International audienceDiminished inhibitory neurotransmission in the superficial dorsal horn of the spinal cord is thought to contribute to chronic pain. In inflammatory pain, reductions in synaptic inhibition occur partially through prostaglandin E2- (PGE2-) and PKA-dependent phosphorylation of a specific subtype of glycine receptors (GlyRs) that contain α3 subunits. Here, we demonstrated that 2,6-di-tert-butylphenol (2,6-DTBP), a nonanesthetic propofol derivative, reverses inflammation-mediated disinhibition through a specific interaction with heteromeric αβGlyRs containing phosphorylated α3 subunits. We expressed mutant GlyRs in HEK293T cells, and electrophysiological analyses of these receptors showed that 2,6-DTBP interacted with a con...
Inflammation, peripheral nerve injury and chemical irritants can cause central sensitization in pain...
Postsynaptic glycine receptor (GlyR) chloride channels mediate inhibitory neurotransmission in the s...
Glycinergic synapses play a major role in shaping the activity of spinal cord neurons under normal c...
Diminished inhibitory neurotransmission in the superficial dorsal horn of the spinal cord is thought...
Prostaglandin E2 (PGE2) is a crucial, mediator of inflammatory pain sensitization. Here, we demonstr...
Abstract Background Glycine receptors (GlyRs) are involved in the development of spinal pain sensiti...
Alterations in synaptic transmission within the spinal cord dorsal horn play a key role in the devel...
Inflammatory pain sensitization is initiated by prostaglandin-induced phosphorylation of α3 glycine ...
GlyR α3 has previously been found to play a critical role in pain hypersensitivity following spinal ...
Glycinergic neurons and glycine receptors (GlyRs) exert a critical control over spinal nociception. ...
Glycine receptors (GlyRs) play an important role in inhibiting neurone activity in the spinal cord. ...
Diminished inhibitory control of spinal nociception is one of the major culprits of chronic pain sta...
Although glycine receptor Cl- channels (GlyRs) have long been known to mediate inhibitory neurotrans...
Among the myriad of cellular and molecular processes identified as contributing to pathological pain...
Inhibitory glycinergic transmission in adult spinal cord is primarily mediated by glycine receptors ...
Inflammation, peripheral nerve injury and chemical irritants can cause central sensitization in pain...
Postsynaptic glycine receptor (GlyR) chloride channels mediate inhibitory neurotransmission in the s...
Glycinergic synapses play a major role in shaping the activity of spinal cord neurons under normal c...
Diminished inhibitory neurotransmission in the superficial dorsal horn of the spinal cord is thought...
Prostaglandin E2 (PGE2) is a crucial, mediator of inflammatory pain sensitization. Here, we demonstr...
Abstract Background Glycine receptors (GlyRs) are involved in the development of spinal pain sensiti...
Alterations in synaptic transmission within the spinal cord dorsal horn play a key role in the devel...
Inflammatory pain sensitization is initiated by prostaglandin-induced phosphorylation of α3 glycine ...
GlyR α3 has previously been found to play a critical role in pain hypersensitivity following spinal ...
Glycinergic neurons and glycine receptors (GlyRs) exert a critical control over spinal nociception. ...
Glycine receptors (GlyRs) play an important role in inhibiting neurone activity in the spinal cord. ...
Diminished inhibitory control of spinal nociception is one of the major culprits of chronic pain sta...
Although glycine receptor Cl- channels (GlyRs) have long been known to mediate inhibitory neurotrans...
Among the myriad of cellular and molecular processes identified as contributing to pathological pain...
Inhibitory glycinergic transmission in adult spinal cord is primarily mediated by glycine receptors ...
Inflammation, peripheral nerve injury and chemical irritants can cause central sensitization in pain...
Postsynaptic glycine receptor (GlyR) chloride channels mediate inhibitory neurotransmission in the s...
Glycinergic synapses play a major role in shaping the activity of spinal cord neurons under normal c...