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Published in: Cardiovascular Toxicology 2/2016

01-04-2016

Protective Effect of Hydroxytyrosol Against Cardiac Remodeling After Isoproterenol-Induced Myocardial Infarction in Rat

Authors: Kais Mnafgui, Raouf Hajji, Fatma Derbali, Ines Khlif, Ftouma Kraiem, Hedi Ellefi, Abdelfattah Elfeki, Noureddine Allouche, Neji Gharsallah

Published in: Cardiovascular Toxicology | Issue 2/2016

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Abstract

The present study aimed to investigate the cardioprotective effect of hydroxytyrosol (HT) against isoproterenol-induced myocardial infarction in rats. Male rats were randomly divided into four groups, control, isoproterenol (Isop) and pretreated animals with HT in two different doses (2 and 5 mg/kg) orally for 7 days and intoxicated with isoproterenol (Isop + HT1) and (Isop + HT2) groups. Myocardial infarction in rats was induced subcutaneously by isoproterenol (100 mg/kg, s.c.) at an interval of 24 h on 6th and 7th day. On 8th day, electrocardiographic (ECG) pattern, gravimetric and biochemical parameters were assessed. Isoproterenol exhibited changes in ECG pattern, including significant ST-segment elevation and increase in the serum troponin-T level by 317 % as compared to control rats. Moreover, cardiac injury markers (creatine kinase-MB, lactate dehydrogenase, alanine aminotransferase) underwent a notable rise in serum of infarcted animals. Else, a disturbance in lipids profile and significant increase in lipase and angiotensin-converting enzyme (ACE) activities and heart weight ratio were observed in isoproterenol group. However, pre- and co-treatment with HT (2 and 5 mg/kg) improved the myocardium injury, restored the hemodynamic function and inhibited the ACE activity that prevent cardiac hypertrophy and remodeling. Overall, these findings demonstrated that HT exerted a potent cardioprotective effect against isoproterenol-induced myocardial infarction.
Literature
1.
go back to reference Aronow, W. S. (2006). Epidemiology, pathophysiology, prognosis, and treatment of systolic and diastolic heart failure. Cardiology in Review, 14, 108–124.CrossRefPubMed Aronow, W. S. (2006). Epidemiology, pathophysiology, prognosis, and treatment of systolic and diastolic heart failure. Cardiology in Review, 14, 108–124.CrossRefPubMed
2.
go back to reference White, M. Y., Edwards, A. G., Cordwell, S. J., & Van Eyk, J. E. (2008). Mitochondria: A mirror into cellular dysfunction in heart disease. Proteomics-Clinical Applications, 2, 845–861.CrossRefPubMed White, M. Y., Edwards, A. G., Cordwell, S. J., & Van Eyk, J. E. (2008). Mitochondria: A mirror into cellular dysfunction in heart disease. Proteomics-Clinical Applications, 2, 845–861.CrossRefPubMed
3.
go back to reference Upaganlawar, A., Gandhi, H., & Balaraman, R. (2011). Isoproterenol induced myocardial infarction: Protective role of natural products. Journal of Pharmacolgical Toxicology, 6, 1–17. Upaganlawar, A., Gandhi, H., & Balaraman, R. (2011). Isoproterenol induced myocardial infarction: Protective role of natural products. Journal of Pharmacolgical Toxicology, 6, 1–17.
4.
go back to reference Fito, M. De, La Torre, R., Farre-Albaladejo, M., Khymenetz, O., Marrugat, J., & Covas, M. (2007). Bioavailability and antioxidant effects of olive oil phenolic compounds in humans: A review. Annali dell’Istituto Superiore di Sanità, 43, 375.PubMed Fito, M. De, La Torre, R., Farre-Albaladejo, M., Khymenetz, O., Marrugat, J., & Covas, M. (2007). Bioavailability and antioxidant effects of olive oil phenolic compounds in humans: A review. Annali dell’Istituto Superiore di Sanità, 43, 375.PubMed
5.
