Sensitization of neonatal rat lumbar motoneuron by the inflammatory pain mediator bradykinin.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 25781633.
- Also identified by DOI 10.7554/eLife.06195 and PMC identifier 4410746.
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Abstract
Bradykinin (Bk) is a potent inflammatory mediator that causes hyperalgesia. The action of Bk on the sensory system is well documented but its effects on motoneurons, the final pathway of the motor system, are unknown. By a combination of patch-clamp recordings and two-photon calcium imaging, we found that Bk strongly sensitizes spinal motoneurons. Sensitization was characterized by an increased ability to generate self-sustained spiking in response to excitatory inputs. Our pharmacological study described a dual ionic mechanism to sensitize motoneurons, including inhibition of a barium-sensitive resting K(+) conductance and activation of a nonselective cationic conductance primarily mediated by Na(+). Examination of the upstream signaling pathways provided evidence for postsynaptic activation of B2 receptors, G protein activation of phospholipase C, InsP3 synthesis, and calmodulin activation. This study questions the influence of motoneurons in the assessment of hyperalgesia since the withdrawal motor reflex is commonly used as a surrogate pain model.
Medical subject headings
- Bradykinin
- Ganglia, Spinal
- Hyperalgesia
- Motor Neurons
- Pain