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E Palacios-Prü

Publications and source records attributed to E Palacios-Prü.

15 recordsLinked to original sources

Intradermal implants of histotypic adrenal gland rotary cultures.

The implantation of histotypic adrenal gland cultures is described in the present study. The cultures were prepared from mice at birth and were rotary incubated for 10 days. When the cells reached phenotypic maturation, they were implanted in the dermal bed of the auricular pavilion of young adult mice. This location was ideal for implantation because transillumination enabled daily inspection of the progress of implant survival. Twenty days after implantation, the implants and associated tissues were removed to study the degree of maturation and the viability of the implants. Some cultures showed a moderate percentage of steroidal cells, while others demonstrated a high predominance of the chromaffin cells. All the implanted cultures successfully survived a postoperative period of 20 days. Both adrenergic and noradrenergic cells reached their maximum grade of cytological differentiation and neither inflammatory reactions nor adverse immunological effects were observed. On the contrary, the implants were profusely vascularized by the host tissue, particularly in those implants with a higher content of chromaffin cells.

Adrenal Glands

Cerebral implants of histotypic hypothalamic cultures.

In the present report, the implantation of hypothalamic histotypic cultures within the cerebral hemisphere is described. The cultures were prepared from 10-day-old mice and rotary incubated during 6 or 10 days. When the cells reached their phenotypic characteristics at the end of the incubation period, the cultures were implanted in the posterior area of the lateral ventricle. 30 days postoperatively, the whole implanted area was removed and processed for light and electron microscopy observations. The implanted cultures completed maturation in the host tissue and no rejection signs were noticed; on the contrary, we were able to observe a favorable reaction from the host tissue, such as the formation of secondary blood vessels which penetrated the mass of the implanted culture. Well-developed magno- and parvocellular neurons were seen to contain neurosecretory vesicles in their terminals, and the neuroglial relationships established within these implants were homologable to those normally found.

Animals

Ultrastructure of the heart muscle in rats under hypobaric stress and under high NaCl intake.

Cellular metabolic alterations in the heart have been widely investigated under a variety of experimental conditions in which the oxygen supply was diminished. However, there is relatively scarce information about the effect of the reduced food intake and saline loading on the ultrastructural changes occurring in myocardial cells exposed to hypobaric stress during short periods of time. The purpose of the present study was to analyze the effects of hypobaric stress, NaCl intake and undernourishment on the body and heart weights and the ultrastructural changes produced in the rat myocardial cells under these conditions. The body and heart weights in all the experimental groups were determined as well as the total and mitochondrial protein concentrations. A significant decrease in body and cardiac weights was observed in both groups of undernourished animals submitted to hypobaric stress or not. On the other hand, a slight increase in the mitochondrial protein concentration was obtained in the same groups. Cardiac muscle samples were processed for light- and electron-microscopic observations. Few ultrastructural alterations were seen in the experimental groups fed with a standard diet; however, an increase in the mitochondrial size was shown in the rats that received 0.9 and 1.3% NaCl solutions. In the groups of animals with one third of the normal protein-calorie intake, more intense changes were noted; disappearance of the contractile structures, with almost complete extinction of the Z bands, was commonly observed in the rats submitted to hypobaric stress. The ultrastructural alterations seen in the undernourished animals were even more evident, showing generalized damage to the intracellular components.

Animals

Ultrastructural characteristics of different stages of human chagasic myocarditis.

Myocardial damage was analyzed in the different stages of Chagas' disease. Myocardial biopsies from chagasic patients, whose clinical histories were initially unknown to the examiner, were examined and evaluated by electron microscopy using a table in which 244 characteristics were considered. When the ultrastructural results were associated with their respective clinical reports, it was found that Chagas' disease stages showed significant myocardium damage between stages IA and II: IA (normal EKG and cineventriculogram), 13.0%; IB (early left ventricular damage with normal EKG), 14.5%; II (advanced left ventricular damage, abnormal EKG), 25.5%; stage III (congestive heart failure) showed a decrement to 22.5% if compared with stage II. The acute stage of the illness was characterized by the presence of the parasites within the myocytes which were surrounded by inflammatory cell infiltrate. During Chagas' disease evolution the most affected organelle was the sarcoplasmic reticulum.

Adult

Ultrastructural reversible changes in fish neuromuscular junctions after chronic exercise.

