PubMed Health⌕ Search

Biomedical subjects

B J Gilmore

Publications and source records attributed to B J Gilmore.

4 recordsLinked to original sources

Expression of transforming growth factor-beta receptors during hyperoxia-induced lung injury and repair.

Lung injury and repair processes involve many cellular activities, including cell growth, differentiation, and remodeling of extracellular matrix components. Transforming growth factor-beta (TGF-beta) is a major class of signaling peptide growth factors regulating these cellular activities. Type I (T beta RI) and type II (T beta RII) receptors for TGF-beta are transmembrane serine/threonine kinases that are essential for TGF-beta signaling. To gain insight into the possible molecular mechanisms of lung injury and repair, we investigated the expression of T beta RI and T beta RII in an acute hyperoxia-induced model of lung injury and repair. Localization of message expression of T beta RI and T beta RII in oxygen-exposed rat lung tissue was analyzed by using in situ hybridization. T beta RI mRNA expression was found in the interstitium, capillaries, and the alveolar septa of rat lungs exposed for 60 h to 100% oxygen. The distribution of T beta RII mRNA in oxygen-exposed rat lung tissue overlapped the localization of T beta RI mRNA. Temporal changes of T beta RI and T beta RII mRNA expressions in rat lung during hyperoxic exposure and repair were examined by Northern analysis. We found that expression of T beta RI was upregulated in adult rats undergoing prolonged exposure to 100% oxygen, and the increase of T beta RI expression persisted during 2 wk of repair of lung injury. The pattern of T beta RII expression during hyperoxic exposure and repair was distinct from that of T beta RI. The expression of T beta RII increased with a peak at 3 days postexposure and then declined after 7 days of repair. Changes of T beta RI and T beta RII protein expressions in rat lung during hyperoxic exposure and repair were examined further by Western blot analysis, which correlated with the mRNA expression. The results suggest that T beta RI and T beta RII may play important roles during the lung injury and repair by mediating signaling activity of TGF-beta and may regulate interactions between the mesenchyme and the epithelium.

Animals↗

An iC3b receptor on Candida albicans: structure, function, and correlates for pathogenicity.

Heretofore, the existence of membrane receptors for biologically active fragments of mammalian complement proteins has been confined to mammalian cells, where these receptors serve to protect the host by triggering multiple aspects of the phagocytic response to microbial invasion. In this study, we show that surface receptors for the C3 fragment iC3b are present on the yeast Candida albicans, where they promote the pathogenicity of this organism by inhibiting phagocytosis. These receptors share homology with the alpha-chain, but not with the beta-chain, of neutrophil receptors for iC3b, as determined by the binding of monoclonal antibodies, and are induced by mycelial transformation of the yeast and by high concentrations of glucose. Blockade of these receptors by monoclonal antibodies significantly augments phagocytosis for those strains studied. By binding iC3b noncovalently, these receptors impair phagocytic uptake of C. albicans by human polymorphonuclear leukocytes.

Antibodies, Monoclonal↗

Radionuclide monitoring in Northern Ireland of the Chernobyl nuclear reactor accident.

Northern Ireland received higher radiation doses due to the radionuclide contamination from the Chernobyl nuclear reactor accident than did the south of England. Levels of radioactive iodine ((131)I) and caesium ((137)Cs) in cows' milk in Northern Ireland increased to 166 and 120 Bq/l respectively in May 1986, but had decreased by factors of one million, and of twenty-five, respectively, by 1 September 1986. The resultant radiation doses represent less than one per cent of those received by a Northern Ireland individual over a period of 40 years from natural background radiation sources. The added risk to any individual from the Chernobyl accident will therefore be very small and may best be judged in the context of the enormously greater risk of death due to potentially preventable diseases, such as smoking-related lung cancer, and coronary heart disease.

Adult↗