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Updated: Jun 13, 2025

A Rat Model of Pressure Overload Induced Moderate Remodeling and Systolic Dysfunction as Opposed to Overt Systolic Heart Failure
Published on: April 30, 2020
Protein kinase C epsilon contributes to chronic mechanoreflex sensitization in rats with heart failure
Alec L E Butenas1, Shannon K Parr1, Joseph S Flax1
1Department of Kinesiology, Kansas State University, Manhattan, KS, USA.
Abstract:
We investigated second-messenger signalling components linked to the stimulation of Gq protein-coupled receptors (e.g. thromboxane A2 and bradykinin B2 receptors) on the sensory endings of thin fibre muscle afferents in the chronic mechanoreflex sensitization in rats with myocardial infarction-induced heart failure with reduced ejection fraction (HF-rEF). We hypothesized that injection of either the inositol 1,4,5-trisphosphate (IP3) receptor antagonist xestospongin C (5 µg) or the PKCε translocation inhibitor PKCe141 (45 µg) into the arterial supply of the hindlimb would reduce the increase in renal sympathetic nerve activity (RSNA) and mean arterial pressure (MAP) evoked during 30 s of 1 Hz dynamic hindlimb muscle stretch in decerebrate, unanaesthetized HF-rEF rats but not sham-operated controls (SHAM). Ejection fraction was significantly reduced in HF-rEF (45 (19)%) compared to SHAM (80 (9)%; P < 0.001) rats. In HF-rEF rats (n = 3M/2F), IP3 receptor blockade had no effect on the peak ΔRSNA (pre: 99 (74)%; post: 133 (79)%; P = 0.974) or peak ΔMAP response to stretch (peak ΔMAP: pre: 32 (14) mmHg; post: 36 (21) mmHg; P = 0.719). Conversely, in another group of HF-rEF rats (n = 4M/3F), the PKCε translocation inhibitor reduced the peak ΔRSNA (pre: 110 (77)%; post: 62 (58)%; P = 0.029) and peak ΔMAP response to stretch (pre: 30 (20) mmHg; post: 17 (16) mmHg; P = 0.048). In SHAM counterparts, neither drug affected the mechanoreflex responses. Our findings highlight PKCε, but not IP3 receptors, as a significant second-messenger in the chronic mechanoreflex sensitization in HF-rEF which may play a crucial role in the exaggerated sympathetic response to exercise in this patient population. KEY POINTS: Skeletal muscle contraction results in an exaggerated reflex increase in sympathetic nerve activity in heart failure patients with reduced ejection fraction (HF-rEF) compared to healthy individuals, contributing to increased cardiovascular risk and impaired tolerance for mild exercise. The exaggerated reflex sympathetic responses in HF-rEF may be attributed to a chronic sensitization of mechanically sensitive thin fibre muscle afferents mediated, at least in part, by stimulation of Gq protein-coupled thromboxane A2 and bradykinin B2 receptors on muscle afferent sensory endings. The specific Gq protein-linked signalling mechanisms that produce the chronic mechanoreflex sensitization in HF-rEF have not been investigated but may involve inositol 1,4,5-trisphosphate (IP3) receptors and/or protein kinase C epsilon (PKCε). Here we demonstrate that PKCε, but not IP3 receptors, within the sensory endings of thin fibre muscle afferents plays a role in the sensitization of mechanically sensitive thin fibre muscle afferents in rats with HF-rEF.
Insights
Protein kinase C epsilon (PKCε) signaling, not inositol trisphosphate (IP3) receptors, contributes to exaggerated sympathetic nerve activity in rats with heart failure with reduced ejection fraction (HF-rEF). This finding is crucial for understanding cardiovascular risk in HF-rEF patients.
Area of Science:
- Cardiovascular Physiology
- Neuroscience
- Cell Signaling
Background:
- Heart failure with reduced ejection fraction (HF-rEF) is associated with exaggerated sympathetic nerve activity during exercise.
- This sympathetic overactivity may stem from chronic sensitization of muscle afferents, potentially involving Gq protein-coupled receptors.
- The specific intracellular signaling pathways mediating this sensitization in HF-rEF remain unclear, with inositol 1,4,5-trisphosphate (IP3) receptors and protein kinase C epsilon (PKCε) being potential candidates.
Purpose of the Study:
- To investigate the roles of IP3 receptors and PKCε in the chronic mechanoreflex sensitization of muscle afferents in rats with HF-rEF.
- To determine if blocking these signaling components reduces the exaggerated renal sympathetic nerve activity (RSNA) and mean arterial pressure (MAP) responses to muscle stretch in HF-rEF.
Main Methods:
- Utilized decerebrate, unanesthetized rats with surgically induced HF-rEF and sham-operated controls.
- Administered IP3 receptor antagonist xestospongin C or PKCε translocation inhibitor PKCe141 into the hindlimb arterial supply.
- Measured RSNA and MAP responses to dynamic hindlimb muscle stretch before and after drug administration.
Main Results:
- In HF-rEF rats, IP3 receptor blockade did not alter the increase in RSNA or MAP during muscle stretch.
- Conversely, PKCε inhibition significantly reduced the exaggerated RSNA and MAP responses to muscle stretch in HF-rEF rats.
- Neither drug affected mechanoreflex responses in sham-operated control rats.
Conclusions:
- PKCε, but not IP3 receptors, is a significant second messenger involved in the chronic mechanoreflex sensitization in HF-rEF.
- These findings identify PKCε as a key player in the exaggerated sympathetic response to exercise in HF-rEF.
- Targeting PKCε signaling may offer a therapeutic strategy to mitigate cardiovascular risks associated with HF-rEF.
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