Displaying items by tag: division of molecular and cellular pathology
Use of high-speed video microscopy and artificial intelligence provides calculated statistics like diastolic and systolic diameters, fractional shortening, and ejection fraction.
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These immune CD8 T cells may provide a target for treating the buildup of fatty lesions in the arteries called atherosclerosis.
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Vascular stiffening and calcification, which is accelerated by aging, affects multiple organs and plays a role in dementia. There are no treatments for vascular calcification, which makes arteries harden.
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Mechanistic findings in this study may pave the way for future time-restricted feeding studies in muscle, providing a natural and affordable form of alternative therapy for managing pathologies related to metabolism and obesity.
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The UALCAN data-mining portal at UAB has been used by cancer clinicians and researchers from more than 100 countries in their search for the molecular basis of cancer.
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These changes, seen in a mouse model, are a likely proteome signature for reductive stress cardiomyopathy. About one in six heart failure patients shows reductive stress, according to a 2018 clinical study.
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To facilitate gene-level queries of data from more than 10,000 cancer patient transcriptome sequences and proteomics data from 2,000 patients, researchers have developed a user-friendly cancer data analysis web platform called UALCAN.
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After years of researching the SON gene, Erin Eun-Young Ahn, Ph.D., may have found the cause behind an extremely rare disease.
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The drug Vismodegib, tested in a breast cancer model, is an inhibitor of hedgehog signaling, a form of cell communication manipulated by the tumor microenvironment.
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Understanding how reductive stress is controlled may help personalize treatment of heart failure patients, leading to better outcomes.
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Elizabeth Brown, Ph.D., has received a $3.1 million grant from the National Cancer Institute to study epigenetic contribution to the excess risk of a precursor of multiple myeloma in African Americans.
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Differences in DNA methylation correlated with differences in heart-failure outcomes, as measured by two-year mortality.
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Altered epigenetic marks on ribosomal RNAs appear to create a pool of specialized ribosomes that can differentially regulate translation of specific messenger RNA.
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Further understanding is needed of the redox change called reductive stress and its impact on the onset and progression of neurodegeneration.
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UAB researchers have identified a subgroup of heart failure patients with reductive stress who may be less responsive or even harmed by antioxidants, which could lead to personalized treatment and better outcomes.
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The Central Alabama Caribbean American Organization shares Caribbean culture and is a resource for area students from the Caribbean.
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The runx2 master transcription factor functions differently in chondrocytes and osteoblasts, two key cells in bone formation.
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Mitochondrial DNA determines oxidant levels and may further explain why some people get sick and others don’t.