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December 1, 1990Anesthesiology16 citationsOpen Access

The Inhibitory Action of Halothane on Reflex Constriction in Mesenteric Capacitance Veins

TSThomas A. StekielKOKeizaburo OzonoJMJ. Bruce McCallum

Structured PICO

Does halothane inhibit reflex constriction in mesenteric capacitance veins in a rabbit model?

P
Population
33 New Zealand white rabbits anesthetized with alpha-chloralose (27 for vein diameter and pressure measurements, 6 for sympathetic efferent nerve activity)
I
Intervention
Inhaled halothane (0.5% and 1%) and superfusate equilibrated with halothane (3% and 5%)
C
Comparator
Baseline responses to bilateral carotid occlusion and celiac ganglion stimulation without halothane
O
Outcome
Changes in mesenteric vein diameter, intravenous pressure, mean arterial pressure, and sympathetic efferent nerve activity in response to reflex stimulationsurrogate

Halothane inhibits reflex venoconstriction proximal to the postganglionic neuron, likely through central or ganglionic inhibition.

Abstract

Potent inhalational anesthetics depress autonomic reflex responses at multiple sites. Most studies emphasize cardiac chronotropic changes and changes in systemic blood pressure. Recently, active reflex venoconstriction of 500-1,000 microns O.D. mesenteric veins has been demonstrated. In the current study, the effects of halothane on the reflex responses of similar mesenteric veins were measured. Mesenteric vein diameter and intravenous pressure were measured in 500-1,000 microns O.D. veins from the mesentery of segments of terminal ileum externalized in situ from 27 New Zealand white rabbits anesthetized with alpha-chloralose. Mean arterial pressure was measured with femoral arterial cannulation, and heart rate was determined from the arterial pressure signal. In a separate group of six animals, sympathetic efferent nerve activity was measured from a postganglionic splanchnic nerve. Reflex venoconstriction and increases in mean arterial pressure and mesenteric vein pressure in response to bilateral carotid occlusion were attenuated by 0.5% and 1% inhaled halothane but not by superfusate equilibrated with 3% halothane. Decreases in mesenteric vein diameter and increases in mesenteric vein pressure in response to celiac ganglion stimulation were unaffected by both 0.5% inhaled halothane and superfusate equilibrated with 5% halothane. The bilateral carotid occlusion reflex-mediated increase in sympathetic efferent nerve activity was depressed by both 0.5% and 1% inhaled halothane. The effect of inhaled halothane on prestimulation baseline vein diameter was inconsistent. Superfusate equilibrated with 5% but not 3% halothane caused baseline venodilation. These results suggest a mechanism whereby control of venous tone is inhibited by halothane proximal to the postganglionic neuron. This could involve central or ganglionic inhibition.

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Cite This Study

Stekiel et al. (1990) studied this question.

synapsesocial.com/papers/6a741aca28dc7fd41c603a49https://doi.org/10.1097/00000542-199012000-00015
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Inhibitory Effect of Halothane on Mesenteric Venoconstriction and Related Reflex Responses during Acute Graded Hypoxia in Rabbits1992 · 12 citations
  2. 2Effect of Halothane and Isoflurane on In Situ Diameter Responses of Small Mesenteric Veins to Acute Graded Hypercapnia1996 · 1 citations
  3. 3Halothane and the Carotid Sinus Reflex: Evidence for Multiple Sites of Action1982 · 100 citations
  4. 4Attenuation of Endothelium-mediated Vasodilation by Halothane1988 · 128 citations
  5. 5Effects of Volatile Anesthetic Agents on In Situ Vascular Smooth Muscle Transmembrane Potential in Resistance- and Capacitance-regulating Blood Vessels1998 · 39 citations