Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats

Abstract Background Increase oxidative trauma is the main cause behind Cisplatin (CP) induced cardiotoxicity which restricts its clinical application as anti-neoplastic prescription. Acacia hydaspica is a natural shrub with diverse bioactivities. Acacia hydaspica ethyl acetate extract (AHE) ameliora...

Full description

Bibliographic Details
Main Authors: Tayyaba Afsar, Suhail Razak, Ali Almajwal, Maria Shabbir, Muhammad Rashid Khan
Format: Article
Language:English
Published: BMC 2019-07-01
Series:BMC Complementary and Alternative Medicine
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12906-019-2575-8
id doaj-29e6bc2313154e34b514728fccb4c9aa
record_format Article
spelling doaj-29e6bc2313154e34b514728fccb4c9aa2020-11-25T03:09:18ZengBMCBMC Complementary and Alternative Medicine1472-68822019-07-0119111210.1186/s12906-019-2575-8Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of ratsTayyaba Afsar0Suhail Razak1Ali Almajwal2Maria Shabbir3Muhammad Rashid Khan4Department of Biochemistry, Faculty of Biological Sciences, Quaid-i-Azam UniversityDepartment of Animal Sciences, Faculty of Biological Sciences, Quaid-i-Azam UniversityDepartment of Community Health Sciences, College of Applied Medical Sciences, King Saud UniversityDepartment of Biochemistry, Faculty of Biological Sciences, Quaid-i-Azam UniversityDepartment of Biochemistry, Faculty of Biological Sciences, Quaid-i-Azam UniversityAbstract Background Increase oxidative trauma is the main cause behind Cisplatin (CP) induced cardiotoxicity which restricts its clinical application as anti-neoplastic prescription. Acacia hydaspica is a natural shrub with diverse bioactivities. Acacia hydaspica ethyl acetate extract (AHE) ameliorated drug-induced cardiotoxicity in animals with anti-oxidative mechanisms. Current study aimed to evaluate the protective potential of A. hydaspica against cisplatin-induced myocardial injury. Methods Rats were indiscriminately distributed into six groups (n = 6). Group 1: control; Groups 2: Injected with CP (7.5 mg/kg bw, i.p, single dose) on day 16; Group 3: Treated for 21 days with AHE (400 mg/kg b.w, oral); Group 4: Received CP injection on day 16 and treated with AHE for 5 days post injection; Group 5: Received AHE (400 mg/kg b.w/day, p.o.) for 21 days and CP (7.5 mg/kg b.w., i.p.) on day 16; Group 6: Treated with silymarin (100 mg/kg b.w., p.o.) after 1 day interval for 21 days and CP injection (7.5 mg/kg b.w., i.p.) on day 16. On 22nd day, the animals were sacrificed and their heart tissues were removed. Cisplatin induced cardiac toxicity and the influence of AHE were evaluated by examination of serum cardiac function markers, cardiac tissue antioxidant enzymes, oxidative stress markers and histology. Results CP inoculation considerably altered cardiac function biomarkers in serum and diminished the antioxidant enzymes levels, while increased oxidative stress biomarkers in cardiac tissues AHE treatment attenuated CP-induced deteriorations in creatine kinase (CK), Creatine kinase isoenzymes MB (CK-MB), cardiac Troponin I (cTNI) and lactate dehydrogenase (LDH) levels and ameliorated cardiac oxidative stress markers as evidenced by decreasing lipid peroxidation, H2O2 and NO content along with augmentation in phase I and phase II antioxidant enzymes. Additionally, CP inoculation also induced morphological alterations which were ameliorated by AHE. In pretreatment group more significant protection was observed compared to post-treatment group indicating preventive potential of AHE. The protective potency of AHE was comparable to silymarin. Conclusion Results demonstrate that AHE attenuated CP induce cardiotoxicity. The polyphenolic metabolites and antioxidant properties of AHE might be responsible for its protective influence.http://link.springer.com/article/10.1186/s12906-019-2575-8CisplatinCardiotoxicityOxidative traumaCardiac function biomarkersAntioxidant enzymesMorphological alterations
collection DOAJ
language English
format Article
sources DOAJ
author Tayyaba Afsar
Suhail Razak
Ali Almajwal
Maria Shabbir
Muhammad Rashid Khan
spellingShingle Tayyaba Afsar
Suhail Razak
Ali Almajwal
Maria Shabbir
Muhammad Rashid Khan
Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
