Publications by authors named "Amy O'Broin"

Article Synopsis
  • - The study finds that octanedioic acid (DC 8) can shield mice from kidney damage due to injuries like ischemia-reperfusion and cisplatin chemotherapy by enhancing the breakdown of fats through peroxisomal activity without harming mitochondrial function.
  • - Mice fed a diet with dicarboxylic acids received significant protection from markers indicating acute kidney injury (AKI), with DC 8 preserving critical cellular components and promoting fat oxidation.
  • - These promising results point toward DC 8 as a potential treatment option for patients at risk for kidney damage, suggesting both safety and effectiveness in protecting renal health.
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Dysregulation of cell signaling in chondrocytes and in bone cells, such as osteocytes, osteoblasts, osteoclasts, and an elevated burden of senescent cells in cartilage and bone, are implicated in osteoarthritis (OA). Mass spectrometric analyses provides a crucial molecular tool-kit to understand complex signaling relationships in age-related diseases, such as OA. Here we introduce a novel mass spectrometric workflow to promote proteomic studies of bone.

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Early events associated with chronic inflammation and cancer involve significant remodeling of the extracellular matrix (ECM), which greatly affects its composition and functional properties. Using lung squamous cell carcinoma (LSCC), a chronic inflammation-associated cancer (CIAC), we optimized a robust proteomic pipeline to discover potential biomarker signatures and protein changes specifically in the stroma. We combined ECM enrichment from fresh human tissues, data-independent acquisition (DIA) strategies, and stringent statistical processing to analyze "Tumor" and matched adjacent histologically normal ("Matched Normal") tissues from patients with LSCC.

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Research into the basic biology of human health and disease, as well as translational human research and clinical applications, all benefit from the growing accessibility and versatility of mass spectrometry (MS)-based proteomics. Although once limited in throughput and sensitivity, proteomic studies have quickly grown in scope and scale over the last decade due to significant advances in instrumentation, computational approaches, and bio-sample preparation. Here, we review these latest developments in MS and highlight how these techniques are used to study the mechanisms, diagnosis, and treatment of human diseases.

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