Publications by authors named "Erin Brand"

Article Synopsis
  • Genomic and proteomic studies of normal and cancer tissues have provided valuable insights for identifying potential biomarkers and therapeutic targets, focusing notably on the vascular endothelium in tumors.
  • Using mass spectrometry, researchers isolated endothelial cells from cancer tissues and their normal counterparts to discover cell surface and secreted proteins that could serve as therapeutic targets.
  • They identified 127 unique proteins over-expressed in tumor-associated endothelial cells, confirmed through immunohistochemistry, and determined the functional importance of B7H3 and ATP1B3 through siRNA studies.
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Background: The continued discovery of therapeutic antibodies, which address unmet medical needs, requires the continued discovery of tractable antibody targets. Multiple protein-level target discovery approaches are available and these can be used in combination to extensively survey relevant cell membranomes. In this study, the MDA-MB-231 cell line was selected for membranome survey as it is a 'triple negative' breast cancer cell line, which represents a cancer subtype that is aggressive and has few treatment options.

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5'-Ectonucleotidase (NT5E) catalyzes the conversion of adenosine monophosphate to adenosine and free phosphate. The role of this ectonucleotidase and its production of adenosine are linked with immune function, angiogenesis, and cancer. NT5E activity is typically assayed either by chromatographic quantification of substrates and products using high-performance liquid chromatography (HPLC) or by quantification of free phosphate using malachite green.

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It is a challenging task to verify and quantify potential biomarkers expressed at elevated levels in sera from cancer patients. An immunoaffinity-mass spectrometry-based approach has been developed using antibodies to enrich proteins of interest from sera followed by mass spectrometry-based quantification. Antibodies specific to the protein of interest were immobilized to hydrazide resin via the carbohydrate moiety on the Fc region of the antibody.

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