarity of GABAA receptor responses in neurons. TRPV1 receptors transduce diverse chemical and natural stimuli in nociceptors and are critical for inflammatory hyperalgesia. Results: Here we have tested the role of spinal NKCC1 cotransporters and TRPV1 receptors in referred allodynia in a model of visceral hyperalgesia in mice. Intrathecal (IT) injection of the NKCC1 inhibitor bumetanide (BUM, 1 nmol) inhibited referred, abdominal allodynia evoked by an intracolonic capsaicin injection. BUM was effective when injected IT either before or up to 4 hrs after the establishment of referred allodynia. The TRPV1 antagonist AMG 9810 (1 nmol) also inhibited referred allodynia in this model suggesting the involvement of an endogenous TRPV1 agonist in the dorsal horn in referred allodynia. In support of this suggestion, the endovanilloid TRPV1 agonist, narachidonoyl- dopamine (NADA, 1 or 10 nmol, IT) evoked stroking allodynia in the hindpaw that was blocked by co-treatment with AMG 9810 (1 nmol). The TRPV1-dependent stroking allodynia caused by NADA appeared to be functionally linked to NKCC1 because BUM (1 nmol) also inhibited NADA-evoked stroking allodynia. Conclusion: Our findings indicate that spinal NKCC1 and TRPV1 are critical for referred allodynia mediated by a painful visceral stimulus. Moreover, they suggest that endogenous TRPV1 agonists, released in the CNS in painful conditions, might stimulate TRPV1 receptors on primary afferents that, in turn, play a role in increasing NKCC1 activity leading to allodynia.Keywords
This publication has 40 references indexed in Scilit:
- Protein expression and mRNA cellular distribution of the NKCC1 cotransporter in the dorsal root and trigeminal ganglia of the ratBrain Research, 2006
- Sensory neuropathy and signs of central sensitization in patients with peripheral arterial diseasePain, 2006
- GABAA-Receptor Blockade Reverses the Injury-Induced Sensitization of Nociceptor-Specific (NS) Neurons in the Spinal Dorsal Horn of the RatJournal of Neurophysiology, 2006
- Role of the Na+-K+-2Cl−Cotransporter in the Development of Capsaicin-Induced Neurogenic InflammationJournal of Neurophysiology, 2006
- In vivo recruitment by painful stimuli of AMPA receptor subunits to the plasma membrane of spinal cord neuronsPain, 2004
- Trans-synaptic shift in anion gradient in spinal lamina I neurons as a mechanism of neuropathic painNature, 2003
- Activation of NKCC1 by hyperosmotic stress in human tracheal epithelial cells involves PKC-δ and ERKBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 2002
- The Cloned Capsaicin Receptor Integrates Multiple Pain-Producing StimuliNeuron, 1998
- GABAA receptor blockade inhibits Aβ fibre evoked wind-up in the arthritic ratNeuroReport, 1998
- Mechanisms of touch-evoked pain (allodynia): a new modelPain, 1996