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Transsynaptic Tracing from Peripheral Targets with Pseudorabies Virus Followed by Cholera Toxin and Biotinylated Dextran Amines Double Labeling
Published on: September 14, 2015
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.
Abstract:
The retrograde transsynaptic tracer pseudorabies virus (PRV) has been widely used as a marker for synaptic connectivity in the spinal cord. Notably, the PRV-152 construct expresses enhanced green fluorescent protein (EGFP). We recently reported a significant attenuation of PRV-152 labeling of the intermediolateral cell column (IML) and celiac ganglia after complete T4 spinal cord transection versus sham injury in rats at 96 h after PRV-152 inoculation of the left kidney. Here we found a significant increase in noxious colorectal distention (CRD)-evoked c-Fos expression in spinal cords of injured versus sham rats without PRV infection. In order to assess whether enhancing neuronal activity in spinalized rats might increase PRV-152 labeling, we subjected awake spinalized rats to 1.5 h of intermittent noxious CRD either: (1) just prior to inoculation, or (2) 96 h after inoculation (n = 3/group). Equal numbers of spinalized rats in both groups received PRV-152 inoculations without CRD (non-stimulated; n = 3/group). At 96 h post-inoculation fixed spinal cords and left celiac ganglionic tissues were assessed for the distribution and quantification of EGFP-labeled cells. The injured cohort that received CRD just prior to PRV injection showed a significant reduction in EGFP-labeled cells in both the IML and left celiac ganglion compared to non-stimulated injured rats. In contrast, the injured cohort that received CRD 96 h after PRV-152 inoculation showed no differences in EGFP-labeled cell numbers in the IML or celiac ganglia versus non-stimulated injured rats. Interestingly, microglia near c-Fos-positive cells after acute CRD appeared more reactive compared to non-stimulated spinalized rats, and activated microglial cells markedly reduce viral transduction and progression following PRV inoculation of the CNS. Hence our results imply that increased CRD-induced c-Fos expression in the injured paradigm, prior to but not after PRV injection, further attenuates PRV-152 uptake, perhaps through changes in neuronal activity and/or innate neuro-immune responses.
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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