Multi-omics approaches are described as helping highlight disease-driving cell types and gene programs and as promising for unraveling disease complexity.
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multi-omics approaches
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multiomics approaches
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Integrating single-cell and multiomics approaches highlights disease-driving cell types and gene programs. Multi-omics approaches and computational modeling hold promise for unraveling disease complexity.
Harnessing CRISPR-based editing and multi-omics approaches will accelerate the exploitation of VQ genes for developing climate-resilient crops.
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CRISPR-based editing and multi-omics approaches are proposed to accelerate exploitation of VQ genes for developing climate-resilient crops.
Harnessing CRISPR-based editing and multi-omics approaches will accelerate the exploitation of VQ genes for developing climate-resilient crops.
Future progress in vascular disease research should prioritize multi-center large-scale validation studies, harmonization of assay protocols, and integration with clinical datasets and human samples.
Multi-omics approaches and computational modeling hold promise for unraveling disease complexity, and digital twins may accelerate personalized medicine in vascular disease research and treatment.
Integrating single-cell and multiomics approaches highlights disease-driving cell types and gene programs in vascular disease.