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We have 12 induced pluripotent stem cells PhD Projects, Programmes & Scholarships for UK Students

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induced pluripotent stem cells PhD Projects, Programmes & Scholarships for UK Students

We have 12 induced pluripotent stem cells PhD Projects, Programmes & Scholarships for UK Students

Role of mechanical signals in a 3D human model of alveolar differentiation

Alveolar epithelial type I (AT1) and type II (AT2) cells are essential for normal lung function following birth. Abnormal differentiation of AT1 and AT2 cells during development results in pulmonary pathology with associated neonatal mortality and long-term morbidity. Read more

PhD in stem cell modelling for neuropsychiatric disorders

This project provides a unique opportunity to explore the developmental origins of schizophrenia—a severe mental health disorder—using cutting-edge patient-derived stem cell models. Read more

Vascularising human mini-brains in a dish

Blood vessels play a pivotal role in brain development and function. They promote tissue growth and survival by supplying nutrients and oxygen to surrounding tissues, signals to progenitor populations, as well as guiding neuronal migration. Read more
Last chance to apply

NUAcT PhD Studentship: Drug discovery in Motor Neuron Disease

Award summary. An annual stipend equivalent to UKRI doctoral stipend (23/24 rate at £18,622). Full fees at the UK home rate. International candidates will need to pay the difference between home and international fees. Read more

Investigating the metabolic link between leukaemia and heart failure (RUSHWORTHS_U24BIGC)

Primary supervisor - Dr Stuart Rushworth. Secondary supervisor - Dr James Smith. Rushworth Lab. This 4-year PhD project funded by the Big C cancer charity represents an exciting opportunity to develop and conduct research at the forefront of cancer research. Read more

Bioengineering a dynamic culture platform to improve the maturity of iPSC-derived muscle organoids

About the project. Heart disease is a critical health burden and leading cause of mortality worldwide. To understand disease mechanisms and develop future treatments for heart disease, we have developed a human cardiac organoid platform derived from pluripotent stem cells. Read more
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