go back to reference Hamden, K., Allouche, N., Damak, M., & Elfeki, A. (2009). Hypoglycemic and antioxidant effects of phenolic extracts and purified hydroxytyrosol from olive mill waste in vitro and in rats. Chemical Biological Interaction, 180, 421–432.CrossRef Hamden, K., Allouche, N., Damak, M., & Elfeki, A. (2009). Hypoglycemic and antioxidant effects of phenolic extracts and purified hydroxytyrosol from olive mill waste in vitro and in rats. Chemical Biological Interaction, 180, 421–432.CrossRef
6.
go back to reference Lee, O. H., & Lee, B. Y. (2010). Antioxidant and antimicrobial activities of individual and combined phenolics in Olea europaea leaf extract. Bioresource Technology, 101, 3751–3754.CrossRefPubMed Lee, O. H., & Lee, B. Y. (2010). Antioxidant and antimicrobial activities of individual and combined phenolics in Olea europaea leaf extract. Bioresource Technology, 101, 3751–3754.CrossRefPubMed
7.
go back to reference Queenthy, S. S., & John, B. (2013). Diosmin exhibits anti-hyperlipidemic effects in isoproterenol induced myocardial infracted rats. European Journal of Pharmacology, 718, 213–218.CrossRefPubMed Queenthy, S. S., & John, B. (2013). Diosmin exhibits anti-hyperlipidemic effects in isoproterenol induced myocardial infracted rats. European Journal of Pharmacology, 718, 213–218.CrossRefPubMed
8.
go back to reference Friedewal, W. T., Levy, R. I., & Fredrickson, D. S. (1972). Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. Clinical Chemistry, 18, 499–502. Friedewal, W. T., Levy, R. I., & Fredrickson, D. S. (1972). Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. Clinical Chemistry, 18, 499–502.
9.
go back to reference Allouche, N., Fki, I., & Sayadi, S. (2004). Toward a high yield recovery of antioxidants and purified hydroxytyrosol from olive mill wastewaters. Journal of Agriculture and Food Chemistry, 52, 267–273.CrossRef Allouche, N., Fki, I., & Sayadi, S. (2004). Toward a high yield recovery of antioxidants and purified hydroxytyrosol from olive mill wastewaters. Journal of Agriculture and Food Chemistry, 52, 267–273.CrossRef
10.
go back to reference Granados-Principal, S., Quiles, J. L., Ramirez-Tortosa, C. L., Sanchez-Rovira, P., & Ramirez-Tortosa, M. C. (2010). Hydroxytyrosol: From laboratory investigations to future clinical trials. Nutrition Reviews, 68, 191–206.CrossRefPubMed Granados-Principal, S., Quiles, J. L., Ramirez-Tortosa, C. L., Sanchez-Rovira, P., & Ramirez-Tortosa, M. C. (2010). Hydroxytyrosol: From laboratory investigations to future clinical trials. Nutrition Reviews, 68, 191–206.CrossRefPubMed
11.
go back to reference O’Dowd, Y., Driss, F., Dang, P. M., Elbim, C., Gougerot-Pocidalo, M. A., Pasquier, C., et al. (2004). Antioxidant effect of hydroxytyrosol, a polyphenol from olive oil: Scavenging of hydrogen peroxide but not superoxide anion produced by human neutrophils. Biochemical Pharmacology, 68, 2003–2008.CrossRefPubMed O’Dowd, Y., Driss, F., Dang, P. M., Elbim, C., Gougerot-Pocidalo, M. A., Pasquier, C., et al. (2004). Antioxidant effect of hydroxytyrosol, a polyphenol from olive oil: Scavenging of hydrogen peroxide but not superoxide anion produced by human neutrophils. Biochemical Pharmacology, 68, 2003–2008.CrossRefPubMed
12.
go back to reference González-Correa, J. A., Navas, M. D., Lopez-Villodres, J. A., Trujillo, M., Espartero, J. L., & De La Cruz, J. P. (2008). Neuroprotective effect of hydroxytyrosol and hydroxytyrosol acetate in rat brain slices subjected to hypoxia-reoxygenation. Neuroscience Letters, 446, 143–146.CrossRefPubMed González-Correa, J. A., Navas, M. D., Lopez-Villodres, J. A., Trujillo, M., Espartero, J. L., & De La Cruz, J. P. (2008). Neuroprotective effect of hydroxytyrosol and hydroxytyrosol acetate in rat brain slices subjected to hypoxia-reoxygenation. Neuroscience Letters, 446, 143–146.CrossRefPubMed
13.
