Webinars

3D illustration of a DNA double helix structure with a pixelated visual effect
Available on Demand
Illustration of neuron cells in the process of firing with electrical impulses traveling along their axons
Available on Demand
A 3D illustration of a human brain, an organ that scientists can target with oligonucleotide gene therapy to treat neurological diseases.
Available on Demand
A double-stranded DNA molecule with semi-transparent molecular structures of nucleotides in the background representing the DNA's composition
Available on Demand
A hand in a blue glove picks a glass histology slide from a collection of histology slides in the background.
Available on Demand
A 3D graphic of a human body surrounded by a collection of biomarker concept icons directed towards various regions of the body.
Available on Demand
A realistic illustration of the human heart with arteries and veins
Available on Demand
Immune cell dysregulation characterize inflammatory bowel diseases like ulcerative colitis and Chron’s disease.
Available on Demand
A computational biology concept features complex calculations related to drug discovery.
Available on Demand
A 3D computer image of viruses and red blood cells.
Available on Demand
3D illustration of a CRISPR-Cas9 genome editing enzyme.
Available on Demand
A pair of legs with the knee joint highlighted with circular red light, indicating the presence of arthritis in that specific area
Available on Demand
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3D illustration of a single cell surrounded by small molecular particles in a red biological environment.
Measuring mRNA and protein together at single cell resolution can uncover tumor-specific signaling activity and immune features.
Illustration of an antibody intertwined with a DNA double helix.
Discover how CRISPR and single-cell RNA sequencing can connect disease-associated variants to regulatory elements, genes, and pathways.
Digital illustration of the human digestive system highlighting the liver, stomach, and intestines.
Explore how human gut-liver models can improve the translation of preclinical findings into clinical pharmacokinetic predictions.