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June 26, 2019AJP Regulatory Integrative and Comparative Physiology9 citationsOpen Access

Cyclooxygenase inhibition does not impact the pressor response during static or dynamic mechanoreflex activation in healthy decerebrate rats

KRKorynne S. RollinsTHTyler D. HopkinsABAlec L. E. Butenas

Structured PICO

Does intra-arterial indomethacin reduce the pressor and cardioaccelerator responses during static or dynamic mechanoreflex activation in healthy decerebrate rats?

P
Population
Healthy decerebrate rats (n=10 for PGE2 measurement, n=9 for indomethacin experiment)
I
Intervention
Intra-arterial administration of the COX inhibitor indomethacin (1 mg/kg)
O
Outcome
Pressor and cardioaccelerator responses evoked during 30 s of static and dynamic rat triceps surae muscle stretchsurrogate

COX metabolites do not activate or sensitize thin-fiber muscle afferents stimulated during short-duration static or dynamic hindlimb skeletal muscle stretch in healthy rats.

Abstract

Passive limb movement and limb muscle stretch in humans and animals are common experimental strategies used to investigate activation of the muscle mechanoreflex independent of contraction-induced metabolite production. Cyclooxygenase (COX) metabolites, however, are produced by skeletal muscle stretch in vitro and have been found to impact various models of mechanoreflex activation. Whether COX metabolites influence the decerebrate rat triceps surae muscle stretch mechanoreflex model remains unknown. We examined the effect of rat triceps surae muscle stretch on the interstitial concentration of the COX metabolite prostaglandin E 2 (PGE 2 ). Interstitial PGE 2 concentration was increased above baseline values by 4 min of both static (38% increase, P = 0.01) and dynamic (56% increase, P 0.05, n = 9) on the pressor or cardioaccelerator response during 30 s of either static or dynamic stretch. We conclude that, despite the possibility of increased COX metabolite concentration, COX metabolites do not activate or sensitize thin-fiber muscle afferents stimulated during 30 s of static or dynamic hindlimb skeletal muscle stretch in healthy rats.

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Cite This Study

Rollins et al. (2019) studied this question.

synapsesocial.com/papers/6a8356fb471aed062f933d0chttps://doi.org/10.1152/ajpregu.00080.2019
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Also Consider

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

  1. 1GsMTx4 reduces the reflex pressor response during dynamic hindlimb skeletal muscle stretch in decerebrate rats2019 · 17 citations
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  4. 4Heart rate at the onset of muscle contraction and during passive muscle stretch in humans: a role for mechanoreceptors2002 · 213 citations
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