Neuromuscular junctions (NJs) of fin muscles of teleostean fishes, Lebistes reticulatus, were ultrastructurally analyzed during 60 min of chronic exercise and a subsequent period of 90 min of induced recovery. NJs from 30-min-exercised fishes showed an almost complete depletion of synaptic vesicles (SVs), corresponding to 83% of SV consumption; 76% of axon terminals were branched at the end of this period. During the recovery period, it was possible to observe the reversibility of the changes induced by the exercise and the transitory events that lead to the reacquirement of the normal NJ morphology. After 15 min of rest, SV population increased to a value of 54.6 SVs/micron2 and the percentage of branched axons was 66.5%. At 60 min of recovery the number of SVs reached a value of 84.6 SVs/micron2. The SV population was fully reestablished at 80 min of rest, while the percentage of branched axons was found within normal ranges after 90 min of recovery. These results demonstrate that chronic exercise induced physiological depletion of NJ SVs and other axon terminal morphological changes, as well as that postexercise rest induces the reestablishment of the normal NJ morphology.

Animals

Dendritic RNA and postsynaptic density formation in chick cerebellar synaptogenesis.

In order to investigate the ribosomal origin of the postsynaptic densities during chick cerebellar maturation, a new procedure for synaptosomal preparation was implemented. Samples from embryonic chick cerebellar cortex, from 14 to 20 days of development and young adult chicks, were initially mechanically dissociated after treatment with 1.25% trypsin for 10 min; with this procedure we were able to obtain a dendritic suspension from which an enriched synaptosomal fraction was prepared in a discontinuous Ficoll sucrose gradient. RNA and protein values determined from the synaptosomal fractions showed the following variations: from 46.3 ng RNA/mg of wet weight at day 14 to 616.7 ng RNA/mg of wet weight at day 18; in young adult chicks, the average was 242 ng RNA/mg of wet weight. RNA/protein ratio varied from 78.9 micrograms RNA/mg protein at day 16 to 329.8 micrograms RNA/mg protein at day 18; in the young adult chick, this ratio decreased to 68.4 micrograms RNA/mg protein. The highest value of RNA was obtained at day 18 of chick embryo development coinciding with the maximum period of synaptic formation and consequently of the PSDs. These results seem to reinforce the hypothesis of the ribosomal origin of the PSDs.

Animals

Clinical, histochemical, and ultrastructural correlation in septal endomyocardial biopsies from chronic chagasic patients: detection of early myocardial damage.

In order to recognize early signs of myocardial damage, histologic, histochemical, and ultrastructural studies were performed on septal endomyocardial biopsy tissue obtained from 79 chronic chagasic patients and from 18 patients with atypical chest pain (control group). Abnormal biopsy findings were recognized in 9 of 16 (60%) chagasic patients with no clinical evidence of myocardial damage. In cases of segmental asynergy only, biopsies were abnormal in 18 of 19 patients. When signs of advanced myocardial damage were evidenced by clinical examination or ECGs, all biopsies were abnormal. Mitochondrial, nuclear, and cell membrane irregularities were consistent findings. A peculiar dilatation and filling of the T tubule system with a glycoprotein-like substance and a remarkable increase in monoamine oxidase activity were observed early in the disease and progressed in magnitude and frequency as myocardial damage became more evident by other diagnostic methods. Septal endomyocardial biopsy is a sensitive method for detection of early myocardial damage in chronic chagasic patients. Based on these findings, a modification of the currently used classification is proposed.

Adult

Morphological changes in neuromuscular junctions during exercise.

Long lasting exercise produces several morphological changes in teleostean neuromuscular junctions (NJs), consisting of progressive synaptic vesicles (SVs) depletion and lamellar branching of the nerve endings. Exercised fishes kept swimming during 1 hr against a 3.5 1/min flow of oxygenated water in spite of the fact that the number of SVs was reduced in about 70% after 10 min of exercise. This observation indicates that the SVs formation fails to restore their original number and consequently, under such circumstances, the transmitter release may occur by a different mechanism.

Animals

In vitro formation of neuroglial synapses.

Neuroglial synapses have been systematically observed in histotypical cerebellar rotary tissue cultures. These axoglial contacts appear as excitatory-like synapses in which the presynaptic element contains rounded synaptic vesicles accumulated at the presynaptic active zone. The post-synaptic structures were always the somata as well as processes of astrocytic glial cells. The axoglial contacts appear in these cultures when they are prepared from 16-day-old chick embryos cerebellum and cultivated during 6 days. To explain these neuroglial interrelationship it has been suggested as a working hypothesis that glial and nerve cells develop plastic capacities in order to establish synaptic contact in the in vitro conditions.

Animals

In vitro vs in situ development of Purkinje cells.

Analysis of in vitro vs in situ development of Purkinje cells was undertaken in order to compare the transitory morphology of Purkinje cells grown in situ with their differentiation in vitro. Purkinje cells in rotary cultures developed their basic morphological pattern only when the cultures were prepared from 16-day chick embryos, indicating the existence of a critical period during their normal differentiation, which lasted approximately 24 hr between days 14 and 15 embryonic development.

Animals