Rabies antibody in healthy dogs and vaccine response after MPA.
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Biomedical subjects
Publications and source records attributed to E C Roberts.
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Bacterial chemotactic peptides are low molecular weight peptides which stimulate a wide range of neutrophil functions following binding to specific leucocyte receptors. Formyl methionyl leucyl phenylalanine (FMLP) is the major chemotactic peptide in Escherichia coli culture supernatants. This paper reports the development and validation of a radio-immunoassay (RIA) for FMLP and its application to the analysis of formyl peptide production by enteric bacteria in vitro. The assay was moderately sensitive (10 nmol/L FMLP) and highly specific showing cross reactivity with F-met-leu-tyr, F-nle-leu-phe and F-met-met-met sequences (ID50 = 200, 100 and 250 nmol/L, respectively) but no significant cross reactivity with non-formylated or other formylated di- and tri-peptides (ID50 = 10(5) nmol/L. Culture supernatants from five species of enteric bacteria were filtered, concentrated and fractionated by reverse phase high performance liquid chromatography before RIA. All five organisms produced immunoreactive F-met peptides. A major peak of immunoreactivity co-chromatographing with authentic FMLP was found in all supernatants, but additional peaks representing more hydrophobic peptides were found in Streptococcus faecalis and Bacteroides fragilis cultures. In E. coli culture supernatants, concentration of immunoreactive FMLP increased in a linear fashion during 3 h of log phase growth reaching 31.2 nmol/L(s.e.m. = 10) with final bacterial concentrations of 3 +/- 0.73 x 10(8)/mL (n = 6). These findings extend earlier work showing production of bioactive formyl oligopeptides by different species of enteric bacteria and suggest that a RIA for FMLP will be a useful tool for investigating the production and metabolic fate of such peptides in man.
Bacterial chemotactic peptides (F-met-oligopeptides) are secreted by several species of commensal enteric bacteria and can be assayed by bioassay techniques in human colonic luminal fluid. We have previously demonstrated intestinal absorption and enterohepatic circulation of radiolabelled F-met peptides introduced into rat colon, and an eightfold increase in absorption and biliary excretion in rats with experimental colitis. This paper describes the application of a radio-immunoassay to measurements of formyl oligopeptides in human faecal dialysates, colonic and systemic venous blood and bile. All samples were fractionated by reverse-phase high performance liquid chromatography (HPLC) prior to assay. Immunoreactivity was found in faecal dialysates (5-700 nmol/L F-met-leu-phe equivalents) and bile samples (3-150 nmol/L) from normal subjects. After HPLC fractionation, up to five distinct peaks of immunoreactivity were identified. One of these co-chromatographed with authentic F-met-leu-phe; the others probably represented either closely related peptides or peptides of different chain lengths originating from the same F-met-leu-phe precursor protein. Colonic venous blood from two patients with ulcerative colitis contained immunoreactive peptide (10-30 nmol/L) and substantial immunoreactivity was found in ileostomy fluid and bile from two patients with primary sclerosing cholangitis. These results suggest the presence of an enterohepatic circulation of bacterial F-met oligopeptides in man and provide a basis for studies of the role of such pro-inflammatory peptides in patients with inflammatory bowel disease and associated hepatobiliary disorders.