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Updated: Aug 9, 2026

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Published on: September 9, 2020
STAT-3 activation is necessary for ischemic preconditioning in hypertrophied myocardium
Karyn L Butler1, Lynn C Huffman, Sheryl E Koch
1Department of Surgery, University of Cincinnati, Cincinnati, OH, USA. karyn.butler@uc.edu
Insights
Ischemic preconditioning (IPC) protects normal hearts, but its role in hypertrophy was unclear. This study shows that phosphorylated STAT-3 (pSTAT-3) is crucial for effective IPC in hypertrophied hearts, highlighting a distinct JAK-STAT pathway activation pattern.
Area of Science:
- Cardiology
- Molecular Biology
- Physiology
Background:
- The JAK-STAT pathway is activated during ischemic preconditioning (IPC) in normal hearts.
- The role of this pathway and IPC efficacy in hypertrophied hearts are not well understood.
Purpose of the Study:
- To investigate the necessity of phosphorylated STAT-3 (pSTAT-3) for effective IPC in pressure-overload hypertrophy.
- To elucidate the distinct STAT activation patterns in hypertrophied versus normal myocardium during IPC.
Main Methods:
- Thoracic aortic constriction (TAC) induced pressure-overload hypertrophy in rats.
- Langendorff-perfused hearts underwent global ischemia and reperfusion with or without IPC and a JAK-2 inhibitor (AG-490).
- Echocardiography, functional assessments (+dP/dtmax, -dP/dtmin), and nuclear STAT activation (pSTAT-1, pSTAT-3) were evaluated.
Main Results:
- TAC rats exhibited significant left ventricular hypertrophy.
- IPC improved cardiac function in TAC hearts, an effect attenuated by AG-490.
- IPC increased pSTAT-1 and pSTAT-3 in sham hearts, but only pSTAT-3 in TAC hearts.
- AG-490 reduced pSTAT-3 levels and abrogated IPC's functional benefits in TAC hearts.
Conclusions:
- JAK-STAT signaling is vital for IPC in myocardial hypertrophy.
- STAT-3 activation is a key mediator of IPC's protective effects in hypertrophied hearts.
- Targeting STAT-3 may offer therapeutic strategies for protecting hypertrophied hearts against ischemia-reperfusion injury.
Abstract:
The JAK-STAT pathway is activated in the early and late phases of ischemic preconditioning (IPC) in normal myocardium. The role of this pathway and the efficacy of IPC in hypertrophied hearts remain largely unknown. We hypothesized that phosphorylated STAT-3 (pSTAT-3) is necessary for effective IPC in pressure-overload hypertrophy. Male Sprague-Dawley rats 8 wk after thoracic aortic constriction (TAC) or sham operation underwent echocardiography and Langendorff perfusion. Randomized hearts were subjected to 30 min of global ischemia and 120 min of reperfusion with or without IPC in the presence or absence of the JAK-2 inhibitor AG-490 (AG). Functional recovery and STAT activation were assessed. TAC rats had a 31% increase in left ventricular mass (1,347 +/- 58 vs. 1,028 +/- 43 mg, TAC vs. sham, P < 0.001), increased anterior and posterior wall thickness but no difference in ejection fraction compared with sham-operated rats. In TAC, IPC improved end-reperfusion maximum first derivative of developed pressure (+dP/dt(max); 4,648 +/- 309 vs. 2,737 +/- 343 mmHg/s, IPC vs. non-IPC, P < 0.05) and minimum -dP/dt (-dP/dt(min); -2,239 +/- 205 vs. -1,215 +/- 149 mmHg/s, IPC vs. non-IPC, P < 0.05). IPC increased nuclear pSTAT-1 and pSTAT-3 in sham-operated rats but only pSTAT-3 in TAC. AG in TAC significantly attenuated +dP/dt(max) (4,648 +/- 309 vs. 3,241 +/- 420 mmHg/s, IPC vs. IPC + AG, P < 0.05) and -dP/dt(min) (-2,239 +/- 205 vs. -1,323 +/- 85 mmHg/s, IPC vs. IPC + AG, P < 0.05) and decreased only nuclear pSTAT-3. In myocardial hypertrophy, JAK-STAT signaling is important in IPC and exhibits a pattern of STAT activation distinct from nonhypertrophied myocardium. Limiting STAT-3 activation attenuates the efficacy of IPC in hypertrophy.
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