Effects of sildenafil on nanostructural and nanomechanical changes in mitochondria in an ischaemia-reperfusion rat model

Summary Sildenafil exerts cardioprotective effects by activating the opening of mitochondrial ATP‐sensitive potassium channels to attenuate ischaemia–reperfusion (IR) injury. In the present study, we used atomic force microscopy (AFM) to investigate changes in mitochondrial morphology and properties...

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Veröffentlicht in:Clinical and experimental pharmacology & physiology 2014-10, Vol.41 (10), p.763-768
Hauptverfasser: Lee, Kyung Hye, Kwon, Sung Jin, Woo, Jong-Shin, Lee, Gi-Ja, Lee, So-Ra, Jang, Hyun-Hee, Kim, Hyun Soo, Kim, Jung Wook, Park, Hun Kuk, Cho, Kyu Seok, Kim, Weon
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Sprache:eng
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Zusammenfassung:Summary Sildenafil exerts cardioprotective effects by activating the opening of mitochondrial ATP‐sensitive potassium channels to attenuate ischaemia–reperfusion (IR) injury. In the present study, we used atomic force microscopy (AFM) to investigate changes in mitochondrial morphology and properties to assess sildenafil‐mediated cardioprotection in a rat myocardial infarction model. To investigate the cardioprotective effects of sildenafil, we used an in vivo Sprague‐Dawley rat model of IR. Rats were randomly divided into three groups: (i) sham‐operated rats (control; n = 5); (ii) IR‐injured rats treated with vehicle (normal saline; IR; n = 10); and (iii) IR‐injured rats treated with 0.75 mg/kg, i.p., sildenafil (IR + Sil; n = 10). Morphological and mechanical changes to mitochondria were analysed by AFM. Infarct areas were significantly reduced in sildenafil‐treated rats (7.8 ± 3.9% vs 20.4 ± 7.0% in the sildenafil‐treated and untreated IR groups, respectively; relative reduction 62%; P 
ISSN:0305-1870
1440-1681
DOI:10.1111/1440-1681.12290