go back to reference Vázquez-Velasco, M. Esperanza, Díaz, L., Lucas, R., Gómez-Martínez, S., Bastida, S., Marcos, A., & Sánchez-Muniz, F. J. (2011). Effects of hydroxytyrosol-enriched sunflower oil consumption on CVD risk factors. British Journal of Nutrition, 105, 1448–1452.CrossRefPubMed Vázquez-Velasco, M. Esperanza, Díaz, L., Lucas, R., Gómez-Martínez, S., Bastida, S., Marcos, A., & Sánchez-Muniz, F. J. (2011). Effects of hydroxytyrosol-enriched sunflower oil consumption on CVD risk factors. British Journal of Nutrition, 105, 1448–1452.CrossRefPubMed
14.
go back to reference Cabrerizo, S. La, Cruz, D., Pedro, J., López-Villodres, J. A., Muñoz-Marín, J., Guerrero, A., & González-Correa, J. A. (2013). Role of the inhibition of oxidative stress and inflammatory mediators in the neuroprotective effects of hydroxytyrosol in rat brain slices subjected to hypoxia reoxygenation. Journal of Nutritional Biochemistry, 24, 2152–2157.CrossRefPubMed Cabrerizo, S. La, Cruz, D., Pedro, J., López-Villodres, J. A., Muñoz-Marín, J., Guerrero, A., & González-Correa, J. A. (2013). Role of the inhibition of oxidative stress and inflammatory mediators in the neuroprotective effects of hydroxytyrosol in rat brain slices subjected to hypoxia reoxygenation. Journal of Nutritional Biochemistry, 24, 2152–2157.CrossRefPubMed
15.
go back to reference Kannan, M. M., & Quine, S. D. (2011). Ellagic acid ameliorates isoproterenol induced oxidative stress: Evidence from electrocardiological, biochemical and histological study. European Journal of Pharmacology, 659, 45–52.CrossRefPubMed Kannan, M. M., & Quine, S. D. (2011). Ellagic acid ameliorates isoproterenol induced oxidative stress: Evidence from electrocardiological, biochemical and histological study. European Journal of Pharmacology, 659, 45–52.CrossRefPubMed
16.
go back to reference Kannan, M. M., & Quine, D. S. (2013). Ellagic acid inhibits cardiac arrhythmias, hypertrophy and hyperlipidaemia during myocardial infarction in rats. Metabolism, 62, 52–61.CrossRefPubMed Kannan, M. M., & Quine, D. S. (2013). Ellagic acid inhibits cardiac arrhythmias, hypertrophy and hyperlipidaemia during myocardial infarction in rats. Metabolism, 62, 52–61.CrossRefPubMed
17.
go back to reference Whalen, E. J., & Lewis, S. J. (1999). In vivo evidence that isoproterenol may increase heart rate in the rat by mechanisms in addition to activation of cardiac β1-or β2-adrenoceptors. European Journal of Pharmacology, 382, 207–210.CrossRefPubMed Whalen, E. J., & Lewis, S. J. (1999). In vivo evidence that isoproterenol may increase heart rate in the rat by mechanisms in addition to activation of cardiac β1-or β2-adrenoceptors. European Journal of Pharmacology, 382, 207–210.CrossRefPubMed
18.
go back to reference Granados-Principal, S., El-Azem, N., Pamplona, R., Ramirez-Tortosa, C., Pulido-Moran, M., Vera-Ramirez, L., et al. (2014). Hydroxytyrosol ameliorates oxidative stress and mitochondrial dysfunction in doxorubicin-induced cardiotoxicity in rats with breast cancer. Biochemical Pharmacology, 90, 25–33.CrossRefPubMed Granados-Principal, S., El-Azem, N., Pamplona, R., Ramirez-Tortosa, C., Pulido-Moran, M., Vera-Ramirez, L., et al. (2014). Hydroxytyrosol ameliorates oxidative stress and mitochondrial dysfunction in doxorubicin-induced cardiotoxicity in rats with breast cancer. Biochemical Pharmacology, 90, 25–33.CrossRefPubMed
19.
