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U Steiner

Publications and source records attributed to U Steiner.

43 records · Page 3Linked to original sources

Interfacial properties of hydrophilic surfaces of phospholipid films as determined by the method of contact angles. Comparison with cell surfaces.

Hydrophilic films of phospholipids were deposited onto plastic substrates (surface-treated for cell cultures) and shown to adhere sufficiently for measuring their interfacial properties by the method of contact angles. Both by absolute magnitude and by their dependence on temperature, the interfacial properties of these phospholipid films were indistinguishable from those determined for black lipid bilayer membranes with a different method by other authors. According to both their vesicular micromorphology and water permeability, the surface films can be interpreted to consist essentially of multibilayer vesicles with the hydrophilic groups facing outward. Treatment of these films with cell-culture medium containing calf serum results in changes of interfacial properties that are very similar to those effected on virus-transformed 3T3 cells (earlier work). These interfacial effects may be attributed essentially to serum proteins (such as albumin) adsorbing to phospholipid or cellular surfaces. The interfacial properties of nontransformed 3T3 cells are much less affected by serum treatment (earlier work), which correlates closely with their higher serum requirement for proliferation. Comparison of these results with those on the interfacial effects of serum on phospholipid films suggests that at least part of the proliferation-stimulating effect of serum is mediated by changes of interfacial properties of cell membranes upon adsorption of serum proteins such as albumin. Treatment of phospholipid films with concanavalin A, an inhibitor of cell proliferation, does not result in effects on their interfacial properties correlating with those on cellular membranes. This confirms previous suggestions that the latter depends on specific binding of concanavalin A to specific carbohydrates on the cell membrane.

Concanavalin A↗

Cellular content of ribosomal RNA in relation to the progression and competence signals governing proliferation of 3T3 and SV40-3T3 cells.

The method for differential fluorescence staining of cellular RNA and DNA by acridine orange (AO) was optimized for 3T3 and SV40-3T3 cells. Cellular contents of DNA and of ribosomal RNA (rRNA) were determined by dual-channel flow cytometry during cell-density-dependent proliferation and after stimulation of quiescent cells. With increasing density of 3T3 cells, cellular content of rRNA decreases by about 60%, whereas SV40-3T3 cells do not exhibit a significant dependence of rRNA content on cell density. 3T3 cells stimulated early after becoming quiescent resume reaccumulation of rRNA after a delay of only 4 h, whereas cells maintained at quiescence for several days exhibit a delay of about 12 h before a significant rise of rRNA is observed. The extent of rise of cellular rRNA content after different regimens of stimulation of quiescent 3T3 cells does not correlate well with the fraction of cells entering the cell cycle. These and other reported instances of discordance between rRNA content and stimulation into the cell cycle are resolved by showing that of the two signals governing entry into the cell cycle only the progression signal, but not the competence signal is associated with reaccumulation of cellular rRNA. The present results are consistent with the progression function being in essence the achievement of a threshold number of ribosomes per cell, which in conjunction with the competence signal is sufficient for initiation of the cell cycle.

Animals↗

Proliferative activity and ribosomal RNA content of 3T3 and SV40-3T3 cells.

The phenomenon of resistance of confluent 3T3 cells to serum stimulation of proliferation is investigated and shown to depend drastically on the kinetics of application of growth factors with the serum. The cellular content of ribosomal RNA is determined flow-cytometrically by measuring the red fluorescence of cells stained with acridine orange. Ribosomal RNA content of 3T3 cells, but not of SV40-3T3 cells, is shown to decrease after confluence. The kinetics of restoration of ribosomal RNA in stimulated 3T3 cells exhibits an increasing delay with increasing duration of quiescence. These and further results are consistent with "progression" to initiation of the cell cycle being closely associated with restoration of cellular content of ribosomes.

Animals↗