The failure of biology to identify the molecular causes of disease has led to disappointment in the rate of development of new medicines. By combining the power of community-based modeling with broad access to large datasets on a platform that promotes reproducible analyses we can work towards more predictive molecular maps that can deliver better therapeutics
Life on earth is regulated by a complex system of interactions. Network Medicine models biological o...
Due to the large interdependence between the molecular components of living systems, many phenomena,...
BACKGROUND: Drug repositioning offers the possibility of faster development times and reduced risks ...
SummaryAn enormous amount of molecular and phenotypic information of drugs as well as diseases is no...
Akin to the exponential growth of genomic sequencing data, high-throughput techniques in proteomics ...
Introduction: Hundreds of thousands of data points are now routinely generated in clinical trials by...
To further understand human biology to treat or intervene against the rise of modern diseases such a...
Indiana University-Purdue University Indianapolis (IUPUI)Traditional treatment strategy development ...
Bioengineering is focused on advancing human health and promoting environmental sustainability, two ...
The Disease Maps Project builds on a network of scientific and clinical groups that exchange best pr...
Discerning genetic contributions to diseases not only enhances our understanding of disease mechanis...
The advent of high throughput technologies has enabled large-scale measurements of the genome, trans...
Genome-Wide Association Studies (GWAS), whole genome sequencing, and high-throughput omics technique...
Background: Biomedical research is changing due to the rapid accumulation of experimental data at an...
Recent years have testified unprecedented advances in the field of molecular systems biology. The ...
Life on earth is regulated by a complex system of interactions. Network Medicine models biological o...
Due to the large interdependence between the molecular components of living systems, many phenomena,...
BACKGROUND: Drug repositioning offers the possibility of faster development times and reduced risks ...
SummaryAn enormous amount of molecular and phenotypic information of drugs as well as diseases is no...
Akin to the exponential growth of genomic sequencing data, high-throughput techniques in proteomics ...
Introduction: Hundreds of thousands of data points are now routinely generated in clinical trials by...
To further understand human biology to treat or intervene against the rise of modern diseases such a...
Indiana University-Purdue University Indianapolis (IUPUI)Traditional treatment strategy development ...
Bioengineering is focused on advancing human health and promoting environmental sustainability, two ...
The Disease Maps Project builds on a network of scientific and clinical groups that exchange best pr...
Discerning genetic contributions to diseases not only enhances our understanding of disease mechanis...
The advent of high throughput technologies has enabled large-scale measurements of the genome, trans...
Genome-Wide Association Studies (GWAS), whole genome sequencing, and high-throughput omics technique...
Background: Biomedical research is changing due to the rapid accumulation of experimental data at an...
Recent years have testified unprecedented advances in the field of molecular systems biology. The ...
Life on earth is regulated by a complex system of interactions. Network Medicine models biological o...
Due to the large interdependence between the molecular components of living systems, many phenomena,...
BACKGROUND: Drug repositioning offers the possibility of faster development times and reduced risks ...