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Updated: Jun 8, 2026

Improved Rodent Model of Myocardial Ischemia and Reperfusion Injury
Published on: March 7, 2022
Testosterone-down-regulated Akt pathway during cardiac ischemia/reperfusion: a mechanism involving BAD, Bcl-2 and
Chunyan Huang1, Hongmei Gu, Wenjun Zhang
1Department of Surgery, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.
Insights
Testosterone negatively impacts the Akt pathway in male hearts after ischemia/reperfusion (I/R), increasing cardiac injury. Castration or androgen blockers protect male hearts by up-regulating Akt signaling and reducing myocardial damage.
Area of Science:
- Cardiovascular Biology
- Endocrinology
- Molecular Cardiology
Background:
- Myocardial Akt activity is lower in males, correlating with higher heart failure incidence.
- Estrogen protects female hearts via Akt activation, but testosterone's role in male hearts post-ischemia/reperfusion (I/R) is unknown.
Purpose of the Study:
- To investigate testosterone's effect on the myocardial Akt pathway following I/R in male hearts.
- To determine if testosterone mediates downstream Akt signals and influences cardiac injury.
Main Methods:
- Male, female, and castrated rats were subjected to I/R.
- Pharmacological interventions included flutamide (androgen receptor blocker) and testosterone administration (DHT or ATI).
- Myocardial Akt activation, apoptosis markers (Bad, Bcl-2, FOXO3a), and MnSOD expression were analyzed.
Main Results:
- Castration or flutamide increased Akt activation and reduced myocardial injury in male hearts post-I/R.
- Acute testosterone infusion reversed protective Akt signaling changes and worsened cardiac dysfunction.
- Testosterone down-regulated myocardial MnSOD expression, while castration restored it.
Conclusions:
- Testosterone down-regulates the Akt pathway in male hearts post-I/R, contributing to cardiac injury.
- This involves decreased p-Bad, altered Bcl-2/Bax ratio, and increased nuclear FOXO3a.
- Findings highlight sex-specific hormonal regulation of cardiac response to I/R.
Background:
Lower levels of myocardial Akt activity in males are associated with a higher incidence of heart failure and worsened cardiac function after ischemia/reperfusion (I/R). While Akt activation by estrogen provides cardioprotection in females, no information exists regarding the effect of testosterone on the myocardial Akt pathway following I/R. We hypothesized that following I/R: (1) endogenous testosterone will decrease myocardial Akt activation in male hearts; (2) endogenous testosterone will mediate downstream signals of Akt, including Bad, Bcl-2, and FOXO3a; (3) administration of exogenous testosterone will recapitulate negative effects on the Akt pathway in castrated male hearts.
Methods And Results:
Rat hearts from age-matched adult males, females, castrated males, males with androgen receptor blocker-flutamide, castrated males with chronic 5α-dihydrotestosterone (DHT) implantation, or acute testosterone infusion (ATI) (n = 9/group) were subjected to I/R (Langendorff). Castration or flutamide treatment significantly up-regulated myocardial Akt activation, increased downstream apoptosis-regulatory molecules p-Bad, Bcl-2, p-FOXO3a, but reduced Fas-L, consistent with decreased myocardial injury in male hearts following I/R. ATI administration, but not chronic DHT, reversed these effects on Akt signaling associated with further exacerbated cardiac dysfunction in castrated males. Notably, lower levels of MnSOD were observed in male hearts, and castration or flutamide treatment restored myocardial MnSOD expression to the levels of females in male hearts after I/R.
Conclusion:
Our study represents the initial evidence of testosterone-induced down-regulation of the Akt pathway in male hearts following I/R, thereby mediating cardiac injury through decreased p-Bad, reduced ratio of Bcl-2/Bax in the cytoplasm, and increased FOXO3a in the nucleus.
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