Lycopene and Caffeic Acid Phenethyl Ester Affect Caspase-3 Activity, but Do Not Alter the NO Pathway in Lung Tissue Damage Induced by Cisplatin

Author:

Rančić Milan,Ristić Lidija,Rančić Andrija,Krtinić Dane,Ilić Bojan,Pavlović Milorad,Milojković Miloš,Živković Nikola,Sokolović Dušan

Abstract

<b><i>Introduction:</i></b> Antioxidants such as lycopene (LCP) and caffeic acid phenethyl ester (CAPE) represent ideal molecules for the treatment of different reactive oxygen species (ROS) associated disorders. Cisplatin is a chemotherapeutic agent, causing an increase in ROS and DNA damage, with numerous side effects, which include lung toxicity. In the presents study, we evaluated and mutually compared the potential of LCP and CAPE in preventing cisplatin-induced rat lung damage. <b><i>Methods:</i></b> The study was done using pathohistological analysis and a panel of biochemical parameters that reflect lung oxidative tissue damage, inflammation, and apoptosis. <b><i>Results:</i></b> The obtained results suggest that cisplatin (10 mg/kg) causes significant disturbances in the lung tissue morphology, followed by an increase in lipid peroxidization and protein modification. Also, a pronounced inflammatory response and cell apoptosis cascade activation was noted. Both LCP and CAPE were able to mitigate the changes, to a different extent, in oxidative damage and apoptosis progression induced by cisplatin. However, they both had limited effect on inflammation since they only prevented an increase in myeloperoxidase activity but had not been able to prevent the NO generation. <b><i>Conclusion:</i></b> It is hard to be exact in saying whether LCP or CAPE is better in preventing cis­platin-induced lung damage since they obviously possess different mechanisms of action.

Publisher

S. Karger AG

Subject

Pharmacology,General Medicine

Reference28 articles.

1. Shaheen SO, Jameson KA, Syddall HE, Aihie Sayer A, Dennison EM, Cooper C, et al. The relationship of dietary patterns with adult lung function and COPD. Eur Respir J. 2010 Aug;36(2):277–84.

2. Cevik O, Oba R, Macit C, Cetinel S, Kaya OT, Sener E, et al. Lycopene inhibits caspase-3 activity and reduces oxidative organ damage in a rat model of thermal injury. Burns. 2012 Sep;38(6):861–71.

3. Murtaza G, Karim S, Akram MR, Khan SA, Azhar S, Mumtaz A, et al. Caffeic acid phenethyl ester and therapeutic potentials. Biomed Res Int. 2014 May;2014:145342.

4. Owoeye O, Adedara IA, Farombi EO. Pretreatment with taurine prevented brain injury and exploratory behaviour associated with administration of anticancer drug cisplatin in rats. Biomed Pharmacother. 2018 Jun;102:375–84.

5. Ismail M, Hossain MF, Tanu AR, Shekhar HU. Effect of Spirulina intervention on oxidative stress, antioxidant status, and lipid profile in chronic obstructive pulmonary disease patients. Biomed Res Int. 2015 Jan;2015:486120.

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