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R S Lasher

Publications and source records attributed to R S Lasher.

29 records · Page 2Linked to original sources

Freeze-drying of unfixed monolayer cultures for electron microscopic autoradiography.

A method has been developed for freezing, drying and embedding of unfixed monolayer cultures for electron microscopic autoradiography (EM ARG). Experimental results showed: a) Aclar 33 C was a more suitable substrate than the plastic of petri dishes, b) cultures pressed rapidly against the polished face of a large copper cylinder chilled in liquid nitrogen had better cellular morphology than did cultures dipped in Freon 12 chilled in liquid nitrogen, and c) cultures embedded in Epon alone had finer extracellular ice spaces and lower background grain densities than did cultures embedded in Epon with 1% silicone. This method has been used to evaluate the effect of fixation on the localization of the neurotransmitter, 3H-gamma-aminobutyric acid (3H-GABA), in neurons of dispersed cell cultures. EM ARG results showed that the neuronal cell bodies and vesicle elements were present in similar numbers in both glutaraldehyde fixed and freeze-dried cultures.

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Electron microscopic autoradiography of the uptake of [3H]GABA in dispersed cell cultures of rat cerebellums. I. The morphology of the GABAergic synapse.

Dispersed cell cultures of rat cerebellums 21 days in vitro were incubated in saline containing 0.5 micrometer [3H]GABA for 5 min, fixed and prepared for electron microscopic autoradiography. Quantitative methods for analyzing the resulting autoradiographs were developed to distinguish lightly labeled neurons from heavily labeled (i.e. GABAergic) neurons. After a 3 week exposure, 2% of the presynaptic elements were found to be GABAergic. A longer incubation time of 15 min resulted in a greatly increased grain density over lightly labeled neurons, making it more difficult to distinguish them from the GABAergic neurons. When the concentration of [3H]GABA was increased to 1.0 micrometer, the grain densities over both GABAergic and other neurons increased to a similar extent. The morphology of the GABAergic synapses differed from that of the total population synapses. The GABAergic synapses had larger cross-sectional areas, lower densities of vesicles, greater numbers of vesicles, and thinner postsynaptic densities. Both the GABAergic and total population had similar lengths of the postsynaptic densities, cleft widths, vesicle sizes and types of postsynaptic elements. The morphology of the GABAergic synapse reported here is similar to that described for basket and stellate presynaptic elements in vivo.

Aminobutyrates↗

A quantitative electron microscopic study of synapse formation in dispersed cell cultures of rat cerebellum stained either by Os-UL or by E-PTA.

Synapse formation was followed in dispersed cell cultures of rat cerebellums stained either by osmium-uranyl-lead (Os-UL) or by ethanolic phosphotungstic acid (E-PTA). The numerical densities of synapses stained by Os-UL were always significantly higher than those stained by E-PTA (from 3 to 35 days in vitro). This difference suggests that some portion of the populations of both immature and mature synapses was not stained by E-PTA. The width of the synaptic cleft (28.4nm) in synapses stained by E-PTA was only 9nm more than that of the cleft in synapses stained by Os-UL (19.4nm), suggesting that some portion of one or both of the synaptic membranes is stained by E-PTA. Analysis of data from 7 other staining procedures utilizing both ethanolic and aqueous solutions demonstrated that the differences in cleft width described above appear to be due to the various affinities of the stains for different portions of synaptic membranes, and do not represent differences due to shrinkage artifact. In examining the parameters of synaptic structure during development of the cultures, a statistically significant increase in both the height and width of the presynaptic dense projections was found. Changes in synaptic morphology during synaptogenesis in this culture system were similar to those reported for the cerebellar cortex in vivo.

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Uptake of GABA by neuronal and nonneuronal cells in dispersed cell cultures of postnatal rat cerebellum.

A study was made of the time course and kinetics of [3H]GABA uptake by dispersed cell cultures of postnatal rat cerebellum with and without neuronal cells. The properties of GABA neurons were calculated from the biochemical difference between the two types of cultures. It was found that for any given concentration of [3H]GABA, or any time up to 20 min, GABA neurons in cultures 21 days in vitro had an average velocity of uptake several orders of magnitude greater than that of nonneuronal cells. In addition, the apparent Kmvalues for GABA neurons for high and low affinity uptake were 0.33 X 10(-6) M and 41.8 X 10(-4) M, respectively. For nonneuronal cells, the apparent Km for high affinity uptake was 0.29 X 10(-6) M. The apparent Vmax values for GABA neurons for high and low affinity uptake were 28.7 X 10(-6) mol/g DNA/min and 151.5 mmol/g DNA/min, respectively. For nonneuronal cells, the apparent Vmax for high affinity uptake was 0.06 X 10(-6) mol/g DNA/min. No low affinity uptake system for nonneuronal cells could be detected after correcting the data for binding and diffusion. By substituting the apparent kinetic constants in the Michaelis-Menten equation, it was determined that for GABA concentrations of 5 X 10(-9) M to 1 mM or higher over 99% of the GABA should be accumulated by GABA neurons, given equal access of all cells to the label. In addition, high affinity uptake of [3H]GABA by GABA neurons was completely blocked by treatment with 0.2 mM ouabain, whereas that by noneuronal cells was only slightly decreased. Most (75-85%) of the [3H]GABA (4.4 X 10(-6) M) uptake by both GABA neurons and nonneuronal cells was sodium and temperature dependent.

Aminobutyrates↗

Coating sections for electron microscopic autoradiography: a stripping technique using liquid emulsion.

A coating technique for electron microscope autoradiography is described which combines the advantage of forming an emulsion film by a dipping method with the ease of coating sections already on grids. Sections are coated so that a formvar support film separates the section and the emulsion crystals. This intermediate layer of formvar ensures a random distribution of the emulsion crystals. Using light gold sections, Ilford L-4 emulsion and Microdol-X development, the resolution of this technique, as determined by the half distance method, was 150 nm. The additional layer of formvar slightly reduced the image quality with biological samples in the electron microscope. This technique has a minimal loss of resolution and image quality for moderate resolution electron microscope autoradiography.

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