Noxious colorectal distention in spinalized rats reduces pseudorabies virus labeling of sympathetic neurons

Hanad Duale1, Travis S Lyttle, Bret N Smith

  • 1Spinal Cord and Brain Injury Research Center, University of Kentucky, Lexington, Kentucky 40536-0509, USA.

Insights

Noxious colorectal distention (CRD) prior to pseudorabies virus (PRV) injection further reduced PRV-152 labeling in spinal cord injuries. This suggests neuro-immune responses may impact viral uptake in injured rats.

Area of Science:

  • Neuroscience
  • Virology
  • Immunology

Background:

  • Retrograde transsynaptic viral tracers like pseudorabies virus (PRV) are crucial for mapping spinal cord connectivity.
  • PRV-152, expressing enhanced green fluorescent protein (EGFP), has shown reduced labeling in the intermediolateral cell column (IML) and celiac ganglia after spinal cord transection.
  • Noxious colorectal distention (CRD) increases c-Fos expression in spinal cords of injured rats, indicating heightened neuronal activity.

Purpose of the Study:

  • To investigate if enhancing neuronal activity via CRD influences PRV-152 labeling in spinalized rats.
  • To determine the effect of CRD timing (pre- vs. post-PRV inoculation) on PRV-152 uptake in injured rats.

Main Methods:

  • Spinalized rats received PRV-152 inoculation in the left kidney.
  • One group experienced noxious colorectal distention (CRD) immediately before PRV-152 inoculation; another group received CRD 96 hours post-inoculation.
  • Control groups included non-stimulated injured rats and sham-injured rats.
  • EGFP-labeled cells in the spinal cord (IML) and left celiac ganglion were quantified 96 hours post-inoculation.

Main Results:

  • CRD administered just prior to PRV-152 inoculation significantly reduced EGFP-labeled cells in the IML and celiac ganglia compared to non-stimulated injured rats.
  • CRD administered 96 hours after PRV-152 inoculation did not alter EGFP-labeled cell counts.
  • Microglia near c-Fos-positive cells showed increased reactivity after acute CRD, suggesting a role for neuro-immune responses.

Conclusions:

  • Increased CRD-induced neuronal activity prior to PRV-152 injection further attenuates viral uptake in spinal cord-injured rats.
  • Neuro-immune responses, potentially involving activated microglia, may significantly reduce viral transduction and progression following PRV inoculation in the CNS.
  • The timing of noxious stimulation relative to viral inoculation is critical for PRV-152 labeling efficiency in injured spinal cord models.

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