Beyond the lab: stem cell research
Download this report to discover more about human derived induced pluripotent stem cells (hiPSCs), the suitability of NK cells for cancer therapy and the latest research into Alzheimer’s disease.
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Stem cells are undifferentiated biological cells that can differentiate into specialised cells and can divide to produce more stem cells.
Download this report to discover more about human derived induced pluripotent stem cells (hiPSCs), the suitability of NK cells for cancer therapy and the latest research into Alzheimer’s disease.
New data provides an explanation for why, in almost all neurodegenerative diseases, disease sets in as cells age.
Researchers have made surprising and important findings that may influence organoid and cell reprogramming studies.
Researchers explored the effects of loops and 3D genome organisation on gene silencing, and found that ‘cohesinopathies’ may be linked it.
Learn more about Euretos computational disease model and how it predicts many of the known drug targets for RA.
Researchers observed many quantifiable differences between diseased cells made from affected children and their gene-edited cells.
Reverse-blastocyst complementation elucidates the conditions required to form lungs in rat-mouse chimeric models.
Researchers found that ANG in its mutated form slows stem cell differentiation, resulting in neurodevelopmental defects in adult nerve cells.
Tips and tricks for fully leveraging Advanced Flow Cytometry.
Contrary to popular belief, ageing is not caused by just random wear and tear of our bodies over time but is instead caused by a discrete set of biological mechanisms that we now better understand and can target with therapies. Life Biosciences are specifically focused on restoring and prolonging one’s…
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.