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Rna Isolation In Duchenne Muscular Dystrophy (Dmd) Mice Models, Salem Abu Al-Burak
Rna Isolation In Duchenne Muscular Dystrophy (Dmd) Mice Models, Salem Abu Al-Burak
Undergraduate Student Research Internships Conference
Fibrosis is a progressive and typically irreversible disease process characterized by the excessive deposition of collagen in organs and in tissues of the musculoskeletal (MSK) system1,2. This process, which causes loss of organ and tissue function, can be initiated by micro-traumas3, an excessive and/or prolonged immune response1, the activation and proliferation of fibrosis-inducing progenitor cells4, and a pro-fibrotic extra-cellular microenvironment5. In parallel with the events that initiate fibrosis, genetic or environmental influences may cause cells and tissues to become predisposed to fibrosis development prior to initiation. This suggests that these …
Functional Characterization Of A High-Throughput In Vitro Model To Predict Faecal Microbiota Transplantation (Fmt) Donor Success, Catherine M. Andary
Functional Characterization Of A High-Throughput In Vitro Model To Predict Faecal Microbiota Transplantation (Fmt) Donor Success, Catherine M. Andary
Undergraduate Student Research Internships Conference
Faecal microbiota transplantation (FMT) involves the administration of donor faecal matter to a diseased recipient with the goal of remodeling the host microbiome to provide health benefits. In recent years, FMT has emerged as a potential therapy for a variety of microbiome-associated diseases such as atherosclerosis. Trimethylamine (TMA) is an atherosclerosis-linked metabolite generated by the gut microbiota from dietary precursors which is then oxidized to trimethylamine N-oxide (TMAO) by the liver, contributing to increased gut permeability. It has been shown that FMT may alter or restore the gut microbiome of recipients to reduce plasma TMAO levels. Despite its potential, the …