Unique self-activating proteins for drug discovery
Explore cutting-edge hit-to-lead insights through exclusive interviews and studies by leading experts in the field.
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Stem cells are undifferentiated biological cells that can differentiate into specialised cells and can divide to produce more stem cells.
Explore cutting-edge hit-to-lead insights through exclusive interviews and studies by leading experts in the field.
22 December 2023 | By
Download now! Drug Target Review breaks down the potential of stem cells for personalised regenerative medicine, offering practical insights into their role in healthcare.
Understanding the involvement of Nod1 in the development of blood stem cells could greatly improve blood disorder treatments.
A 2D neuromuscular junction model enables high-throughput screening to discover new treatments for neuromuscular diseases.
Intestinal organoids allowed researchers to understand how Rnf43 and Daam1 influence the balance of stem cell renewal and differentiation.
By mapping the genome, scientists have discovered how IKAROS enables differentiation of hematopoietic stem cells into B cells.
A continuous sorting technique of stem cells on a DLD microfluidic platform may greatly advance cell therapy.
Discovery about the DNA of leukaemia cells suggests promising target for gene therapy in paediatric oncology.
Researchers have found a way to genetically modify stem cells so that cell and organ transplants are not rejected.
Changing blood stem cells into retinal ganglion cells that can migrate to the eye’s retina offers hope for cell replacement therapy.
Don’t miss out on the easier way to do flow cytometry. Learn how to bring speed, throughput, multiplexing and miniaturization, to your bench.
Using the nicotinamide mononucleotide molecule led to proliferation of non-senescent macrophages and lessened immunosuppressive factors.
How stem cells become enteroendocrine cells using gut organoids could have positive implications for many gastrointestinal diseases.
Researchers from the University of Helsinki and the National Institutes of Health (NIH) in the United States have made a new discovery: the ectoderm, one of the germ layers, does not lose its pluripotency during gastrulation, contrary to prior beliefs.
Autologous haematopoietic stem cell transplantation (aHSCT), a medical procedure typically employed in the treatment of blood cancers, holds promise as a potential therapy for individuals with relapsing-remitting multiple sclerosis (RRMS).