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ZERDEÇALIN KORONER ARTER HASTALIĞI ÜZERİNE ETKİSİ

Yıl 2018, Cilt: 5 Sayı: 1-2, 65 - 73, 28.12.2018

Öz

Koroner arter hastalığı ülkemizde ve dünyada ölüm nedenle-ri arasında ilk sıralarda yer alır. Nedeni genellikle ateroskle-rozdur. Aterosklerozun etiyolojisinde ise çoğunlukla oksida-tif stres ve damarlarda meydana gelen inflamatuar hasar rol oynamaktadır. Zerdeçal besin pişirmede kullanılmasının yanı sıra çeşitli kültürlerde bitkisel tedavi amacıyla da kulla-nılan bir baharattır. Zerdeçalın etken maddesi olan kurkumin güçlü bir antiinflamatuar olarak bilinmektedir. Bu nedenle bu derlemede zerdeçalın koroner arter hastalığı üzerindeki etkisinin özetlenmesi amaçlanmıştır. Yapılan çalışmalarda zerdeçalın antiinflamatuar, antiproliferatif, antiplatelet, anti-koagülan, hipolipidemik, membran stabilize etkisi ve Ca+2 homeostazı üzerine etkilerinden dolayı kardiyovasküler hastalıklara karşı koruyucu olabileceğini gösterilmiştir.

Kaynakça

  • Aggarwal BB, Harikumar KB. Potential thera-peutic effects of curcumin, the anti-inflammatory agent, against neurodegene-rative, cardiovascular, pulmonary, metabo-lic, autoimmune and neoplastic diseases. Int J Biochem Cell Biol. Elsevier; 2009;41(1):40–59.
  • Aggarwal BB, Surh Y-J, Shishodia S. The mole-cular targets and therapeutic uses of cur-cumin in health and disease. Vol. 595. Springer Science & Business Media; 2007.
  • Alwi I, Santoso T, Suyono S, Sutrisna B, Suyat-na FD, Kresno SB, et al. The effect of cur-cumin on lipid level in patients with acute coronary syndrome. Acta Med Indones. 2008;40(4):201–10.
  • Çoban ÖE, Patır B. Antioksidan etkili bazı bitki ve baharatların gıdalarda kullanımı. Gıda Teknol Elektron Derg. 2010;5(2):7–19.
  • Gupta SC, Patchva S, Aggarwal BB. Therapeutic roles of curcumin: lessons learned from clinical trials. AAPS J. Springer; 2013;15(1):195–218.
  • Kaya MG. Editöryal Yorum/Editorial. 2013;
  • Kim M, Kim Y. Hypocholesterolemic effects of curcumin via up-regulation of cholesterol 7a-hydroxylase in rats fed a high fat diet. Nutr Res Pract. 2010;4(3):191–5.
  • Koplay M, Erol C. Koroner arter hastalığı. Trd Sem. 2013; 1:57–69.
  • Logan-Smith MJ, Lockyer PJ, East JM, Lee AG. Curcumin, a molecule that inhibits the Ca+2 -ATPase of sarcoplasmic reticulum but increases the rate of accumulation of Ca +2. J Biol Chem 2001;50: 46905-46911Shehzad A, Lee YS. Molecular mechanisms of curcumin action: signal transduction. Biofactors. Wiley Online Library; 2013; 39(1): 27–36.
  • Shishodia S. Molecular mechanisms of curcumin action: gene expression. Biofactors. Wiley Online Library; 2013;39(1):37–55.
  • Sirisidthi K, Kosai P, Jiraungkoorskul K, Jiraungkoorskul W. Antithrombotic acti-vity of turmeric (Curcuma longa): a re-view. Indian J Agric Res. 2016;50(2):101–6.
  • Sunagawa Y, Sono S, Katanasaka Y, Funamoto M, Hirano S, Miyazaki Y, et al. Optimal dose-setting study of curcumin for impro-vement of left ventricular systolic function after myocardial infarction in rats. J Phar-macol Sci. The Japanese Pharmacological Society; 2014;126(4):329–36.
  • Türkiye Kalp Ve Damar Hastaliklari önleme ve kontrol programı. 2015.
  • Venkatesan N. Curcumin attenuation of acute adriamycin myocardial toxicity in rats. Br J Pharmacol. Wiley Online Library; 1998;124(3):425–7.
  • Wongcharoen W, Jai-Aue S, Phrommintikul A, Nawarawong W, Woragidpoonpol S, Tep-suwan T, et al. Effects of curcuminoids on frequency of acute myocardial infarction after coronary artery bypass grafting. Am J Cardiol. Elsevier; 2012;110(1):40–4.
  • Wongcharoen W, Phrommintikul A. The protec-tive role of curcumin in cardiovascular di-seases. Int J Cardiol. Elsevier; 2009;133(2):145–51.
  • Yu W, Wu J, Cai F, Xiang J, Zha W, Fan D, et al. Curcumin alleviates diabetic cardiom-yopathy in experimental diabetic rats. PLoS One. Public Library of Science; 2012;7(12): e52013.
Yıl 2018, Cilt: 5 Sayı: 1-2, 65 - 73, 28.12.2018