go back to reference O’Brien, P. J., Smith, D. C., Knechtel, T. J., Marchak, M. A., Pruimboom-Brees, I., Brees, D. J., et al. (2006). Cardiac troponin I is a sensitive, specific biomarker of cardiac injury in laboratory animals. Laboratory Animals, 40, 153–171.CrossRefPubMed O’Brien, P. J., Smith, D. C., Knechtel, T. J., Marchak, M. A., Pruimboom-Brees, I., Brees, D. J., et al. (2006). Cardiac troponin I is a sensitive, specific biomarker of cardiac injury in laboratory animals. Laboratory Animals, 40, 153–171.CrossRefPubMed
20.
go back to reference Evran, B., Karpuzoğlu, H., Develi, S., Kalaz, E. B., Soluk-Tekkeşin, M., Olgaç, V., & Uysal, M. (2014). Effects of carnosine on prooxidant–antioxidant status in heart tissue, plasma and erythrocytes of rats with isoproterenol-induced myocardial infarction. Pharmacological Reports, 66, 81–86.CrossRefPubMed Evran, B., Karpuzoğlu, H., Develi, S., Kalaz, E. B., Soluk-Tekkeşin, M., Olgaç, V., & Uysal, M. (2014). Effects of carnosine on prooxidant–antioxidant status in heart tissue, plasma and erythrocytes of rats with isoproterenol-induced myocardial infarction. Pharmacological Reports, 66, 81–86.CrossRefPubMed
21.
go back to reference Radhiga, T., Rajamanickam, C., Sundaresan, A., Ezhumalai, M., & Pugalendi, K. V. (2012). Effect of ursolic acid treatment on apoptosis and DNA damage in isoproterenol induced myocardial infarction. Biochimie, 94, 1135–1142.CrossRefPubMed Radhiga, T., Rajamanickam, C., Sundaresan, A., Ezhumalai, M., & Pugalendi, K. V. (2012). Effect of ursolic acid treatment on apoptosis and DNA damage in isoproterenol induced myocardial infarction. Biochimie, 94, 1135–1142.CrossRefPubMed
22.
go back to reference Kumaran, K. S., & Prince, P. S. M. (2010). Protective effect of caffeic acid on cardiac markers and lipid peroxide metabolism in cardiotoxic rats: an in vivo and in vitro study. Metabolism-Clinical and Experimental, 59, 1172–1180.CrossRefPubMed Kumaran, K. S., & Prince, P. S. M. (2010). Protective effect of caffeic acid on cardiac markers and lipid peroxide metabolism in cardiotoxic rats: an in vivo and in vitro study. Metabolism-Clinical and Experimental, 59, 1172–1180.CrossRefPubMed
23.
go back to reference Leroith, D. (2007). Dyslipidemia and glucose dysregulation in over weight and obese patients. Clinical Cornerstone, 8, 38–52.CrossRefPubMed Leroith, D. (2007). Dyslipidemia and glucose dysregulation in over weight and obese patients. Clinical Cornerstone, 8, 38–52.CrossRefPubMed
24.
go back to reference Mnafgui, K., Derbali, A., Sayadi, S., Gharsallah, N., Elfeki, A., & Allouche, N. (2014). Anti-obesity and cardioprotective effects of cinnamic acid in high fat diet-induced obese rats. Journal of Food Science and Technology,. doi:10.1007/s13197-014-1488-2.PubMed Mnafgui, K., Derbali, A., Sayadi, S., Gharsallah, N., Elfeki, A., & Allouche, N. (2014). Anti-obesity and cardioprotective effects of cinnamic acid in high fat diet-induced obese rats. Journal of Food Science and Technology,. doi:10.​1007/​s13197-014-1488-2.PubMed
25.
