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Biomedical subjects

A Takeuchi

Publications and source records attributed to A Takeuchi.

At least 451 records · Page 25Linked to original sources

Infection by spirilla in the stomach of the rhesus monkey.

Light and electron microscopy showed gastric spirilla in the gastric mucosa of 45 clinically normal rhesus monkeys (Macaca mulatta). In paraffin sections, gastric spirilla were best shown by silver impregnation stains. When stained by hematoxylin and eosin (HE), gastric spirilla may be mistaken for strands of mucus. In thick sections of epon-embedded tissue, gastric spirilla looked like "corkscrews" with up to 12 coils. They were 8 microns long and 0.7 micron wide, and had characteristic bipolar flagella. They were concentrated in the gastric glands at the isthmus, were less common at the neck and base, and were absent in the gastric lumen. Gastric spirilla were associated closely with parietal cells and could penetrate their cytoplasm. Gastric spirilla elicit neither changes of host cytocomponents nor an inflammatory response in the gastric mucosa.

Animals↗

Infection of the colon of the rhesus monkey by spiral-shaped organisms.

Intestinal spirochetosis, an infection of the mucosa by spiral-shaped organisms, was studied in clinically normal rhesus monkeys (Macaca mulatta) by histology, transmission and scanning electron microscopy. The incidence of intestinal spirochetosis was 42% in 221 monkeys. Spiral organisms stained with hematoxylin and eosin (HE) appeared as a broad basophilic haze on the colonic surface and were strongly positive by the Warthin-Starry stain. Spiral-shaped bacteria include two structurally different organisms: spirochetes and flagellated microbes. They intimately populated the brush border of the surface of the epithelium of the large intestine. They were absent in the crypts and in the small intestine. Infection by spirochetes produced no alteration of cytocomponents of the underlying host structures. Spirochetes and flagellates infrequently penetrated beyond the brush border into the epithelial cytoplasm and also into the lamina propria. Even in cases where invasion was documented, no inflammatory response was found.

Animals↗

[Effects of pepleomycin (PEP) infused through bronchial artery for lung cancer: in comparison with the cases of mitomycin (MMC) or carboquon (CQ)].

(1) Therapeutic effects of bronchial artery infusion (BAI) of peplomycin (PEP), a derivative of bleomycin, were examined in the 13 patients with lung cancer. The effectiveness of PEP was compared with that of 59 patients treated with mitomycin (MMC) or carboquon (CQ). (2) In all cases treated with PEP, histopathological effects revealed to be more than grade IIa of Shimosato's criteria, which were more effective than that with MMC or CQ. (3) Histopathological changes of the metastatic lymph nodes were similar to that of the main tumor. (4) In the cases treated with PEP, tumor decreased rates shown in the chest X-ray films 2 weeks after BAI were lower than that with MMC or CQ. Cavity formation in the tumor was recognized in 62% of the cases treated with PEP. (5) Low fever lasting several days after administration of BAI and GI symptoms such as nausea and vomiting were main side effects, which were mild and not so serious.

Adenocarcinoma↗

Early colonic lesions in experimental Shigella infection in rhesus monkeys: revisited.

Rhesus monkeys (Macaca mulatta), given 3 X 10(8) to 5 X 10(10) Shigella flexneri 2a orally, developed signs of acute shigellosis within 24 hours. A diffuse acute colitis was well established at 48 hours. The inflammatory reaction was confined to the mucosa. The submucosa showed only edema. The shigellae were found predominantly in the columnar cells of the surface epithelium, less frequently in those of the crypt, and least frequently in the lamina propria. Shigella bacilli invaded the columnar cells from the intestinal lumen. The bacilli multiplied within epithelial cells and spread laterally to adjacent epithelial cells and penetrated the lamina propria. The bacterial invasion affected epithelial cells unevenly and resulted in the disappearance of goblet cells and pyknotic shrinkage of the surface epithelial cells. Epithelial cells had abnormal and accelerated exfoliation which resulted in multifocal epithelial defects. There was a distinct correlation between the quantity of bacilli present in tissues and the intensity of the inflammatory response. The small intestines were spared.

Animals↗

Infection by spirilla in the stomach of the rhesus monkey.

Light and electron microscopy showed gastric spirilla in the gastric mucosa of 45 clinically normal rhesus monkeys (Macaca mulatta). In paraffin sections, gastric spirilla were best shown by silver impregnation stains. When stained by hematoxylin and eosin (HE), gastric spirilla may be mistaken for strands of mucus. In thick sections of epon-embedded tissue, gastric spirilla looked like "corkscrews" with up to 12 coils. They were 8 microns long and 0.7 microns wide, and had characteristic bipolar flagella. They were concentrated in the gastric glands at the isthmus, were less common at the neck and base, and were absent in the gastric lumen. Gastric spirilla were associated closely with parietal cells and could penetrate their cytoplasm. Gastric spirilla elicit neither changes of host cytocomponents nor an inflammatory response in the gastric mucosa.

Animals↗

Infection of the colon of the rhesus monkey by spiral-shaped organisms.

Intestinal spirochetosis, an infection of the mucosa by spiral-shaped organisms, was studied in clinically normal rhesus monkeys (Macaca mulatta) by histology, transmission and scanning electron microscopy. The incidence of intestinal spirochetosis was 42% in 221 monkeys. Spiral organisms stained with hematoxylin and eosin (HE) appeared as a broad basophilic haze on the colonic surface and were strongly positive by the Warthin-Starry stain. Spiral-shaped bacteria include two structurally different organisms: spirochetes and flagellated microbes. They intimately populated the brush border of the surface of the epithelium of the large intestine. They were absent in the crypts and in the small intestine. Infection by spirochetes produced no alteration of cytocomponents of the underlying host structures. Spirochetes and flagellates infrequently penetrated beyond the brush border into the epithelial cytoplasm and also into the lamina propria. Even in cases where invasion was documented, no inflammatory response was found.

Animals↗

Release of glutamate from the crayfish neuromuscular junction.

1. The superficial abdominal flow flexor muscle was isolated from the crayfish (Cambarus clarkii) and placed in a bath solution of 100 microliters. The concentration of glutamate in this solution was measured by mass fragmentography using a gas chromatograph-mass spectrometer. 2. The excitatory post-synaptic potential (e.p.s.p.) of the slow flexor muscle and its sensitivity to L-glutamate were similar to those observed in the opener muscle of the dactyl in the walking leg or claw of the crayfish. 3. The background efflux of glutamate during control rest periods was about 20 p-mole/10 min. Nerve stimulation caused a significant increase in the efflux of glutamate. The net release of glutamate above the background was 11.9 p-mole/100 microliters. at 10 Hz stimulation and 21.1 p-mole/100 microliters. at 20 Hz stimulation. 4. When the amplitude of e.p.s.p. was decreased by streptomycin, thereby reducing the muscle contraction, the net release of glutamate by nerve stimulation was not changed. Streptomycin depressed the e.p.s.p. by its action on the post-synaptic membrane. 5. When the external concentration of Ca was lowered, the amplitude of e.p.s.p. and the net release of glutamate were decreased. 6. It is concluded that L-glutamate is released from the nerve terminals of the crayfish neuromuscular junction.

Animals↗