Search PubMedSearch

Biomedical subjects

J Bourne

Publications and source records attributed to J Bourne.

At least 19 recordsLinked to original sources

Binding and agonist/antagonist actions of M35, galanin(1-13)-bradykinin(2-9)amide chimeric peptide, in Rin m 5F insulinoma cells.

The chimeric peptide M35 [galanin(1-13)-bradykinin(2-9) amide] is a high-affinity galanin receptor ligand acting as a galanin receptor antagonist in the rat spinal cord, rat hippocampus and isolated mouse pancreatic islets. We have radiolabelled M35 and performed equilibrium binding studies with [125I]M35 on the rat pancreatic beta-cell line Rin m 5F, whereby we show the existence of high-affinity binding site (KD = 0.9 +/- 0.1 nM) with a Bmax of 72 +/- 3 fmol/mg protein. Galanin displaces [125I]M35 with the same affinity (KD = 1 nM) as it displaces [125I]galanin. Displacement of [125I]galanin by M35 from Rin m 5F cell membranes shows the presence of two binding sites for M35 with KD-values of 0.3 +/- 0.1 nM and 0.52 +/- 0.03 microM, respectively. The GTP- and pertussis toxin-sensitivity of M35 binding to Rin m 5F membranes shows that binding of [125I]M35 is almost completely abolished by the presence of GTP or after pertussis toxin treatment of the cells, indicating an agonist-like binding of M35 to the galanin receptors. M35 has a dual effect on the galanin mediated inhibition of forskolin stimulated cyclic AMP production in Rin m 5F cells: at low concentrations M35 antagonises the effect of galanin, whereas at concentrations above 10 nM M35 acts as a galanin receptor agonist. These agonist-like effects of galanin and M35 are not additive, thus the mixed agonist/antagonist properties arise from the chimeric nature of M35[galanin(1-13)-bradykinin(2-9)amide] acting solely at galanin receptors.

Animals

Clinical hypersensitivity to specific aerosol challenge in parenterally immunized calves.

This paper reports an experiment designed to demonstrate that the calf lung can be sensitized to a specific respirable challenge following parenteral immunization with a nonliving antigen (human serum albumin). The possibility that immune-mediated injury could subsequently interfere with nonspecific mucosal defenses was also investigated by infecting calves with Pasteurella haemolytica after the antigen challenge and assessing pulmonary clearance of the organism. The results indicated that specific aerosol challenge produces reversible signs of respiratory hypersensitivity and that persistence of incidental infection in the upper respiratory tract is potentiated. Since the calves were sensitized by an immunization regime which imitated conventional vaccination, this study highlights the potential dangers of inactivated parenteral respiratory vaccines.

Aerosols

The nature of the local immune system of the bovine mammary gland.

The origin of the immunoglobulins of bovine colostrum and milk were examined by using radiolabeled protein. Colostrum was found to consist mainly of immunoglobulin derived from serum, although there was some local synthesis. In lactation the immunoglobulins of milk were almost entirely serum derived. The local immune system was very inactive but could be stimulated to activity by local immunization. The immunoglobulin profiles of the secretion from the stimulated gland were still relatively deficient in IgA compared to other species, notably the pig.

Animals

The Vanderbilt University fast track to IAIMS: transition from planning to implementation.

Vanderbilt University Medical Center is implementing an Integrated Advanced Information Management System (IAIMS) using a fast-track approach. The elapsed time between start-up and completion of implementation will be 7.5 years. The Start-Up and Planning phases of the project are complete. The Implementation phase asks one question: How does an organization create an environment that redirects and coordinates a variety of individual activities so that they come together to provide an IAIMS? Four answers to this question are being tested. First, design resources to be "scalable"--i.e., capable of supporting enterprise-wide use. Second, provide information technology planning activities as ongoing core functions that direct local efforts. Third, design core infrastructure resources to be both reusable and expandable at the local level. Fourth, use milestones to measure progress toward selected endpoints to permit early refinement of plans and strategies.

Academic Medical Centers