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clinical applications of novel cell and gene therapies in one integrated setting. In this environment, our research group focuses on combining novel genome engineering tools (e.g., CRISPR-based) and
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mechanisms in blood cell regeneration at different ages and aims to characterize how stem and progenitor cell fate and function is altered between steady state and inflammatory conditions. We further explore
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at different length scales, from single molecules (Prof Goult, Liverpool) to the tissue scale (Prof Sinha, Cambridge). To reach the collaborative goals, the teams will be in regular contacts for coordination
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of Oxford. Our lab’s goal is to understand how B cells are activated in vivo. We aim to identify the micro-anatomical niches in which B cells receive activating and inhibitory signals, to uncover the cellular
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a talented and motivated Postdoctoral Research Associate to join an MRC-funded project investigating how immune checkpoint receptors regulate T-cell activation and function. Project Overview
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Research Associate to join an MRC-funded project investigating how immune checkpoint receptors regulate T-cell activation and function. Project Overview This project focuses on understanding the molecular
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oversee the work of laboratory personnel including training and development as well as daily work direction, delegation and establishing priorities. Knowledge – Skills – Abilities Required knowledge: cell
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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, Ottawa, Canada, to monitor NSCs activation in freely behaving mice and decipher the molecular and cellular mechanisms allowing NSCs to decode and integrate different micro-environmental signals. We use
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us