Search PubMed⌕ Search

Biomedical subjects

A Quesada

Publications and source records attributed to A Quesada.

At least 73 records · Page 4Linked to original sources

Short axon ganglion cells in the chick retina.

Using Golgi's staining technique, we investigated some ganglion cells whose axons do not project out of the retina area. These axons, after following a short trajectory through the optic nerve fiber layer or through the 5th stratum of the inner plexiform layer (IPL), change their direction and end in the inner stratum of the IPL.

Animals↗

Star-shaped cells of the amacrine cell layer.

Using silver impregnation techniques and light microscopy we have described a new type of interneuron in the adult chicken retina. These cells are located in the innermost level of the INL. Expansions arise from the basal portion of the perikaryon and ascend from there, ending in the inner third of the INL. Other expansions extend through the three first sublayers of the IPL. We compared the morphological differences shown by these cells in relation to the amacrine cells and interplexiform cells, all of which are situated on the same stratum.

Animals↗

Pale and dark bipolar cells in the chicken retina.

Ultrastructurally, two different bipolar cell types can be distinguished in the retina of the chick embryo: one pale or electron-lucent and the other dark or electron-dense. The different electron density was seen over the whole cell, from its enclave in the outer limiting membrane to its termination in the inner plexiform layer. These observations prompted us to study the content and cytoplasmic variations of both cell types. The pale bipolar cell has a higher vacuole, vesicle and endoplasmic reticulum content and a lower number of microtubules and glycogen than the dark bipolar cell. The presence of these two cell types is probably due to a characteristic physiologic state, and the difference between the pale and dark bipolar cells can be attributed to the diverse number of gap unions which they establish with A II amacrine cells.

Animals↗

Effect of reserpine on the differentiation of the external granular layer of the cerebellum in the chick embryo.

In this work we analyse the effect produced by reserpine on the development of thickness and cell number in the external granular layer in the cerebellum of chick embryo. A striking 48-hour histogenetic delay is observed in the treated embryos relative to controls, as show by greater thickness and cell density of this layer in the former, as well as by retarded appearance of a typical radial morphological organization of the external granular layer.

Animals↗

NADH-peroxidase activity and H2O2 decomposition in a peroxidogenic strain of Streptococcus durans.

Streptococcus durans S-76 can accumulate hydrogen peroxide to high concentrations under aerobic conditions when it is previously grown anaerobically. An NADH-peroxidase enzyme protects this bacterium from the bactericidal effect of H2O2. The relationship between oxygen uptake and H2O2 excretion into the medium has been investigated in cultures containing or lacking glucose under various conditions of incubation. The results obtained suggest that neither oxygen nor H2O2 regulate the cellular levels of NADH-peroxidase whose activity seems to be controlled exclusively by the availability of reduced NADH.

Hydrogen Peroxide↗

Localized morphological differentiation in the bipolar cells of the chick retina.

On a morphological and ultrastructural level, we studied a thickening which appears on the ascending prolongation of bipolar cells in the chick retina. We first observed this thickening on day 10 of incubation and it remains unchanged throughout the postnatal life of the chick. Its presence seems to be related to the synaptic activity at a dendritic level in certain bipolar cells.

Animals↗

Characterization and partial purification of a broad spectrum antibiotic AS-48 produced by Streptococcus faecalis.

Streptococcus faecalis S-48 produces a broad spectrum antibiotic, active against Gram-positive and Gram-negative bacteria. This substance is produced in solid and liquid media and also in a defined basal medium. It is sensitive to protease, pronase, or trypsin, heating at 70 degrees C, and alkaline pH, but resistant to treatment with lipase, lysozyme, alkaline phosphatase, DNAase, RNAase, acidic or neutral pHs, and also lower temperatures (60 degrees C). Several organic solvents cause precipitation, but not inactivation. This antibiotic has been partially purified by gel filtration and further ion-exchange chromatography. Its molecular weight has been estimated close to 2000. The biological activity of this antagonistic substance against the selected indicator strains, Streptococcus faecalis S-47 and Escherichia coli U-9, is bactericidal. The characterization of this substance, initially classified as a bacteriocin, indicates that it is an antibiotic of peptidic nature. The significance of antibiotic occurrence in group D of the genus Streptococcus is also discussed.

Anti-Bacterial Agents↗

The midget bipolar cells in the chick retina.

This paper reports the existence of midget bipolar cells on the chick retina, as determined by the staining methods of Golgi-Stensaas and Golgi-Colonnier. We date the appearance of these cell types at days 13 (HH-39) and 14 (HH-40) of incubation and describe them morphologically throughout their development until the time of hatching, at which time the cells show an adult structure. As an adjunct to this work we classify the midget bipolar cells into four groups.

Aging↗

Morphological and structural study of Landolt's club in the chick retina.

Light and electron microscopy were used to study Landolt's club of the bipolar cells in the newborn chick retina as well as in early embryonic stages. In the embryo, the bipolar cells were connected to the outer limiting membrane by Landolt's club. Some of the bipolar cells disconnect from this membrane, by complete retraction of Landolt's club, giving rise to bipolar cells without this process. The newly hatched chick, was used for analysis of the ultrastructure of Landolt's club. Zones of apposition between Muller cells and Landolt's club are associated with cytoplasmic vesicles in both cells. Muller cells appear to transmit vesicular material, possibly nutrients, to bipolar cells through Landolt's club. Thus, Landolt's club provides substrates to bipolar cells in the poorly vascularized region of the chick retina.

Animals↗

Early development of the granule cell in the cerebellum of the chick embryo.

The sequence of differentiation of the cerebellar granule cell in chick embryos from the eighth to the 15th days of incubation has been studied in Golgi-stained celloidin sections. In the germinal-cell phase, the presumptive granule cell sends out one or two horizontal processes which may originate either in the body of the cell or in the extension which attaches it to the pial surface. Thus the germinal cell may be converted into either a monopolar or a bipolar presumptive granular cell. Bipolar cells may have two processes of the same length (symmetrical cells) or of unequal length (asymmetrical cells). In the symmetrical as well as asymmetrical bipolar cells the leading process is formed, by means of which the perikaryon emigrates until it situates itself definitely in the internal granular layer. Thus, symmetrical and asymmetrical bipolar cells give rise to a granule cell with parallel fibers of equal or different lengths. The monopolar element may originate a second process or may remain in the monopolar phase until it reaches the internal granular layer. Once there, it completes the formation of the parallel fibers.

Animals↗