PubMed Health⌕ Search

Biomedical subjects

F Stevenson

Publications and source records attributed to F Stevenson.

21 records · Page 2Linked to original sources

Mesangial cell activation by bacterial endotoxin. Induction of rapid cytoskeletal reorganization and gene expression.

Cultured glomerular mesangial cells (MC) respond to low concentrations of bacterial endotoxin (ET) by secreting prostaglandins and interleukin-1. To evaluate further the nature of ET-induced mesangial cell activation, the authors evaluated the effects of this agent on MC morphology and cytoskeletal organization. Bacterial ET, in concentrations as low as I ng/ml, induced reversible membrane ruffling, cellular rounding, and extension of many filopodia and lamellopodia. Augmented fluid-phase pinocytosis occurred in parallel, as determined by transmission electron microscopy and tritiated sucrose uptake. These cellular morphologic and functional changes were associated with an extensive, but reversible, depolymerization of actin microfilaments. Actin gene expression was also modified by ET. At 4 to 6 hours after ET exposure, Northern blot analysis showed a twofold to fourfold increase in actin mRNA levels. In situ hybridizations of ET-stimulated cells at the light and electron microscopic levels demonstrated a markedly asymmetric distribution of actin mRNA, which was localized in the cellular periphery at filopodial and lamellopodial extensions, presumably sites of new actin protein synthesis. It is concluded that ET effects on MC are distinct from the nonspecific lytic or 'toxic' actions described for other cell types. Endotoxin induces a global activation of this cell type associated with major changes in membrane structure, cytoskeletal organization, and gene expression, which resemble in many respects the responses to peptide mitogens.

Actins↗

Heterogeneity in neoplastic cell populations in chronic lymphocytic leukaemia defined by immunoglobulin expression and secretion in vitro.

Neoplastic cell populations were prepared from peripheral blood and bone marrow samples of four patients with typical B-cell chronic lymphocytic leukaemia (CLL). Lymph node biopsies were also performed and used as a source of neoplastic cells for two of these patients. Using sensitive ELISA systems to determine unstimulated immunoglobulin (Ig) secretion of these tissue-derived populations in culture, a discrepancy between the nature of the secreted Ig products was found. Peripheral blood and lymph node-derived populations from each patient secreted both whole molecules of Ig and a large molar excess of Ig light chains (free LC), whereas all bone marrow-derived population secreted only free LC. The isotypic expression of intrinsic, cell-surface immunoglobulin (sIg), determined using immunofluorescence microscopy and flow cytometry, was, however, indistinguishable between different tissue-derived populations for any one patient. The absolute amounts of LC secretion were not markedly different between the tissue-derived populations (blood = 5.3 +/- 1.7; marrow = 3.5 +/- 1.3; lymph node = 11.5 ng per 2 X 10(7) cells per h) and thus failure of detection could not account for this discrepancy. Furthermore, the presence of sIgM and sIgD on each tissue-derived population indicated that all were at least capable of synthesizing whole Ig for membrane insertion. These results suggest that the assessment of a B-cell function, Ig secretion, is a valuable technique for determining small differences within neoplastic populations from individual patients. These functional differences may be related to the maturity of different cells within clonal populations.

B-Lymphocytes↗