Öz

Kaynakça

  • Aggarwal BB, Harikumar KB. Potential thera-peutic effects of curcumin, the anti-inflammatory agent, against neurodegene-rative, cardiovascular, pulmonary, metabo-lic, autoimmune and neoplastic diseases. Int J Biochem Cell Biol. Elsevier; 2009;41(1):40–59.
  • Aggarwal BB, Surh Y-J, Shishodia S. The mole-cular targets and therapeutic uses of cur-cumin in health and disease. Vol. 595. Springer Science & Business Media; 2007.
  • Alwi I, Santoso T, Suyono S, Sutrisna B, Suyat-na FD, Kresno SB, et al. The effect of cur-cumin on lipid level in patients with acute coronary syndrome. Acta Med Indones. 2008;40(4):201–10.
  • Çoban ÖE, Patır B. Antioksidan etkili bazı bitki ve baharatların gıdalarda kullanımı. Gıda Teknol Elektron Derg. 2010;5(2):7–19.
  • Gupta SC, Patchva S, Aggarwal BB. Therapeutic roles of curcumin: lessons learned from clinical trials. AAPS J. Springer; 2013;15(1):195–218.
  • Kaya MG. Editöryal Yorum/Editorial. 2013;
  • Kim M, Kim Y. Hypocholesterolemic effects of curcumin via up-regulation of cholesterol 7a-hydroxylase in rats fed a high fat diet. Nutr Res Pract. 2010;4(3):191–5.
  • Koplay M, Erol C. Koroner arter hastalığı. Trd Sem. 2013; 1:57–69.
  • Logan-Smith MJ, Lockyer PJ, East JM, Lee AG. Curcumin, a molecule that inhibits the Ca+2 -ATPase of sarcoplasmic reticulum but increases the rate of accumulation of Ca +2. J Biol Chem 2001;50: 46905-46911Shehzad A, Lee YS. Molecular mechanisms of curcumin action: signal transduction. Biofactors. Wiley Online Library; 2013; 39(1): 27–36.
  • Shishodia S. Molecular mechanisms of curcumin action: gene expression. Biofactors. Wiley Online Library; 2013;39(1):37–55.
  • Sirisidthi K, Kosai P, Jiraungkoorskul K, Jiraungkoorskul W. Antithrombotic acti-vity of turmeric (Curcuma longa): a re-view. Indian J Agric Res. 2016;50(2):101–6.
  • Sunagawa Y, Sono S, Katanasaka Y, Funamoto M, Hirano S, Miyazaki Y, et al. Optimal dose-setting study of curcumin for impro-vement of left ventricular systolic function after myocardial infarction in rats. J Phar-macol Sci. The Japanese Pharmacological Society; 2014;126(4):329–36.
  • Türkiye Kalp Ve Damar Hastaliklari önleme ve kontrol programı. 2015.
  • Venkatesan N. Curcumin attenuation of acute adriamycin myocardial toxicity in rats. Br J Pharmacol. Wiley Online Library; 1998;124(3):425–7.
  • Wongcharoen W, Jai-Aue S, Phrommintikul A, Nawarawong W, Woragidpoonpol S, Tep-suwan T, et al. Effects of curcuminoids on frequency of acute myocardial infarction after coronary artery bypass grafting. Am J Cardiol. Elsevier; 2012;110(1):40–4.
  • Wongcharoen W, Phrommintikul A. The protec-tive role of curcumin in cardiovascular di-seases. Int J Cardiol. Elsevier; 2009;133(2):145–51.
  • Yu W, Wu J, Cai F, Xiang J, Zha W, Fan D, et al. Curcumin alleviates diabetic cardiom-yopathy in experimental diabetic rats. PLoS One. Public Library of Science; 2012;7(12): e52013.
Toplam 17 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Derleme Bölümü
Yazarlar

Yağmur Yaşar Fırat

Yayımlanma Tarihi 28 Aralık 2018
Gönderilme Tarihi 25 Kasım 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 5 Sayı: 1-2

Kaynak Göster

APA Yaşar Fırat, Y. (2018). ZERDEÇALIN KORONER ARTER HASTALIĞI ÜZERİNE ETKİSİ. ERÜ Sağlık Bilimleri Fakültesi Dergisi, 5(1-2), 65-73.