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A powerful, yet affordable, high-content imaging system in your own lab.
Discover how you can simplify your workflow by combining microplate reading and imaging in a small footprint.
By editing out a set of proteins on the surface of human pluripotent stem cells, researchers have ensured they will be not be rejected by the body's immune system.
Scientists have found two active substances that allowed cells to reactivate the production of a protein that prevents the onset of Parkinson's disease.
Sign up for free weekly 5-10 min videos from Horizon’s expert cell line engineers to help you improve your CRISPR editing experiments.
This webinar explains how synthetic guide RNAs are stable, eliminate cloning and sequencing steps, and avoid innate immune responses and cytotoxicity.
The study evaluating Down syndrome endothelial cells presented novel drug targets for leukaemia and suggested why DS patients may be at greater risk from the cancer.
This article explains how to plan a gene-editing experiment. How to choose your biological system and what reagents to get for your experimental aim.
Intestinal organoids have been grown by researchers using stem cells from patient tissues that could lead to personalised transplants for children with intestinal failure.
This issue includes articles that explore how a next-generation genomics platform can be used for COVID-19 research, the elimination of neutralising AAV antibodies for gene therapies and a new quick and cost-effective biomarker technology for cancer diagnostics. Also in this issue are features on antibody therapeutics for COVID-19 and targets…
A new study shows astrocytes derived from monogenic Parkinson’s patients have metabolic alterations that mean they could be contributing to disease progression.
Researchers have discovered compounds able to restart production of VEGF-A in cellular models, which rebuilds blood vessels and muscle in damaged heart tissue.
A new study has shown that 3D printing can be used to control stem cell differentiation into embryoid bodies that replicate heart cells.
A UK company has announced that their lung epithelium model can successfully be used to test potential treatments for COVID-19.
As more of the small devices in the lab become connected, more laboratory workflows will be observable, and variability will be better understood.