Radiotechnetium polyphosphate joint imaging.
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Biomedical subjects
Publications and source records attributed to D Hawkins.
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A case of Goodpasture's syndrome is described in which bilateral nephrectomy was undertaken because of massive pulmonary hemorrhage. Similar cases recorded in the literature are reviewed. Various hypotheses to explain the beneficial effects of renal ablation on lung purpura are considered. It is suggested that the pulmonary hemorrhage in Goodpasture's syndrome is mediated in part by a non-antibody humoral factor with permeability-increasing properties that is released from the nephritic kidney.
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Acetylsalicylic acid (aspirin) acetylates human serum albumin under physiologic conditions in vitro. These investigations were done to determine whether this phenomenon occurs in vivo and to delineate the site(s) of acetylation on the albumin molecule. Albumin was reacted in vitro with aspirin labeled with (14)carbon at the acetyl-1 or the carboxyl carbon. The altered albumin was hydrolyzed with trypsin and peptide mapping performed. Albumin so treated contains a unique peptide, designated "A," and shows diminution of two normal peptides, designated "B" and "C." Peptide "A" is never seen in normal albumin. Amino acid analyses indicate that peptide "A" equals the sum of peptides "B" and "C." Furthermore all three peptides contain lysine but lack arginine. Thus peptide "A" is formed by the acetylation of a lysine residue which is normally susceptible to trypsin and yields peptides "B" and "C." Radioautography of the peptide maps show most of the acetyl-1-(14)C activity in peptide "A." This indicates that one of the lysine residues in this peptide is the preferential site for the transacetylation reaction. Peptide "A," used as a marker for acetylation, is found in albumin from patients who take aspirin but is not demonstrable in albumin from one of these patients while she was taking sodium salicylate. A transacetylation reaction between aspirin and human albumin occurs in vivo and is similar to that observed in vitro.
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Human serum albumin is acetylated when exposed to acetylsalicylic acid (aspirin) under physiologic conditions in vitro. Indications are that a similar phenomenon occurs in vivo after ingestion of aspirin.
The relationship between certain physicochemical properties of circulating immune complexes and their ability to localize in vessel walls during a state of increased permeability was studied. The ability to become deposited was related to the large size of complexes, rather than to their net charge or to a specific affinity between complexes and structures of vessel walls. Soluble complexes with sedimentation rates greater than 19S were capable of being entrapped along the vessel wall membranes, while complexes smaller than this were not. These large complexes were removed rapidly from the circulation, while smaller complexes persisted. Minimal levels of total complexes in the circulation necessary for detectable vascular localization were found to be as low as 15 microg antibody N/ml plasma. In experimental serum sickness, a disease known to be induced by circulating immune complexes, the development of vascular and glomerular lesions occurred almost exclusively in rabbits having large (greater than 19S) circulating immune complexes. Animals with smaller complexes did not show deposition of complexes in glomeruli or development of glomerulonephritis. Their incidence of vasculitis was markedly reduced.
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