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August 1, 1994AJP Heart and Circulatory Physiology99 citations

Role of diprotonated phosphate in evoking muscle reflex responses in cats and humans

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LSLawrence I. SinowayGeneral CardiologyMSMichael B. SmithThe Ohio State University Wexner Medical CenterBEB.D. EndersUniversity of Tennessee at Knoxville

Structured PICO

Does diprotonated phosphate (H2PO4-) evoke muscle reflex responses that raise sympathetic nerve activity and blood pressure?

P
Population
8 human subjects and 9 cats
I
Intervention
Ischemic handgrip protocol in humans; intra-arterial injection of H+, lactate, H2PO4-, and HPO4(2-) in cats
C
Comparator
Comparison between different injected substances (H2PO4-, HPO4(2-), H+, lactate) in cats
O
Outcome
Muscle sympathetic nerve activity (MSNA) in humans and mean arterial blood pressure (MAP) in catssurrogate

Diprotonated phosphate (H2PO4-) appears to be a key mediator in evoking muscle reflex responses that increase sympathetic nerve activity and blood pressure.

Abstract

Lactic acid and H+ evoke muscle reflexes that raise sympathetic nerve activity. Whether these substances are direct afferent stimulants or markers for the acidification of other substances is unknown. Diprotonated phosphate (H2PO4-), a possible mediator of fatigue, increases as the cell acidifies and phosphate is produced. Its role in evoking muscle reflexes is unknown. We used 31P-nuclear magnetic resonance to measure forearm muscle H+ and H2PO4- and microneurography to measure muscle sympathetic nerve activity (MSNA, peroneal nerve) during a handgrip protocol designed to dissociate H+ from H2PO4-. Ischemic handgrip (50% maximal voluntary contraction x 2 min) was followed by a 1-min rest period during which the muscle was freely perfused. This was followed by a second bout of ischemic handgrip and a 5-min recovery. In seven of eight subjects, MSNA correlated with H2PO4-, whereas it correlated with pH in only one subject. To determine whether muscle reflex responses are evoked by H+, lactic acid, monoprotonated phosphate (HPO4(2-), or H2PO4-, we injected H+, lactate, H2PO4- all 50 mM in 10 mM N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid (HEPES) buffered to pH 6, and HPO4(2-) (50 mM, pH 7.5 in 10 mM HEPES) into the arterial supply of the triceps surae of the cat (n = 9) as we measured mean arterial blood pressure (MAP). H2PO4- increased MAP more than HPO4(2-), H+, or lactate (27.1 +/- 3.7 vs. 5.0 +/- 1.3, 4.6 +/- 3.1, and 7.7 +/- 3.2 rise in mmHg).(ABSTRACT TRUNCATED AT 250 WORDS)

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Cite This Study

Sinoway et al. (1994) studied this question.

synapsesocial.com/papers/6a835731c32884adb2ae3a66https://doi.org/10.1152/ajpheart.1994.267.2.h770
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Also Consider

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

  1. 1Hypercapnic acidosis and increased H2PO4- concentration do not decrease force in cat skeletal muscle1991 · 75 citations
  2. 2Reflex cardiovascular and ventilatory responses to increasing H+ activity in cat hindlimb muscle1989 · 117 citations
  3. 3Contribution of pH, diprotonated phosphate and potassium for the reflex increase in blood pressure during handgrip1998 · 34 citations
  4. 4Sympathetic nerve discharge is coupled to muscle cell pH during exercise in humans.1988 · 342 citations
  5. 5Time‐dependent and indirect effect of inorganic phosphate on force production in rat gastrocnemius exercising muscle determined by <sup>31</sup>P‐MRS2001 · 24 citations