Aim:
The aim of the proposed project is to develop and employ novel tools to identify and target fibrosis-promoting, molecular pathways in non-alcoholic fatty liver disease.
Importance:
Non-alcoholic fatty liver disease (NAFLD) is the hepatic manifestation of the metabolic syndrome. Parallelling the global epidemic in obesity and type-2-diabetes, NAFLD affects 20-30% of the global population and is now the most common liver disease. As incidences of obesity and obesity-associated complications like NAFLD continue to steadily increase, the economical burden on public health care systems will be enormous. The estimated annual NAFLD-related expenses (accounting for societal costs) for the United States and the four European countries (Germany, France, Italy and UK) are currently US$ 292bn and 219bn, respectively. Yet, the current lack of tools for studying the initiation and progression of NAFLD at the cellular level limits our ability to improve diagnostics, risk stratification and strategies for rational, therapeutic intervention.
This current cross-disciplinary research project was aimed at addressing this challenge by setting the following objectives:
(A) Development of novel pre-clinical tools for in situ gene expression profiling and gene knock-down in select cell types in vivo.
(B) Implementation of these tools to discover mechanisms linking metabolic stress to chronic liver disease in murine models of diet-induced fibrosis.
(C) Experimental validation of hypotheses based on the bioinformatic analysis of gene expression profiles from individual cell populations. Experimental treatment of NAFLD in animal models.