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Field
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, chemical biology, and molecular biology. The candidate will work at the forefront of chemical and synthetic biology and will develop advanced skills in chemical synthesis, various molecular biology and
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, we are seeking a highly motivated candidate with established hands-on experience in chemical engineering, materials, or biology.
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The burgeoning field of synthetic biology offers promising avenues for engineering artificial cells with tailored functionalities for diverse biomedical applications. This PhD project aims
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imaging techniques and structural biology analysis. The student will learn a variety of research techniques including CRISPR genome editing, molecular biology, biochemistry, advanced fluorescent imaging
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antibiotic susceptibility assays is desirable as are skills in molecular biology, such as cloning, whole genome sequencing and/or RNA analyses. Enthusiasm for learning new analytical techniques is essential
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to rapidly test if bacteria are being killed by bacteriophages. This project will work across disciplines of biology, electronics and medicine to develop new approaches. Our team combines expertise in three
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antimicrobial coatings. To undertake this research, we are seeking a highly motivated candidate with established hands-on experience in materials, nanotechnology, chemistry, or biology.
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human induced pluripotent stem cells. The successful candidate will be trained in relevant methods and procedures, including cell culture, cardiac electrophysiology, molecular biology/protein isolation
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the electrophysiology of our nerves and muscles, wound healing, organ development, and cancer.You'll be developing a bioelectronics platform and working with cancer biology specialists to investigate
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the urgent need for deeper insights into GIST biology. Single cell RNA sequencing studies have identified immune cells present within the GIST tumour microenvironment (TME) that vary between KIT/PDGFRA mutant