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G Bennett

Publications and source records attributed to G Bennett.

159 records · Page 9Linked to original sources

Migration of glycoprotein from the Golgi apparatus to the surface of various cell types as shown by radioautography after labelled fucose injection into rats.

A single intravenous injection of L-[(3)H]fucose, a specific glycoprotein precursor, was given to young 35-45 g rats which were sacrificed at times varying between 2 min and 30 h later. Radioautography of over 50 cell types, including renewing and nonrenewing cells, was carried out for light and electron microscope study. At early time intervals (2-10 min after injection), light microscope radioautography showed a reaction over nearly all cells investigated in the form of a discrete clump of silver grains over the Golgi region. This reaction varied in intensity and duration from cell type to cell type. Electron microscope radioautographs of duodenal villus columnar cells and kidney proximal and distal tubule cells at early time intervals revealed that the silver grains were restricted to Golgi saccules. These observations are interpreted to mean that glycoproteins undergoing synthesis incorporate fucose in the saccules of the Golgi apparatus. Since fucose occurs as a terminal residue in the carbohydrate side chains of glycoproteins, the Golgi saccules would be the site of completion of synthesis of these side chains. At later time intervals, light and electron microscope radioautography demonstrated a decrease in the reaction intensity of the Golgi region, while reactions appeared over other parts of the cells: lysosomes, secretory material, and plasma membrane. The intensity of the reactions observed over the plasma membrane varied considerably in various cell types; furthermore the reactions were restricted to the apical surface in some types, but extended to the whole surface in others. Since the plasma membrane is covered by a "cell coat" composed of the carbohydrate-rich portions of membrane glycoproteins, it is concluded that newly formed glycoproteins, after acquiring fucose in the Golgi apparatus, migrate to the cell surface to contribute to the cell coat. This contribution implies turnover of cell coat glycoproteins, at least in nonrenewing cell types, such as those of kidney tubules. In the young cells of renewing populations, e.g. those of gastro-intestinal epithelia, the new glycoproteins seem to contribute to the growth as well as the turnover of the cell coat. The differences in reactivity among different cell types and cell surfaces imply considerable differences in the turnover rates of the cell coats.

Animals↗

Magnetic resonance profiling studies of the drying of film-forming aqueous dispersions and glue layers.

We report magnetic resonance profiling experiments to monitor (i) the drying of alkyd emulsion layers, (ii) the cure of wood glue layers and (iii) water transport through glue lines. The alkyd drying is a two stage process. We report new results which support previous evidence that the alkyd drops do not coalesce until the water fraction is below circa 0.02. The profiles recorded from glue layers suggest that MR is a sensitive probe of the curing process and barrier properties of the glue. The measurements were made using GARField (stray field, STRAFI like) magnetic resonance profiling and an improved GARField magnet design characterized by two values of the gradient-to-field strength ratio at two locations offering the same field strength is also reported.

Adhesives↗

Apoptotic index from fine needle aspiration cytology as a criterion to predict histologic grade of non-Hodgkin's lymphoma.

OBJECTIVE: To investigate whether the assessment of apoptotic index (AI) from fine needle aspiration (FNA) smears of non-Hodgkin's lymphomas (NHL) is reliable and has potential utility as a criterion to predict histologic grade. STUDY DESIGN: AI was independently determined by four cytopathologists as a percentage from routine FNA smears in 96 NHLs and 15 lymphoid hyperplasias. Working formulation (WF) grades from corresponding surgical biopsies were modified to include mantle zone-derived NHLs as intermediate grade and to make diffuse large cell NHL a separate category called "high" grade, whereas WF high grade NHLs were called "very high" grade. Histologic grades were also derived from the Revised European American Lymphoma (REAL) classification. AI was compared with histologic grade using the unpaired, two-tailed Student t test. These data were used to determine potential thresholds for AI that separate lower from higher grade NHLs. RESULTS: Measurements of AI strongly correlated between cytopathologists (median r = .93). Low and intermediate grade NHLs had indistinguishable AIs, whereas higher grade NHLs had significantly higher AIs. Appropriate potential AI thresholds between low or intermediate grade and higher grade NHLs were in the range of 1.5-2.5% (modified WF) and 1-2% (REAL). CONCLUSION: There is excellent interobserver reliability in the measurement of AI from FNAs of NHLs. Higher AIs distinguish higher from lower grade NHLs. Diffuse large cell NHLs had AIs that were similar to WF high grade NHLs.

Apoptosis↗

Moderate drinking in women: a concept analysis.

This analysis clarifies the concept of moderate drinking in women. The literature reflects a variety of definitions of moderate drinking and refers largely to drinking in men. Several strategies for concept analysis suggested by Walker and Avant (1995) resulted in the formulation of a theoretical definition of moderate drinking in women applicable to practice and research. The defining attributes of women's moderate drinking in contemporary U.S. culture include (1) minimization of risks of alcohol-related problems, (2) a desire for any potential health benefits, (3) deliberate adoption of personal drinking guidelines based on some knowledge of the effects of alcohol, (4) control of when and how much alcohol is consumed, (5) sensitization to special drinking considerations faced by women, and (6) having at least one interpersonal relationship with another moderate drinker.

Adult↗