[Histology, cytochemistry and ultrastructure of APUD cells in the neonatal rabbit lung].
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Our studies show that the apparent number of Feyrter cells in the lung declines during the neonatal period in normoxic rabbits, and that in hypoxic animals a uniformly and significantly lower number of cells occurs as compared with the normoxic rabbits. There is some indication of degranulation of cells in the hypoxic groups. It is suggested that environmental and/or physiological factors associated with the start of extrauterine life, or lung development, may affect the apparent number and probable level of activity of these cells. These changes seem to be enhanced by hypoxia. Mast cells are scarce, and Feyrter cells are relatively more numerous along the airways. These cell types could possibly represent storage sites for 5-hydroxytryptamine, as suggested also by other investigators. Intraepithelial nerve fibres in bronchi and bronchioles were found but they were not limited to innervations of Feyrter cells or related cell bodies.
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Argyrophil cells and melanocytes were sought with Grimelius' and Fontana-Masson's techniques in 43 specimens of laryngeal mucosa. In 7 cases, melanocytes were found in the squamous epithelium: in only 2 cases, rare argyrophil cells were found in the respiratory epithelium. The demonstration of argyrophil cells in the laryngeal mucosa constitutes the anatomic rationale for the insurgence of carcinoids and oat-cell carcinomas at this site.
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The evidence that gut and pancreatic endocrine cells are not derivatives of the neural crest is overwhelming: yet this conclusion is still not universally accepted. In this editorial attention is drawn to the body of experimental evidence which points conclusively to gut and pancreatic endocrine cells arising from endoderm, not the neural crest, the neurectoderm or neuroendocrine programmed epiblast.
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The paper reviews methods for studying functional morphology of endocrine cells histochemistry and immunohistochemistry, radioautography and methods of ultrastructural verification of secretory granules. Methodological approach is illustrated by the authors' results on the influence of ionizing radiation and tumor growth on the cells of the diffuse endocrine system.
In 24 patients with uncomplicated duodenal ulcer and 40 patients with acute bleeding duodenal ulcer morphofunctional status of the local paraendocrine adjusting system of the duodenal mucous membrane in the periulcer, ulcer and remote zones was studied with histochemical and electron-microscopic techniques. It is established, that ECL- and G-apudocytes hyperplasia and hyperfunction and vice versa D-cells reduction of the number and suppression of the secretory activity are reliable prognostic criteria of duodenal ulcer bleeding.
Prostatic endocrine-paracrine (PEP) cells from the prostates of 25 radical cystectomy specimens were studied using serotonin and neuron-specific enolase immunocytochemistry and argyrophil and argentaffin silver stains. Three populations of PEP cells were identified as follows: (1) serotonin-positive only, (2) serotonin-positive and argyrophil-positive (the largest population), and (3) serotonin-positive, argyrophil-positive, and argentaffin-positive. Neuron-specific enolase immunoreactivity correlated closely with serotonin immunoreactivity. The entire PEP cell cytoplasm was serotonin and neuron-specific enolase immunoreactive, while the silver stains only stained the granulated cytoplasm. The PEP cells were present in all areas of all prostates with a surprisingly large number in the large periurethral ducts with somewhat fewer PEP cells in the prostatic urethra and smaller ducts and ductules. The peripheral acini generally contained the smallest number of PEP cells. Prostatic endocrine-paracrine cells were of the open (luminal extension), closed, and dendritic types.
Electron microscopy has revealed death of some of the apudocytes and recovery of the other ones in small intestine of rats after single total body irradiation in sublethal dose (5 Gy) and local fractionated irradiation (35 Gy, 7 Gy X 5) of the abdomen. The ability of EC-cells to form the autophagosomes was found. An absence of uniform reaction of different types of apudocytes to radiation is discussed.