Study the transition from normal blood stem cells to leukaemic stem cells and identify mechanisms that enable disease progression and therapeutic evasion. The project uses patient material and experimental approaches in cell and molecular biology, with opportunities to integrate omics and functional perturbation. This full-time temporary post is in Petter Woll’s research group. Apply by 11 October 2026.
In Cell Biology and Neuroscience
Investigate the mechanisms of cellular rejuvenation and resilience through multidisciplinary experimental research. Develop project-specific methods, contribute to collaborations and publications, and help train researchers and graduate students. Relevant areas include epigenetics, metabolism, stem cells, single-cell analysis, functional screening and gene delivery. Multiple scientist levels are available, with advertised salary bands spanning USD 116,450–247,000 depending on level. Applications are currently open.
Gut/Body interactions in health and disease
Julia Cordero · University of Glasgow
Tue, Nov 21, 2023 · 15:00 UTC
The adult intestine is a major barrier epithelium and coordinator of multi-organ functions. Stem cells constantly repair the intestinal epithelium by adjusting their proliferation and differentiation to tissue intrinsic as well as micro- and macro-environmental signals. How these signals integrate to control intestinal and whole-body homeostasis is largely unknown. Addressing this gap in knowledge is central to an improved understanding of intestinal pathophysiology and its systemic consequences. Combining Drosophila and mammalian model systems my laboratory has discovered fundamental mechanis
Valentine’s Day for people with multiple sclerosis: promoting brain repair through remyelination
Alasdair Coles · Department of Clinical Neurosciences, University of Cambridge
Tue, Feb 14, 2023 · 15:00 UTC
Current disease-modifying therapies in multiple sclerosis are all focused on suppressing the inflammatory phase of the disease. This has been extremely successful, and it is doubtful that significantly more efficacious anti-inflammatory treatments will be found. However, it remains the case that people with relapsing-remitting multiple sclerosis acquire disability on treatment, and enter the secondary progressive phase. I argue that we now need treatments that prevent neuronal degeneration. The most promising approach is to prevent axons degenerating by remyelination. Since the discovery that
Exploring mechanisms of human brain expansion in cerebral organoids
Madeline Lancaster · MRC Laboratory of Molecular Biology, Cambridge
Tue, May 17, 2022 · 15:00 UTC
The human brain sets us apart as a species, with its size being one of its most striking features. Brain size is largely determined during development as vast numbers of neurons and supportive glia are generated. In an effort to better understand the events that determine the human brain’s cellular makeup, and its size, we use a human model system in a dish, called cerebral organoids. These 3D tissues are generated from pluripotent stem cells through neural differentiation and a supportive 3D microenvironment to generate organoids with the same tissue architecture as the early human fetal brai
Stem cell approaches to understand acquired and genetic epilepsies
Jenny Hsieh · University of Texas at San Antonio
Wed, Nov 17, 2021 · 16:00 UTC
The Hsieh lab focuses on the mechanisms that promote neural stem cell self-renewal and differentiation in embryonic and adult brain. Using mouse models, video-EEG monitoring, viral techniques, and imaging/electrophysiological approaches, we elucidated many of the key transcriptional/epigenetic regulators of adult neurogenesis and showed aberrant new neuron integration in adult rodent hippocampus contribute to circuit disruption and seizure development. Building on this work, I will present our recent studies describing how GABA-mediated Ca2+ activity regulates the production of aberrant adult-
Making spinal sensory interneurons from stem cells for regenerative therapies
Sandeep Gupta · University of California, LA
Sun, Jun 13, 2021 · 17:30 UTC
Dr. Gupta is carrying out his post doctoral studies in the Buter Laboratory in UCLA. He is applying his his knowledge of embryology to stem cells for developing regenerative therapies to treat spinal cord injuries. In this talk, he will discuss how understanding the logic for spinal cord development led us to derive diverse sensory neuronal classes from embryonic stem cells. The spinal sensory neurons enableus to perceive our environment through modalities that are lost in spinal injury patients. These ESC derived senory neurons can help regain sensation in spina cord injury patients through r
Regenerative Neuroimmunology - a stem cell perspective
Stefano Pluchino · Department of Clinical Neurosciences, University of Cambridge
Tue, Jun 1, 2021 · 15:00 UTC
There are currently no approved therapies to slow down the accumulation of neurological disability that occurs independently of relapses in multiple sclerosis (MS). International agencies are engaging to expedite the development of novel strategies capable of modifying disease progression, abrogating persistent CNS inflammation, and support degenerating axons in people with progressive MS. Understanding why regeneration fails in the progressive MS brain and developing new regenerative approaches is a key priority for the Pluchino Lab. In particular, we aim to elucidate how the immune system, i