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October 19, 2011Cardiovascular Research37 citationsOpen Access

Oxygen cycling in conjunction with stem cell transplantation induces NOS3 expression leading to attenuation of fibrosis and improved cardiac function

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MKMahmood KhanSMSarath MeduruRGRajan Gogna

Key Result

In a rat model of myocardial infarction, combining mesenchymal stem cell transplantation with hyperbaric oxygen cycling significantly improved cardiac function and stem cell engraftment.

Structured PICO

Does hyperbaric oxygen combined with mesenchymal stem cell transplantation improve cardiac function and cell engraftment in a rat model of myocardial infarction?

P
Population
Rat model of myocardial infarction evaluating the effect of hyperbaric oxygen therapy combined with mesenchymal stem cell transplantation over 4 weeks.
I
Intervention
Mesenchymal stem cells (MSCs) transplanted in the MI region combined with hyperbaric oxygen (100% O2, 2 atmospheres absolute) for 90 min, 5 days/week for 4 weeks
C
Comparator
MI alone (control), MI + hyperbaric oxygen alone, and MI + MSCs alone
O
Outcome
Cardiac function recovery (measured by echocardiography), stem cell engraftment, vascular density, and NOS3 expressionsurrogate

Supplemental hyperbaric oxygenation improves mesenchymal stem cell engraftment and cardiac functional recovery in a rat model of myocardial infarction, potentially via increased NOS3 expression.

Abstract

AIMS: Myocardial infarction (MI) is associated with irreversible loss of viable cardiomyocytes. Cell therapy is a potential option to replace the lost cardiomyocytes and restore cardiac function. However, cell therapy is faced with a number of challenges, including survival of the transplanted cells in the infarct region, which is characterized by abundant levels of oxidants and lack of a pro-survival support mechanism. The goal of the present study was to evaluate the effect of supplemental oxygenation on cell engraftment and functional recovery in a rat model. METHODS AND RESULTS: MI was induced in rats by a 60-min occlusion of the coronary artery, followed by restoration of flow. Mesenchymal stem cells (MSCs), isolated from adult rat bone marrow, were transplanted in the MI region. Rats with transplanted MSCs were exposed to hyperbaric oxygen (HBO: 100% O(2), 2 atmospheres absolute) for 90 min, 5 days/week for 4 weeks. The experimental groups were: MI (control), Ox (MI + HBO), MSC (MI + MSC), and MSC + Ox (MI + MSC + HBO). HBO exposure (oxygenation) was started 3 days after induction of MI. MSCs were transplanted 1 week after induction of MI. Echocardiography showed a significant recovery of cardiac function in the MSC + Ox group, when compared with the MI or MSC group. Oxygenation increased the engraftment of MSCs and vascular density in the infarct region. Molecular analysis of infarct tissue showed a four-fold increase in NOS3 expression in the MSC + Ox group compared with the MI group. CONCLUSIONS: The results showed that post-MI exposure of rats to daily cycles of hyperoxygenation (oxygen cycling) improved stem cell engraftment, cardiac function, and increased NOS3 expression.

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Cite This Study

Khan et al. (2011) studied Myocardial infarction. Mesenchymal stem cells (MSCs) + hyperbaric oxygen (HBO) vs. MI (control), MI + HBO, MI + MSC was evaluated on Cardiac function and stem cell engraftment. In a rat model of myocardial infarction, combining mesenchymal stem cell transplantation with hyperbaric oxygen cycling significantly improved cardiac function and stem cell engraftment.

synapsesocial.com/papers/6a2016f535281a23f90de8b1https://doi.org/10.1093/cvr/cvr277
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