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Strathclyde Institute of Pharmacy and Biomedical Sciences
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Development of low-cost field-programmable gate array based time-to-digital converters for time-resolved measurements
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The development and application of routine gastrointestinal microbiome characterisation in the laboratory mouse using next generation sequencing
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Towards highly efficient algorithms and hardware architecture design for single-photon signal processing
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Protein kinases as potential drug targets against the infectious disease Human Leishmaniasis
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Development of adverse outcome pathways framework for the identification of novel mechanistic and clinical insights into the cardiotoxic actions of thiazolidinediones
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Development of pharmaceutical 3D printing filament for fused deposition modelling: material considerations and process limitations
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Investigating age-related changes in auditory cortex activity
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Sex-dependent mitochondrial function in the right ventricle in pulmonary arterial hypertension
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Development of a vaccine against leishmaniasis
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Corona discharge-mediated immobilisation of bacteriophages onto polymeric surfaces for the production of anti-bacterial surfaces
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Exploration of novel Proteinase activated receptor-4 (PAR4) interacting proteins for identification of new pathways for regulating receptor activity
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Assessing the role of JNK in human endothelial cell death induced by anti-cancer therapies
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The development of a pipeline for the analysis of polymeric nanoparticle interactions with protein-containing media
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Development of novel combination therapies for the treatment of pancreatic cancer
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The role of 16α-hydroxyestradiol in pulmonary arterial hypertension
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Investigating potency and efficacy of mRNA lipid nanoparticle systems and targeting lymph node
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Novel devices for evaluating nanomedicine biological fate
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Optimization of Microfluidic Parameters for Efficient Production of Liposomes and LNPs
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Investigating the response of pseudomonas aeruginosa PA14 to acrylic monomers and cystic fibrosis therapeutics for industrial and medical application
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Bridging the gap : how human factors can support the development of AI technology in healthcare
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