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Biomedical subjects

G Wilner

Publications and source records attributed to G Wilner.

10 recordsLinked to original sources

Structural determinants of the factor IX molecule mediating interaction with the endothelial cell binding site are distinct from those involved in phospholipid binding.

Previous studies have indicated that Factor IX/IXa interacts in a specific and high affinity manner with a binding site on the endothelial cell surface. In this study, the contributions of the gamma-carboxyglutamic acid-containing (GLA) and growth factor domains to the finding of Factor IX to the endothelium were assessed. While GLA-containing peptides from Factors IX, X, and prothrombin were inhibitors of 125I-Factor IX-endothelial cell binding, the GLA peptide from Factor IX was about 250-800-fold more effective than those from prothrombin and Factor X, respectively. In contrast to its relative efficacy as an inhibitor of Factor IX-cell surface interaction, the Factor IX-GLA peptide neither bound to lipid vesicles nor inhibited Factor IX-lipid interaction. A synthetic peptide comprising the entire first epidermal growth factor (EGF) exon was also an inhibitor of 125I-Factor IX-endothelial cell binding, although it did not interact with lipid vesicles. Experiments with synthetic peptides comprising each of the three loops of the first EGF domain or the entire first EGF region with specific substitutions indicated the importance of determinants in both the first and probably third loops for Factor IX-endothelial interaction. In contrast, the second loop of the first EGF domain and the first loop of the second EGF exon are probably not involved in Factor IX-endothelial interaction based on their inability to block 125I-Factor IX binding to cells. These results indicate that determinants in both the GLA and the first EGF domain contribute to the specific binding of Factor IX to the endothelial cell surface and that structural requirements for Factor IX-cell surface interaction are distinct from those for Factor IX binding to lipids.

Amino Acid Sequence↗

Partial characterization of a parathyroid hormone-stimulated resorption factor(s) from osteoblast-like cells.

PTH stimulates osteoblast-like cells to produce a product(s) capable of increasing cellular bone resorption. We have investigated this phenomenon using primary cultures of osteoblasts and the clonal osteoblast-like cell line ROS 17/2. Conditioned medium from PTH-stimulated populations of either culture increases bone resorption compared to conditioned medium measured in three independent assay systems; the isolated osteoclast assay system, elicited macrophages, and the fetal bone rudiment system. Characterization of the factor(s) of PTH-stimulated osteoblast-like cell (ROS 17/2) suggests that the compound(s) is not prostaglandin (no inhibition by indomethacin; not extractable in diethylacetate). Rather, it is heat and protease sensitive. In addition, secretion of the product is sensitive to cycloheximide. These findings lead us to the conclusion that the factor(s) is protein. Further work demonstrates the necessity for a divalent cation for retention of factor activity. Finally, we have estimated the molecular radius of the factor as about 110,000 daltons and perhaps a second at about 70,000 daltons using a sizing column. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of [35S]methionine-labeled PTH-stimulated ROS culture supernatants reveals relatively increased secretion of proteins with these approximate molecular radii.

Animals↗

Hemophilus influenzae pericarditis in adults.

We saw an unusual case of spontaneous Hemophilus influenzae purulent pericarditis in an adult. Counterimmunoelectrophoresis (CIE) of the pericardial fluid may be used to make an early, accurate diagnosis. Treatment should include pericardectomy and immediate use of both ampicillin sodium and chloramphenicol sodium succinate, until the sensitivity of the organism is known.

Adult↗

Infective endocarditis caused by Paecilomyces varioti.

The first reported case of Paecilomyces varioti endocarditis occurring on a porcine heterograft prosthesis is presented and the clinical and pathological features described in the four previously reported cases of prosthetic valvular endocarditis caused by this organism are reviewed. In each case, infection became apparent more than two months after cardiac surgery. Three of the four patients with infected aortic prosthesis developed outflow obstruction secondary to valvular vegetations. All patients died regardless of medical or surgical intervention. Appropriate therapy remains unknown.

Adult↗

Variant angina pectoris.

A patient with variant angina pectoris due to a pedunculated calcific mass extending from the aortic valve and resulting in intermittent obstruction of the left coronary ostia is reported. No atherosclerotic disease was demonstrated by coronary angiography. During attacks, marked ST segment elevation and episodes of tachycardia were associated with a moderate rise in pulmonary artery pressure. Replacement of the calcified aortic valve resulted in total relief of symptomatology.

Angina Pectoris↗

Hypereosinophilic syndrome and myocardial infarction in a 15-year-old.

The hypereosinophilic syndrome (HES) is a rare yet frequently fatal disorder of unknown etiology characterized by markedly elevated eosinophil counts and subsequent multiple organ failure due presumably to eosinophil-derived protein toxicity. We describe the laboratory and anatomic findings in a 15-year-old female with extraordinarily high circulating levels of eosinophil major basic protein (MBP) who sustained a precipitous cardiac death secondary to a massive myocardial infarction. Postmortem examination showed marked cardiomegaly with extensive recent left ventricular infarction. Occlusive thrombosis of small blood vessels was evident in the myocardium, spleen, lungs, and kidneys. Immunofluorescent staining showed massive MBP deposition in multiple organ parenchyma including the heart, renal glomeruli, adrenal cortex, bronchioles, and other visceral organs, suggesting a causal relationship. We hypothesize on the mechanisms of eosinophil toxicity in HES.

Adolescent↗