Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where S Johar is active.

Publication


Featured researches published by S Johar.


The FASEB Journal | 2006

Aldosterone mediates angiotensin II-induced interstitial cardiac fibrosis via a Nox2-containing NADPH oxidase

S Johar; Alison C. Cave; Anilkumar Narayanapanicker; David Grieve; Ajay M. Shah

Angiotensin (ANG) II (AngII) and aldosterone contribute to the development of interstitial cardiac fibrosis. We investigated the potential role of a Nox2‐containing NADPH oxidase in aldosterone‐induced fibrosis and the involvement of this mechanism in AngII‐induced effects. Nox2−/− mice were compared with matched wild‐type controls (WT). In WT mice, subcutaneous (s.c.) AngII (1.1 mg/kg/day for 2 wk) significantly increased NADPH oxidase activity, interstitial fibrosis (11.5±1.0% vs. 7.2±0.7%; P<0.05), expression of fibronectin, procollagen I, and connective tissue growth factor mRNA, MMP‐2 activity, and NF‐kB activation. These effects were all inhibited in Nox2−/− hearts. The mineralocorticoid receptor antagonist spironolactone inhibited AngII‐induced increases in NADPH oxidase activity and the increase in interstitial fibrosis. In a model of mineralocorticoid‐dependent hypertension involving chronic aldosterone infusion (0.2 mg/kg/day) and a 1% Na Cl diet (“ALDO”), WT animals exhibited increased NADPH oxidase activity, pro‐fibrotic gene expression, MMP‐2 activity, NF‐kB activation, and significant interstitial cardiac fibrosis (12.0±1.7% with ALDO vs. 6.3±0.3% without; P<0.05). These effects were inhibited in Nox2−/− ALDO mice (e.g., fibrosis 6.8±0.8% with ALDO vs. 5.8±1.0% without ALDO; P=NS). These results suggest that aldosterone‐dependent activation of a Nox2‐containing NADPH oxidase contributes to the profibrotic effect of AngII in the heart as well as the fibrosis seen in mineralocorticoid‐dependent hypertension.—Johar, S., Cave, A. C., Narayanapanicker, A., Grieve, D. J., Shah, A. M. Aldosterone mediates angiotensin II‐induced interstitial cardiac fibrosis via a Nox2‐containing NADPH oxidase. FASEB J. 20, E846–E854 (2006)


The FASEB Journal | 2005

Pivotal role of NOX-2-containing NADPH oxidase in early ischemic preconditioning

Robert M. Bell; Alison C. Cave; S Johar; David J. Hearse; Ajay M. Shah; Michael Shattock

Reactive oxygen species (ROS)‐mediated signaling is implicated in early ischemic preconditioning (PC). A NOX‐2‐containing NADPH oxidase is a recognized major source of ROS in cardiac myocytes, whose activity is augmented by preconditioning mimetics, such as angiotensin II. We hypothesized that this oxidase is an essential source of ROS in PC. Hearts from wild‐type (WT) and NOX‐2 knockout (KO) mice were Langendorff perfused and subjected to 35 min ischemia/reperfusion with or without preceding PC or drug treatment. Infarct size was measured by triphenyl tetrazolium chloride staining, and NADPH oxidase activity by lucigenin chemiluminescence. PC significantly attenuated infarct size in WT (26±2% vs. control, 38±2%, P<0.05) yet was ineffective in KO hearts (33±3% vs. control, 34±3%). Concomitantly, PC significantly increased NADPH oxidase activity in WT (+41±13%; P<0.05), but not in KO (−5±18%, P=NS). The ROS scavenger MPG (N‐2‐mercaptopropionyl glycine, 300 µmol/L) abrogated PC in WT (39±2% vs. control, 33±1%). CCPA (2‐chloro N6 cyclopentyl adenosine, 200 nmol/L), a putative ROS‐independent PC trigger, significantly attenuated infarct size in WT, MPG‐treated WT and KO hearts (24±2, 23±1, and 20±3%, respectively, P<0.05). Furthermore, CCPA did not augment NADPH oxidase activity over control (+22±11%, P=NS). Inhibition of protein kinase C (PKC) with chelerythrine (CHE, 2 µmol/L) completely abrogated both PC (38±2% vs. CHE alone, 35±2%) and associated increases in oxidase activity (+3±10%, P=NS). PKC‐dependent activation of a NOX‐2‐containing NADPH oxidase is pivotally involved in early ischemic PC. However, adenosine receptor activation can trigger a ROS and NOX‐2 independent PC pathway.


Philosophical Transactions of the Royal Society B | 2005

NADPH oxidase-derived reactive oxygen species in cardiac pathophysiology

Alison C. Cave; David Grieve; S Johar; Min Zhang; Ajay M. Shah

Chronic heart failure, secondary to left ventricular hypertrophy or myocardial infarction, is a condition with increasing morbidity and mortality. Although the mechanisms underlying the development and progression of this condition remain a subject of intense interest, there is now growing evidence that redox-sensitive pathways play an important role. This article focuses on the involvement of reactive oxygen species derived from a family of superoxide-generating enzymes, termed NADPH oxidases (NOXs), in the pathophysiology of ventricular hypertrophy, the accompanying interstitial fibrosis and subsequent heart failure. In particular, the apparent ability of the different NADPH oxidase isoforms to define the response of a cell to a range of physiological and pathophysiological stimuli is reviewed. If confirmed, these data would suggest that independently targeting different members of the NOX family may hold the potential for therapeutic intervention in the treatment of cardiac disease.


Journal of the American College of Cardiology | 2006

Involvement of the nicotinamide adenosine dinucleotide phosphate oxidase isoform Nox2 in cardiac contractile dysfunction occurring in response to pressure overload

David Grieve; Jonathan Byrne; Anjana Siva; Joanne Layland; S Johar; Alison C. Cave; Ajay M. Shah


Archive | 2006

Oxidative Stress and Cardiovascular Disease

S Johar; Philip A. MacCarthy; Ajay M. Shah


Journal of Molecular and Cellular Cardiology | 2004

Pivotal role of gp91phox-containing NADPH oxidase in early ischemic preconditioning

Robert M. Bell; Alison C. Cave; S Johar; David J. Hearse; Ajay M. Shah; Michael Shattock


Heart | 2005

Aldosterone mediates angiotensin II induced interstitial cardiac fibrosis via a Nox2 containing NADPH oxidase

S Johar; Alison C. Cave; D G Grieve; Ajay M. Shah


78th Annual Scientific Session of the American-Heart-Association | 2005

A Nox2 NADPH oxidase plays a central role in interstitial cardiac fibrosis induced by aldosterone in vivo

S Johar; Alison C. Cave; David Grieve; Ajay M. Shah


Heart | 2004

A gp91-phox-containing NADPH oxidase is critical for angiotensin II-induced interstitial cardiac fibrosis

S Johar; Alison C. Cave; David Grieve; Ajay M. Shah


Journal of Molecular and Cellular Cardiology | 2003

Ischemic preconditiong: Pivotal role of gp91(phox)-containing NADPH oxidase in oxidative signalling

Robert M. Bell; Alison C. Cave; S Johar; David J. Hearse; Ajay M. Shah; Michael Shattock

Collaboration


Dive into the S Johar's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

David Grieve

Queen's University Belfast

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge