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society and to realising our vision of making the world a better place. The Lord Lab is based in the Centre for Gene Therapy and Regenerative Medicine (CGTRM) within the Faculty of Life Sciences & Medicine
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) biology and osteoarthritis - Mouse genetic models and lineage tracing - Single-cell RNA sequencing and spatial transcriptomics - Skeletal mechanobiology and functional loading models - Gene therapy and
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gene therapy for serious diseases, inspired by the intrinsic nature of extracellular vesicle (EV)-mediated intercellular communication. Our highly multidisciplinary and collaborative research spans
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in analysing and interpreting complex genomic data, integrating computational and experimental findings to advance our understanding of gene function in the developing brain and support the development
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. Recent work from our group identified three molecular subtypes characterized by distinct fusion genes, anatomical locations, clinical behavior and a remarkable female predominance in one subtype (PMID
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society and to realising our vision of making the world a better place. The Lord Lab is based in the Centre for Gene Therapy and Regenerative Medicine (CGTRM) within the Faculty of Life Sciences & Medicine
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analytical skills and experience on omics data, and basic understanding of biology to study therapy resistance mechanisms and dynamics in ovarian cancer. Our research focuses on understanding and manipulating
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are dedicated to driving positive and sustainable change in society and to realising our vision of making the world a better place. The Lord Lab is based in the Centre for Gene Therapy and Regenerative Medicine
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program, our laboratory addresses three central questions: ● Why do breast cancer therapies stop working? ● How can the patients developing resistance, and the biology driving it, be identified from a
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chemistry, nanomedicine, gene/drug delivery or cancer therapy. We are dedicated to designing and developing nanocarriers for the effective delivery of small molecule drugs and/or therapeutic genes (such as