Extracellular caspase-6 drives murine inflammatory pain via microglial TNF-α secretion

Insights

Spinal cord microglia activation contributes to neuropathic pain. Caspase-6 (CASP6) released from nerve terminals activates microglia, promoting inflammatory pain through TNF-α and synaptic changes.

Area of Science:

  • Neuroscience
  • Pain Research
  • Molecular Biology

Background:

  • Neuropathic pain pathogenesis involves spinal cord microglia activation.
  • The role of intracellular protease caspase-6 (CASP6) in microglia-mediated pain signaling is not fully understood.
  • CASP6's function in synaptic transmission and pain modulation requires further investigation.

Purpose of the Study:

  • To investigate the role of CASP6 in microglia activation and inflammatory pain.
  • To elucidate the mechanisms by which CASP6 influences synaptic transmission in the spinal cord.
  • To determine the contribution of CASP6 to pain hypersensitivity.

Main Methods:

  • Utilized Casp6-null mice and pharmacological inhibitors/antibodies for CASP6.
  • Administered recombinant CASP6 (rCASP6) and CASP6 siRNA in vivo and in vitro.
  • Assessed inflammatory pain responses, TNF-α release in microglia, and excitatory postsynaptic currents (EPSCs) in spinal cord slices.

Main Results:

  • Casp6-null mice showed impaired inflammatory pain responses.
  • rCASP6 induced TNF-α release from microglia and pain hypersensitivity.
  • rCASP6 enhanced spinal cord synaptic transmission via TNF-α, a process partially dependent on microglia.

Conclusions:

  • CASP6 released from axonal terminals regulates microglial TNF-α secretion.
  • CASP6 contributes to inflammatory pain by modulating synaptic plasticity in the spinal cord.
  • Targeting CASP6 may offer a novel therapeutic strategy for inflammatory pain.