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the biological mechanisms that drive tumour initiation and subsequent growth holds significant promise for improving patient outcomes. This PhD project explores the novel concept that cell fusion between two
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multidisciplinary team and possess a proactive, innovative approach to problem-solving in research. Desirable skills: Prior experience with hydrogel development, 3D cell culture techniques, and a thorough
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and apply machine learning and deep learning models to analyse complex, multi-dimensional datasets, including spatial transcriptomic, proteomic, and single-cell sequencing data. The candidate will
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mitochondrial energy production, DNA repair, and the regulation of sirtuin enzymes that govern cellular resilience. Plasma NAD⁺ levels fall by approximately 60% over the human lifespan, driven by rising demand
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technological and medical sciences with complex ethical implications (such as cloning, stem-cell research/therapy, etc.), youth identity dilemmas, mass immigration, and refugee crises. The central purpose
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related field. Applicants with prior research experience and/or publications in areas such as cell biology, immunology, vascular biology, neurology, or bioinformatics are strongly encouraged to apply
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/biochemistry with specific emphasis on molecular techniques. Desired experiences: Anaerobic microbiology. Single-cell sorting/sequencing. Bioinformatic analyses of microbial functional omic data. Knowledge of a
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, biomedical science, pharmaceutical science, biotechnology, or a related field. Experience in synthetic chemistry, molecular modelling, or molecular/cellular biology is beneficial but not essential
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% of the battery mass, is a soft plastic in every LIB cell to prevent short circuits. The current state-of-the-art LIB recycling plant primarily focuses on recycling the precious metal from waste LIBs. The separator