BMC Complementary and Alternative Medicine
Cisplatin
Cardiotoxicity
Oxidative trauma
Cardiac function biomarkers
Antioxidant enzymes
Morphological alterations
author_facet Tayyaba Afsar
Suhail Razak
Ali Almajwal
Maria Shabbir
Muhammad Rashid Khan
author_sort Tayyaba Afsar
title Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
title_short Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
title_full Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
title_fullStr Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
title_full_unstemmed Evaluating the protective potency of Acacia hydaspica R. Parker on histological and biochemical changes induced by Cisplatin in the cardiac tissue of rats
title_sort evaluating the protective potency of acacia hydaspica r. parker on histological and biochemical changes induced by cisplatin in the cardiac tissue of rats
publisher BMC
series BMC Complementary and Alternative Medicine
issn 1472-6882
publishDate 2019-07-01
description Abstract Background Increase oxidative trauma is the main cause behind Cisplatin (CP) induced cardiotoxicity which restricts its clinical application as anti-neoplastic prescription. Acacia hydaspica is a natural shrub with diverse bioactivities. Acacia hydaspica ethyl acetate extract (AHE) ameliorated drug-induced cardiotoxicity in animals with anti-oxidative mechanisms. Current study aimed to evaluate the protective potential of A. hydaspica against cisplatin-induced myocardial injury. Methods Rats were indiscriminately distributed into six groups (n = 6). Group 1: control; Groups 2: Injected with CP (7.5 mg/kg bw, i.p, single dose) on day 16; Group 3: Treated for 21 days with AHE (400 mg/kg b.w, oral); Group 4: Received CP injection on day 16 and treated with AHE for 5 days post injection; Group 5: Received AHE (400 mg/kg b.w/day, p.o.) for 21 days and CP (7.5 mg/kg b.w., i.p.) on day 16; Group 6: Treated with silymarin (100 mg/kg b.w., p.o.) after 1 day interval for 21 days and CP injection (7.5 mg/kg b.w., i.p.) on day 16. On 22nd day, the animals were sacrificed and their heart tissues were removed. Cisplatin induced cardiac toxicity and the influence of AHE were evaluated by examination of serum cardiac function markers, cardiac tissue antioxidant enzymes, oxidative stress markers and histology. Results CP inoculation considerably altered cardiac function biomarkers in serum and diminished the antioxidant enzymes levels, while increased oxidative stress biomarkers in cardiac tissues AHE treatment attenuated CP-induced deteriorations in creatine kinase (CK), Creatine kinase isoenzymes MB (CK-MB), cardiac Troponin I (cTNI) and lactate dehydrogenase (LDH) levels and ameliorated cardiac oxidative stress markers as evidenced by decreasing lipid peroxidation, H2O2 and NO content along with augmentation in phase I and phase II antioxidant enzymes. Additionally, CP inoculation also induced morphological alterations which were ameliorated by AHE. In pretreatment group more significant protection was observed compared to post-treatment group indicating preventive potential of AHE. The protective potency of AHE was comparable to silymarin. Conclusion Results demonstrate that AHE attenuated CP induce cardiotoxicity. The polyphenolic metabolites and antioxidant properties of AHE might be responsible for its protective influence.
topic Cisplatin
Cardiotoxicity
Oxidative trauma
Cardiac function biomarkers
Antioxidant enzymes
Morphological alterations
url http://link.springer.com/article/10.1186/s12906-019-2575-8
work_keys_str_mv AT tayyabaafsar evaluatingtheprotectivepotencyofacaciahydaspicarparkeronhistologicalandbiochemicalchangesinducedbycisplatininthecardiactissueofrats
AT suhailrazak evaluatingtheprotectivepotencyofacaciahydaspicarparkeronhistologicalandbiochemicalchangesinducedbycisplatininthecardiactissueofrats
AT alialmajwal evaluatingtheprotectivepotencyofacaciahydaspicarparkeronhistologicalandbiochemicalchangesinducedbycisplatininthecardiactissueofrats
AT mariashabbir evaluatingtheprotectivepotencyofacaciahydaspicarparkeronhistologicalandbiochemicalchangesinducedbycisplatininthecardiactissueofrats
AT muhammadrashidkhan evaluatingtheprotectivepotencyofacaciahydaspicarparkeronhistologicalandbiochemicalchangesinducedbycisplatininthecardiactissueofrats
_version_ 1724663445505179648