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Biomedical subjects

Y Kon

Publications and source records attributed to Y Kon.

At least 109 records · Page 6Linked to original sources

Intracellular production of adrenal renin in the fetal mouse. An immuno-electron microscopical study.

Renin-containing cells in fetal adrenal glands of the mouse were investigated with the protein A-gold immunocytochemical technique. On Day 14 of gestation, a small number of specific granules were weakly immunoreactive and were distributed in the Golgi region. Sometimes, apparent exocytosis of gold-labelled particles could be seen opening into the extracellular space. On Day 16 of gestation, numerous gold particles were demonstrated in the Golgi region as well as in the specific secretory granules. Immunoreactivity of the specific granules was increased as compared with Day 14, though some granules were observed to have no reaction with the antibody. On Day 18 of gestation reactivity for renin decreased, while a few clustered immunoreactive granules were demonstrated just beneath the cell membrane. No gold particles were observed in the Golgi apparatus during this period and more granules negative for renin were noted than on Day 16 of gestation. These results suggest that renin is produced and released temporarily by adrenal cortical cells in the late fetal life of the mouse.

Adrenal Glands↗

[Psoas lymph node metastasis in patients with carcinoma of the uterine cervix].

Enlargement of lymph nodes between the psoas muscle and lumbar spine was demonstrated on CT in three of 14 cases having Stage IIb and III uterine cervical carcinoma with iliac or paraaortic lymphadenopathy. In two of these, the adjacent lumbar vertebral body was destroyed. We define psoas lymph nodes to include all lymph nodes located between the psoas muscle and the spine. Psoas lymph nodes may be divided into upper and lower groups: the upper group distributed along the lumbar arteries above in level of L4-L5 and the lower group distributed along the lumbar branches of the iliolumbar arteries below L5. There appears to be paravertebral communication between these two groups. The region of the psoas lymph nodes should be scrutinized in interpretating CT in patients with malignant pelvic tumors which have already spread to iliac or paraaortic lymph nodes. Obliteration of fat plane between psoas muscle and lumbar vertebra is a clue to the presence of enlargement of the psoas lymph nodes on CT. Massive enlargement of psoas lymph nodes may be difficult to distinguish from metastasis to psoas muscle. In such cases, MR imaging would be of help to differentiate these two conditions.

Adult↗

Renin immunohistochemistry in the adrenal gland of the mouse fetus and neonate.

The development of renin-containing cells in fetal and neonatal adrenal glands of the mouse was studied using immunohistochemistry. On days 13-14 of gestation, immunoreactivity for renin was first observed in a few cortical cells of the gland, appearing as small patchy or granular reaction products in the perikaryon. The mitotic configurations of the cells demonstrating immunoreactivity were noted. On day 16 of gestation, a number of intensively immunoreactive cells were distributed in the aortal side of the cortical zone. On day 18 of gestation, and day 1 postparturition, a small number of potent immunoreactive cells were still found in the cortical area. Immunoreactivity of the cytoplasm was observed in the cells, some showing an intensive reaction and others possessing numerous tiny granules just below the cell membrane. On days 3, 5, and 7 after birth, no renin-containing cells were found in the adrenal gland. The ratio of the numbers of renin-positive cells in certain areas to the numbers in the entire cortical area was significantly increased on day 16 of gestation, but there was no sexual difference in the ratios. The ratios were decreased subsequently until day 1 after birth. The possible significance of renin synthesis in specific adrenal cells in fetal life is discussed with respect to an important involvement of angiotensin II in the morphogenesis of the adrenal gland of the mouse.

Adrenal Glands↗

A comparative study on S-100 protein-immunoreactive cells in lymph nodes.

S-100 protein-immunoreactive cells of the lymph node were examined in the duck and 9 mammalian species, such as guinea pigs, dogs, cats, horses, pigs, goats, cows, Japanese serows and crab-eating monkeys. S-100 protein was detected in follicular dendritic cells (FDC) and tangible-body macrophages (TBM), sinus and parenchymal macrophage (MP), sinus endothelial cells (SEC) and interdigitating reticulum-like cells (IRC) in the node of mammalian species, but not in the duck except nervous elements. S-100-positive FDC and TBM were detected in germinal centers of the nodes in all mammalian species, but immunoreactivity of the other 3 cell types varied according to animal species and individuals of the same species. S-100 alpha subunit was detected in FDC, with the exception of those of the duck and guinea pig. The subunit was also detected in SEC of the dog, cow and Japanese serow. In the guinea pig, a unique S-100 alpha-positive giant dendritic cell (GDC) was found in the subsinusal cortical area. In addition, S-100 immunoreactive lymphocytes were observed in the paracortex-equivalent area of pig nodes. Arterial endothelial cells of the pig and cow were immunoreactive to S-100 beta subunit.

Animals↗

Localization of immunoglobulins in the chicken oviduct.

Studies were made on the distribution of lymphoid tissues and immunoglobulin (Ig: IgA, IgG and IgM)-containing cells (cIg: cIgA, cIgG and cIgM) and the localization of immunoglobulins (Igs) in the oviducal walls of laying hens. Lymphocyte accumulations were occasionally observed, located mainly in the middle infundibulum and in the regions from the isthmus to the vagina. The number of cIgG significantly predominated over that of cIgA or cIgM in the mucosal connective tissue of the magnum and the isthmus. In contrast, in the regions other than the magnum and the isthmus, these three types of cIg were fewer in number. Igs were localized in some superficial epithelial cells (SECs) and glandular cells (GlCs) of the oviduct. Many IgG-containing SECs were found in the infundibulum, the isthmus, and the cranial and major uterus. IgA- or IgM-containing SECs were rare throughout the oviduct. Three types of Ig-containing GlCs were numerously found in the magnum, though lymphocyte accumulations were scarce there. In the isthmus, many IgG-containing GlCs were found, while IgA- or IgM-containing GlCs were rarely observed. Ig-containing GlCs in the magnum were considerably decreased in number after the egg passage. The results suggest that the maternal Igs are transferred to the egg mainly through GlCs in the magnum of the chicken oviduct, and that the oviducal lymphoid tissues have little relationship to the passive immunity.

Animals↗

Membrane responses of B-16 melanoma cells to single exposure to ultraviolet light.

Electron spin resonance spectroscopy using the spin probe (5-, 12- and 16-deoxylstearic acid) was employed to analyze the changes in membrane fluidity in B-16 melanoma cells following UV-B exposure. The UV exposure resulted in the immediate accumulation of lipid peroxide, being accompanied by a change in membrane fluidity. The 12-DSA is the most sensitive to the changes in membrane organization caused by UV light. Na+,K+-ATPase activity was regulated by a change in membrane fluidity. Following UV exposure, the release of the prelabeled arachidonic acid from the cells was observed immediately. Ca2+-dependent calmodulin-dependent phospholipase A2-like activity was involved in the UV-stimulated arachidonic acid release from phospholipid.

Arachidonic Acid↗

An immunohistochemical study on the embryonic development of renin-containing cells in the mouse and pig.

The prenatal occurrence and distribution of renin-containing (RC) cells were investigated immunohistochemically in mouse and pig embryos. The RC cells of the mouse embryo were first observed at the 13th day of gestation at the walls of the renal, the mesonephric, the adrenal, the abdominal arteries, the adrenal glands and the testis. As the gestation of the mouse progressed, the RC cells had a tendency to localize in areas of the vascular pole of the metanephric glomerulus. In pig, when CRL was 0.8-2.0 cm, RC cells first appeared at the ventral walls of the dorsal aorta, the omphalo-mesenteric (i.e., the cranial mesenteric), the mesonephric, the mesonephric afferent glomerular arteries/arterioles and the inside of the mesonephric glomerulus. As the length of the pig embryo increased, no renin-immunoreactivity could be demonstrated at the degenerated mesonephros, while in the metanephros marked immunoreactivities were found only at the terminal regions of intralobular arteries, i.e., afferent arterioles or the vascular pole of the glomerulus.

Animals↗

Morphology of blood cells in carp (Cyprinus carpio L.).

The morphology of blood cells in the carp was investigated by light and electron microscopy. Erythrocytes, thrombocytes, lymphocytes, granulocytes and monocytes were identified as the peripheral blood cells. Thrombocytes were round to long oval, each containing vesicular and microtubular structures and an oval nucleus with abundant heterochromatins. Lymphocytes were divided into three types in size, small, medium and large. Some of the small and medium lymphocytes were alpha-naphthyl-acetate esterase (ANAE) positive, while large lymphocytes were pyroninophilic. Granulocytes were distinguished into three types (type I, type II and type III) according to the morphology of the nucleus and granules. Type I granulocytes possessed lobulated nuclei and a large number of cytoplasmic granules, each of which was oval and contained electron-dense materials and a crystalloid. Type II granulocytes had small eccentric nuclei and were subdivided into IIa and IIb granulocytes by electron microscopic analysis. Granules of type IIa granulocytes were furnished with an electron-dense rim. Granules of type IIb granulocytes were larger than those of type IIa, containing randomly distributed electron-dense and electron-lucent materials. Type III granulocytes possessed round nuclei and a few large granules. The granules were filled with regularly arranged fibriform materials and some needle-like structures. Monocytes were morphologically similar to those of mammals.

Animals↗

Effects of ligation of the ductus deferens on the fowl epididymal region.

The effects of ligation of the ductus deferens on the epididymis in the fowl were studied histochemically and immunohistochemically to reveal the mechanisms of sperm disposal. At one week post-ligation, the lumina of the rete testes (RT) and the efferent ductules (ED) were distended and filled with densely accumulated spermatozoa. Macrophages and foreign-body giant cells were aggregated in and around the accumulations. The epithelium regressed in the initial portion of the RT with the invasion of fibroblasts and heterophiles into the lumen. The other part of the epithelium was penetrated by many spermatozoa. Numerous lymphocytes and plasma cells infiltrated into the interstitium. At 4 weeks, larger number of spermatozoa agglutinated in the lumen, and large masses of foamy cells and proliferated connective tissue protruded into the lumen. At 8 weeks, large masses of foamy cells were noted. The connecting ductules or the epididymal duct showed no marked changes after ligation. The epithelium of the ED showed weaker or no acid phosphatase activity after ligation. Immunoglobulin G-containing cells increased in number in the interstitium. These results showed that ligation of the ductus deferens in the fowl causes granuloma in the RT and ED, and that epithelial cells, macrophages and granuloma are engaged in the removal of spermatozoa. The participation of antibody is suggested in the sperm disposal processes.

Animals↗

Histological study on seminal plasma absorption and spermiophagy in the epididymal region of domestic fowl.

Absorption of seminal plasma and spermiophagy in the fowl epididymal region were studied ultrastructurally and histochemically. Epithelial cells of the rete testis had sparse coated vesicles and rarely showed spermiophagy. Many macrophages in the lumen of the rete testis actively phagocytosed spermatozoa. Nonciliated cells in the proximal efferent ductules had well-developed microvilli, coated vesicles, numerous tubular structures, and lysosomes in their apical cytoplasm. They rarely contained fragments of spermatozoa. Intense alkaline phosphatase activity was observed at the luminal borders of these cells. Ciliated cells had no features indicating active absorption of seminal plasma. Epithelial cells of the connecting ductules and epididymal duct had numerous microvilli, a few vesicles, and small lysosomes. They did not contain spermatozoa. Intense acid phosphatase activity was observed on the luminal and lateral surfaces of the epithelial cells of the connecting ductules and epididymal duct. After injection of horseradish peroxidase into the excurrent ducts, a large amount of reaction product was detected in the vesicles and tubular structures of the nonciliated cells of the proximal efferent ductules. These results suggest that the absorption of seminal plasma occurred mainly in the efferent ductules, and that spermiophagy by macrophages occurred in the rete testis in the fowl epididymal region.

Absorption↗

[A portable manual sternal compressor for cardiac massage of a patient under transportation--1. Evolution after trials and errors].

Difficulties of external cardiac massage during transportation of a patient on a litter or stretcher prompted us to develop a new portable manual sternal compressor. A seemingly good idea of sternal compression with an inflatable balloon placed between the sternum and a chest band engaged us in a long ordeal of trial and error until we retreated from this preconception. A practical sternal compressor has finally been created by applying two hydraulic pistons, one as a sternal compressor and the other as its push-pull energizer incorporated into a manual lever system. In this paper, one of the serial reports on this new device, all our errors are described lest some one in the future meet the same problems. Details of this new apparatus and the results of our experimental study and clinical application will soon follow this paper.

Equipment Design↗