Biomedical subjects
A Underwood
Publications and source records attributed to A Underwood.
Soda pop that packs a punch. Are the new alcoholic lemonades aimed at kids?
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Phosphoglycerate kinase acts in tumour angiogenesis as a disulphide reductase.
Disulphide bonds in secreted proteins are considered to be inert because of the oxidizing nature of the extracellular milieu. An exception to this rule is a reductase secreted by tumour cells that reduces disulphide bonds in the serine proteinase plasmin. Reduction of plasmin initiates proteolytic cleavage in the kringle 5 domain and release of the tumour blood vessel inhibitor angiostatin. New blood vessel formation or angiogenesis is critical for tumour expansion and metastasis. Here we show that the plasmin reductase isolated from conditioned medium of fibrosarcoma cells is the glycolytic enzyme phosphoglycerate kinase. Recombinant phosphoglycerate kinase had the same specific activity as the fibrosarcoma-derived protein. Plasma of mice bearing fibrosarcoma tumours contained several-fold more phosphoglycerate kinase, as compared with mice without tumours. Administration of phosphoglycerate kinase to tumour-bearing mice caused an increase in plasma levels of angiostatin, and a decrease in tumour vascularity and rate of tumour growth. Our findings indicate that phosphoglycerate kinase not only functions in glycolysis but is secreted by tumour cells and participates in the angiogenic process as a disulphide reductase.
Angiopoietin-1 is an antipermeability and anti-inflammatory agent in vitro and targets cell junctions.
Inflammation is a basic pathological mechanism that underlies many diseases. An important component of the inflammatory response is the passage of plasma components and leukocytes from the blood vessel into the tissues. The endothelial monolayer lining blood vessels reacts to stimuli such as thrombin or vascular endothelial growth factor by changes in cell-cell junctions, an increase in permeability, and the leakage of plasma components into tissues. Other stimuli, such as tumor necrosis factor-alpha (TNF-alpha), are responsible for stimulating the transmigration of leukocytes. Here we show that angiopoietin-1, a cytokine essential in fetal angiogenesis, not only supports the localization of proteins such as platelet endothelial cell adhesion molecule-1 (PECAM-1) into junctions between endothelial cells and decreases the phosphorylation of PECAM-1 and vascular endothelial cadherin, but it also strengthens these junctions, as evidenced by a decrease in basal permeability and inhibition of permeability responses to thrombin and vascular endothelial growth factor. Furthermore, angiopoietin-1 inhibits TNF-alpha-stimulated leukocyte transmigration. Angiopoietin-1 may thus have a major role in maintaining the integrity of endothelial monolayers.
A revolution in medicine.
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Drugstore dangers. Medication mix-ups are increasing as the number of prescriptions grows each year. Here are the hazards, and the steps you can take to protect yourself.
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The battle of pork rind hill.
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Alzheimer's. Unlocking the mystery. The longer we live, the more likely we are to contract this devastating disease. But recent discoveries are bringing scientists closer than ever to a cure.
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A pig may someday save your life. Biotech: scientists are racing to turn oinkers into organ donors. The effort could bring huge benefits, but it carries huge risks.
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A prescriptive palette. Researchers say the pigments that give foods their color also can cut cancer and heart-disease risk, and ease the pain of arthritis.
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Dyslexia and the new science of reading.
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Finding the right Rx. Portable databases can make doctors more efficient. But this one helps them practice better medicine.
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To build a cancer cell.
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What is SAMe? S-Adenosylmethionine.
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Chemo in question. Higher doses may not help breast cancer--yet.
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Do scopes spread sickness?
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