Literature DB >> 20219868

Targeted ablation of mesenteric projecting sympathetic neurons reduces the hemodynamic response to pain in conscious, spinal cord-transected rats.

Heidi L Lujan1, Gurunanthan Palani, Jean D Peduzzi, Stephen E DiCarlo.   

Abstract

Individuals with spinal cord injuries above thoracic level 6 (T(6)) experience episodic bouts of life-threatening hypertension as part of a condition termed autonomic dysreflexia. The paroxysmal hypertension can be caused by a painful stimulus below the level of the injury. Targeted ablation of mesenteric projecting sympathetic neurons may reduce the severity of autonomic dysreflexia by reducing sympathetic activity. Therefore, cholera toxin B subunit (CTB) conjugated to saporin (SAP; a ribosomal inactivating protein that binds to and inactivates ribosomes) was injected into the celiac ganglion to test the hypothesis that targeted ablation of mesenteric projecting sympathetic neurons reduces the pressor response to pain in conscious, spinal cord-transected rats. Nine Sprague-Dawley male rats underwent a spinal cord transection between thoracic vertebrae 4 and 5. Following recovery (5 wk), all rats were instrumented with a radio telemetry device for recording arterial pressure and bilateral catheters in the gluteus maximus muscles for the infusion of hypertonic saline (hNa(+)Cl(-)). Subsequently, the hemodynamic responses to intramuscular injection of hNa(+)Cl(-) (100 microl and 250 microl, in random order) were determined. Following the experiments in the no celiac ganglia injected condition (NGI), rats received injections of CTB-SAP (n = 5) or CTB (n = 3) into the celiac ganglia. CTB-SAP rats, compared with NGI and CTB rats, had reduced pressor responses to hNa(+)Cl(-). Furthermore, the number of stained neurons in the celiac ganglia and spinal cord (segments T(6)-T(12)), was reduced in CTB-SAP rats. Thus, CTB-SAP retrogradely transported from the celiac ganglia is effective at ablating mesenteric projecting sympathetic neurons and reducing the pressor response to pain in spinal cord-transected rats.

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Year:  2010        PMID: 20219868      PMCID: PMC2867526          DOI: 10.1152/ajpregu.00755.2009

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


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Review 1.  Rodent models of cerebral ischemia.

Authors:  M D Ginsberg; R Busto
Journal:  Stroke       Date:  1989-12       Impact factor: 7.914

Review 2.  Mechanism of autonomic dysreflexia. Contributions of catecholamine and peptide neurotransmitters.

Authors:  N E Naftchi
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3.  Cerebral ischemia in infant and adult gerbils. Relation to incomplete circle of Willis.

Authors:  S Levine; D Sohn
Journal:  Arch Pathol       Date:  1969-03

4.  Effects of ischemia and other procedures on the brain and retina of the gerbil (Meriones unguiculatus).

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Review 9.  Blood pressure, systolic and diastolic, and cardiovascular risks. US population data.

Authors:  J Stamler; R Stamler; J D Neaton
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10.  Complication rates of EUS-guided celiac plexus blockade and neurolysis: results of a large case series.

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