| Literature DB >> 26199914 |
Sobia Mushtaq1, Tahir Ali1, Qamar Javed1, Sobia Tabassum2, Iram Murtaza1.
Abstract
OBJECTIVE: Oxidative stress down regulates antioxidant enzymes including superoxide dismutase (SOD) and contributes to the development of cardiac hypertrophy. N-Acetyl cysteine (NAC) can enhance the SOD activity, so the aim of this study is to highlight the inhibitory role of NAC against endothelin-1 (ET-1)-induced cardiac hypertrophy.Entities:
Keywords: Cardiac Hypertrophy; Endothelin-1; Oxidative Stress; Reactive Oxygen Species; Superoxide Dismutase
Year: 2015 PMID: 26199914 PMCID: PMC4503849 DOI: 10.22074/cellj.2016.3746
Source DB: PubMed Journal: Cell J ISSN: 2228-5806 Impact factor: 2.479
Fig.1A. Histological analysis of heart tissues with hematoxylin-eosin staining (magnification ×40); horizontal sections; cross sections (scale bar=100 μm), B. Calibration curve for ROS analysis. C. Rats heart size of respective groups (n=20) and D. Cell surface area measurement in respective groups analyzed by measuring 200 cells in 40 to 50 fields. *; P≤0.05, **; P≤0.01, ET-1; Endothelin-1, NAC; N-acetylcysteine and ROS; Reactive oxygen species.
Fig.2A. Western blot expression of serum samples in normal, ET-1 and NAC treated neonatal rats with BNP as hypertrophic marker compared to loading control transferrin, B. Densitometric quantification of immunoblot bands using software Image J, C. Comparison of the serum SOD (U/mL) activity in ET-1, ET-1+NAC, NAC treated and normal rats. *; P≤0.05 and D. Comparison of the serum ROS levels in ET-1, ET-1+NAC, NAC treated and normal rats. *; P≤0.05, ET-1; Endothelin-1, NAC; N-Acetyl cysteine, BNP; Brain natriuretic peptide, SOD; Superoxide dismutase and ROS; Reactive oxygen species.