Single-cell transcriptomics data from mouse bone-relevant cells was used to inform human bone mineral density genome-wide association studies and prioritize genetic targets with potential causal roles ...
Neurodegenerative diseases affect more than 57 million people globally. The incidence of these diseases, from Alzheimer's to ...
Researchers create a massive single-cell atlas of the aging mouse brain, revealing how epigenetic changes and "jumping genes" drive neurodegeneration.
The iGE3 Genomics Platform provides access to the state-of-the-art methods in genomic technologies. Our platform provides a seamless, end-to-end solution tailored to your research needs. From ...
Cardiovascular diseases (CVDs) remain the leading cause of morbidity and mortality worldwide, driven by complex and heterogeneous molecular mechanisms ...
Over the past two decades, cell biologists and computational biologists have worked to develop lineage tracing techniques that can decode the ...
Neurodegenerative diseases affect more than 57 million people globally. The incidence of these diseases, from Alzheimer's to Parkinson's to ALS and beyond, is expected to double every 20 years. Though ...
Salk researchers create epigenetic atlas of cell type-specific changes in the aging mouse brain, representing eight different brain regions and 36 different cell types to show clear epigenetic ...
In this GEN Learning Lab, our expert panelists Linda Orzolek, MS, MB, Xuhuai Ji, MD, PhD, and Christina Chang, PhD, will discuss the current landscape of imaging- and next-generation sequencing-based ...
This important work identifies phlda2 as a specific marker for primordial cardiomyocytes in the adult zebrafish heart and demonstrates their essential role in myocardial morphogenesis and coronary ...
Recent advancements in systems biology have been propelled by the increasing power of omics technologies—spanning genomics, transcriptomics, proteomics, ...
Are you attending the ABRF Annual Meeting 2026? Here are the breakout sessions and workshops you won’t want to miss.