go back to reference Fki, I., Sahnoun, Z., & Sayadi, S. (2007). Hypocholesterolemic effects of phenolic extracts and purified hydroxytyrosol recovered from olive mill wastewater in rats fed a cholesterol-rich diet. Journal of Agriculture and Food Chemistry, 55, 624–631.CrossRef Fki, I., Sahnoun, Z., & Sayadi, S. (2007). Hypocholesterolemic effects of phenolic extracts and purified hydroxytyrosol recovered from olive mill wastewater in rats fed a cholesterol-rich diet. Journal of Agriculture and Food Chemistry, 55, 624–631.CrossRef
26.
go back to reference Jemai, H. El, Feki, A., & Sayadi, S. (2009). Antidiabetic and antioxidant effects of hydroxytyrosol and oleuropein from olive leaves in alloxan-diabetic rats. Journal of Agriculture and Food Chemistry, 57, 8798–8804.CrossRef Jemai, H. El, Feki, A., & Sayadi, S. (2009). Antidiabetic and antioxidant effects of hydroxytyrosol and oleuropein from olive leaves in alloxan-diabetic rats. Journal of Agriculture and Food Chemistry, 57, 8798–8804.CrossRef
27.
go back to reference Schieffer, B., Wirger, A., Meybrunn, M., Seitz, S., Holtz, J., Riede, U. N., & Drexler, H. (1994). Comparative effects of chronic angiotensin-converting enzyme inhibition and angiotensin II type 1 receptor blockade on cardiac remodeling after myocardial infarction in the rat. Circulation, 89, 2273–2282.CrossRefPubMed Schieffer, B., Wirger, A., Meybrunn, M., Seitz, S., Holtz, J., Riede, U. N., & Drexler, H. (1994). Comparative effects of chronic angiotensin-converting enzyme inhibition and angiotensin II type 1 receptor blockade on cardiac remodeling after myocardial infarction in the rat. Circulation, 89, 2273–2282.CrossRefPubMed
28.
go back to reference Borghi, C., Bacchelli, S., Esposti, D. D., & Ambrosioni, E. (2006). Effects of early angiotensin-converting enzyme inhibition in patients with non–ST-elevation acute anterior myocardial infarction. American Heart Journal, 152, 470–477.CrossRefPubMed Borghi, C., Bacchelli, S., Esposti, D. D., & Ambrosioni, E. (2006). Effects of early angiotensin-converting enzyme inhibition in patients with non–ST-elevation acute anterior myocardial infarction. American Heart Journal, 152, 470–477.CrossRefPubMed
29.
go back to reference Teyssedou, A. (2007). LES IEC dans le post-infarctus: gros plan sur le zofénopril. Annales de Cardiologie et d Angéiologie, 56, 137–144.CrossRefPubMed Teyssedou, A. (2007). LES IEC dans le post-infarctus: gros plan sur le zofénopril. Annales de Cardiologie et d Angéiologie, 56, 137–144.CrossRefPubMed
30.
go back to reference Lindpaintner, K., Lu, W., Niedermayer, N., Schieffer, B., Just, H., Ganten, D., & Drexler, H. (1993). Selective activation of cardiac angiotensinogen expression in postinfarction ventricular remodeling in the rat. Journal of Molecular and Cellular Cardiology, 25, 133–145.CrossRefPubMed Lindpaintner, K., Lu, W., Niedermayer, N., Schieffer, B., Just, H., Ganten, D., & Drexler, H. (1993). Selective activation of cardiac angiotensinogen expression in postinfarction ventricular remodeling in the rat. Journal of Molecular and Cellular Cardiology, 25, 133–145.CrossRefPubMed
Metadata
Title
Protective Effect of Hydroxytyrosol Against Cardiac Remodeling After Isoproterenol-Induced Myocardial Infarction in Rat
Authors
Kais Mnafgui
Raouf Hajji
Fatma Derbali
Ines Khlif
Ftouma Kraiem
Hedi Ellefi
Abdelfattah Elfeki
Noureddine Allouche
Neji Gharsallah
Publication date
01-04-2016
Publisher
Springer US
Published in
Cardiovascular Toxicology / Issue 2/2016
Print ISSN: 1530-7905
Electronic ISSN: 1559-0259
DOI
https://doi.org/10.1007/s12012-015-9323-1

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