PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 1, 2003European Journal of Clinical Investigation72 citations

Effects of adrenaline and potassium on QTc interval and QT dispersion in man

View Full Paper
SLS. LeeNHN. HarrisRRR. Robinson

Key Result

Adrenaline infusion increased QTc interval (to 423 ms; P<0.001) and QT dispersion (to 63 ms; P=0.001) even during potassium clamping, indicating a direct effect independent of hypokalemia.

Structured PICO

Does l-adrenaline infusion with potassium replacement prevent QTc interval and QT dispersion prolongation compared to l-adrenaline infusion without potassium replacement in healthy males?

P
Population
10 healthy males studied on two occasions to assess the effects of adrenaline with and without potassium clamping.
I
Intervention
l-adrenaline infusion with potassium replacement (infusion rates adjusted to maintain circulating K+ at baseline)
C
Comparator
l-adrenaline infusion without potassium replacement
O
Outcome
QTc interval and QT dispersion (QTd)surrogate

Adrenaline prolongs cardiac repolarization and increases QT dispersion through a direct myocardial effect, independent of its hypokalemic effects.

Main Result

Absolute Event Rate: 423% vs 433%

p-value: p=<0.001

Abstract

BACKGROUND: Hypoglycaemia alters cardiac repolarization acutely, with increases in rate-corrected QT (QTc) interval and QT dispersion (QTd) on the electrocardiogram (ECG); such changes are related to the counterregulatory sympatho-adrenal response. Adrenaline produces both QTc lengthening and a fall in plasma potassium (K+) when infused into healthy volunteers. Hypokalaemia prolongs cardiac repolarization independently however, and therefore our aim was to determine whether adrenaline-induced repolarization changes are mediated directly or through lowered plasma K+. MATERIALS AND METHODS: Ten healthy males were studied on two occasions. At both visits they received similar l-adrenaline infusions but on one occasion potassium was also administered; infusion rates were adjusted to maintain circulating K+ at baseline. The QTc interval, QTd, peripheral physiological responses and plasma adrenaline and potassium concentrations were measured during both visits. RESULTS: The QTc interval and QTd increased both with and without potassium clamping. Without K+ replacement, mean (SE) QTc lengthened from 378 (5) ms to a final maximum value of 433 (10) ms, and QTd increased from 36 (5) ms to 69 (8) ms (both P < 0.001). During K+ replacement, QTc duration at baseline and study end was 385 (7) ms and 423 (11) ms, respectively (P < 0.001), and QTd 38 was (4) ms and 63 (5) ms (P = 0.001). CONCLUSIONS: These data suggest that disturbed cardiac repolarization as a result of increases in circulating adrenaline occurs independently of extracellular potassium. A direct effect of adrenaline upon the myocardium appears the most likely mechanism.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Lee et al. (2003) studied Healthy volunteers (n=10). l-adrenaline infusion with potassium clamping vs. l-adrenaline infusion without potassium clamping was evaluated on QTc interval (p=<0.001). Adrenaline infusion increased QTc interval (to 423 ms; P<0.001) and QT dispersion (to 63 ms; P=0.001) even during potassium clamping, indicating a direct effect independent of hypokalemia.

synapsesocial.com/papers/6a6d31bf2163a0a01bc2c39ahttps://doi.org/10.1046/j.1365-2362.2003.01123.x
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1Effects of Low and High Concentrations of Potassium on the Simultaneously Recorded Purkinje and Ventricular Action Potentials of the Perfused Pig Moderator Band1968 · 84 citations
  2. 2The Measurement of the Q-T Interval of the Electrocardiogram1952 · 630 citations
  3. 3QT dispersion: an indication of arrhythmia risk in patients with long QT intervals.1990 · 1,198 citations
  4. 4Alpha 1-adrenergic agonists selectively suppress voltage-dependent K+ current in rat ventricular myocytes.1988 · 213 citations
  5. 5Mechanisms underlying early and delayed afterdepolarizations induced by catecholamines1990 · 325 citations