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May 5, 2012AJP Heart and Circulatory Physiology139 citationsOpen Access

Cardiac mTOR protects the heart against ischemia-reperfusion injury

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TAToshinori AoyagiYKYoichiro KusakariCXChun-Yang Xiao

Structured PICO

Does cardiac-specific overexpression of mTOR protect against ischemia-reperfusion injury and subsequent heart failure in mice?

P
Population
Transgenic mice with cardiac-specific overexpression of mTOR (mTOR-Tg mice) and wild-type (WT) littermate control mice subjected to in vivo ischemia-reperfusion (I/R) injury via transient coronary artery ligation and ex vivo I/R injury in Langendorff-perfused hearts with transient global ischemia.
I
Intervention
Cardiac-specific overexpression of mTOR
C
Comparator
Wild-type (WT) littermate control mice
O
Outcome
Mortality, global cardiac function, and interstitial fibrosis at 28 days after in vivo I/R injury; functional recovery, necrosis, and proinflammatory cytokine expression after ex vivo I/R injurysurrogate

Cardiac mTOR overexpression provides substantial cardioprotection against ischemia-reperfusion injury and suppresses the inflammatory response in a murine model.

Abstract

Cardiac mammalian target of rapamycin (mTOR) is necessary and sufficient to prevent cardiac dysfunction in pathological hypertrophy. However, the role of cardiac mTOR in heart failure after ischemic injury remains undefined. To address this question, we used transgenic (Tg) mice with cardiac-specific overexpression of mTOR (mTOR-Tg mice) to study ischemia-reperfusion (I/R) injury in two animal models: 1) in vivo I/R injury with transient coronary artery ligation and 2) ex vivo I/R injury in Langendorff-perfused hearts with transient global ischemia. At 28 days after I/R, mortality was lower in mTOR-Tg mice than littermate control mice wild-type (WT) mice. Echocardiography and MRI demonstrated that global cardiac function in mTOR-Tg mice was preserved, whereas WT mice exhibited significant cardiac dysfunction. Masson's trichrome staining showed that 28 days after I/R, the area of interstitial fibrosis was smaller in mTOR-Tg mice compared with WT mice, suggesting that adverse left ventricular remodeling is inhibited in mTOR-Tg mice. In the ex vivo I/R model, mTOR-Tg hearts demonstrated improved functional recovery compared with WT hearts. Perfusion with Evans blue after ex vivo I/R yielded less staining in mTOR-Tg hearts than WT hearts, indicating that mTOR overexpression inhibited necrosis during I/R injury. Expression of proinflammatory cytokines, including IL-6 and TNF-α, in mTOR-Tg hearts was lower than in WT hearts. Consistent with this, IL-6 in the effluent post-I/R injury was lower in mTOR-Tg hearts than in WT hearts. These findings suggest that cardiac mTOR overexpression in the heart is sufficient to provide substantial cardioprotection against I/R injury and suppress the inflammatory response.

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Cite This Study

Aoyagi et al. (2012) studied this question.

synapsesocial.com/papers/6a016fc560baf37e2cd8a8b3https://doi.org/10.1152/ajpheart.00241.2012
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