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Biomedical subjects

T Murai

Publications and source records attributed to T Murai.

At least 307 records · Page 17Linked to original sources

Dirofilaria immitis infection in man: report of a case of the infection in heart and inferior vena cava from Japan.

Two slender nematodes were incidentally found at autopsy in the heart and inferior vena cava of a 36-year-old Japanese man who died of liver cirrhosis. The parasite from the heart measured 29.5 cm by 0.87 mm, and that from the inferior vena cava 26.5 cm by 0.85 mm. The worms were identified as non-gravid adult female Dirofilaria immitis. This is the fourth case of infection with D. immitis in the heart and large vessels.

Adult↗

[Modification of hepatotoxic effect of halogenated hydrocarbons on partially hepatectomized rats (author's transl)].

The effect of hepatectomy on the hepatotoxic effect of halogenated hydrocarbons was studied. Male rats received oral administration of chloroform of carbon tetrachloride at a single dose of 500 mg/kg, 3 days prior to or after the partial hepatectomy. The hepatotoxic effect of the toxins was modified in a different manner according to the time of the hepatectomy. In the animals hepatectomized 3 days after the hepatotoxins administration, histological changes of the liver were similar to those of the non-hepatectomized rats, except with an increase in the activity of GOT and GPT. Contrary, in the animals hepatectomized 3 days prior to the hepatotoxins administration, the toxic effect of the chemicals was less enhanced than in the non-hepatectomized animals.

Alanine Transaminase↗

Pyridoxine requirements of channel catfish.

In 20 and 12 week feeding trials, channel catfish fingerlings were fed purified diets containing five levels (0, 5, 10, 20, and 30 mg/kg) and six levels (0, 1, 2, 5, 10, and 20 mg/kg) of supplemental pyridoxine hydrochloride. Fish fed unsupplemented diets (pyridoxine content of 1.2 mg/kg) were characterized by anoxeria, nervous disorders, tetany, greenish-blue body coloration, and eventual mortality. Anemia, which has been reported in pyridoxine deficient salmonids, was not observed in pyridoxine deficient catfish. However, a microcytic, normochromic anemia was observed in groups fed high dietary levels of pyridoxine (20 mg/kg or greater). The dietary pyridoxine level required for maximal growth was approximately 3 mg/kg of diet. All other deficiency signs were prevented by 2.2 mg/kg of diet.

Animals↗

Pantothenic acid requirements of channel catfish fingerlings.

In 8- and 12-week feeding trials, channel catfish fingerlings were fed purified diets containing four levels (0, 10, 30 and 60 mg/kg) and six levels (0, 5, 10, 20, 40 and 80 mg/kg) of supplemental calcium pantothenate, respectively. The dietary pantothenate level required for maximal growth, feed conversion and prevention of gross deficiency signs was approximately 10 mg/kg of diet. Fish fed the unsupplemented diet showed severe anorexia, loss of weight, clubbed gills, anemia, high mortality rates and eroded skins, lower jaws, fins and barbels. Fused gill filaments were not obtained as reported in pantothenate deficient salmonids.

Animals↗

Thiamin requirement of channel catfish fingerlings.

In separate 20 and 12 week feeding studies, channel catfish fingerlings were fed semipurified diets containing five levels (0, 2.5, 5.0, 10.0 and 15.0 mg/kg) and six levels (0, 0.5, 1.0, 2.5, 5.0 and 10.0 mg/kg) of supplemented thiamin hydrochloride respectively. The dietary thiamin level required to provide maximal growth and prevent deficiency symptoms in channel catfish fingerlings was found to be approximately 1 mg/kg of diet. Fish fed unsupplemented diets (thiamin content of less 1 mg/kg diet) demonstrated anorexia, extremely poor growth, dark coloration of the skin and increased mortality rates. Neurological symptoms were not observed. Histological examinations of the heart, hepatopancreas, kidney, lateral muscle, gastrointestinal tract and gills of deficient fish revealed no abnormalities.

Animals↗

Use of -l-ascorbic acid, ethocel coated ascorbic acid and ascorbate 2-sulfate in diets for channel catfish, Ictalurus punctatus.

Purified diets with five levels (25, 50, 75, 100, and 200 mg/kg) of supplemental L-ascorbic acid (LAA), and equimolar levels of ethylcellulose coated L-ascorbic acid (EAA) and dipotassium L-ascorbate 2-sulfate dihydrate (AS) were pelleted and fed to 7.9 +/- 0.2 g channel catfish fingerlings for 20 weeks. A dietary level of 23 mg/kg of all three forms of vitamin C prevented spinal abnormalities. Approximately 50 mg/kg diet of either LAA or EAA was sufficient for maximal growth and feed efficiency. Growth response to AS was similar to a Michaelis-Menten type curve and 200 mg/kg diet of AS was necessary to achieve maximal growth. Blood and liver ascorbic acid levels were positively correlated with supplemental levels of LAA, EAA, and AS up to 200 mg/kg; however, blood and liver ascorbic acid levels of fish fed AS were considerably less than those fed LAA and EAA. Weight gains were positively correlated with blood ascorbate levels up to 7 microgram/ml. No measurable level of AS was detected in blood or liver. These results suggest that the rate of enzymatic hydrolysis of AS to LAA or rapid excretion of AS may have been the limiting factor.

Animal Feed↗

Dietary niacin requirements for channel catfish.

Channel catfish fingerlings were fed purified diets containing five levels (0, 25, 50, 100, and 150 mg/kg) and six levels (0, 5, 10, 25, 50, and 100 mg/kg) of supplemental niacin in 20 and 12 weeks feeding studies, respectively. The dietary niacin level required to provide maximal growth in rapidly growing channel catfish fingerlings was found to be approximately 14 mg/kg of diet. Fish fed unsupplemented diets (niacin content of 1.6 mg/kg diet) demonstrated poor growth, anemia, skin and fin lesions and hemorrhages, exophthalmia and total mortality in 20 weeks. Mortality and gross deficiency signs were prevented by 11.6 mg niacin/kg diet and anemia was prevented by 6.6 mg/kg. No histological abnormalities were observed in the heart, hepatopancreas, kidney, lateral muscle, gastrointestinal tract and gill tissues of deficient fish.

Animals↗

Riboflavin requirement of channel catfish fingerlings.

Channel catfish fingerlings were fed purified diets containing five levels (0, 20, 40, 80, and 120 mg/kg) and six levels (0, 3, 8, 20, 40, and 80 mg/kg) of riboflavin in separate 20 and 12 week feeding studies. The dietary riboflavin level required to provide maximal growth in channel catfish fingerlings was found to be approximately 9 mg/kg of diet. All fish fed unsupplemented diets (riboflavin content less than 0.1 mg/kg diet) demonstrated a short body dwarfism which was the result of arrested longitudinal growth of the vertebrae. This abnormality did not occur in groups fed 3 mg/kg or higher levels of riboflavin. No histological abnormalities were recognized in the liver, kidney, lateral muscle, gastrointestinal tract, gills, or bones of deficient fish.

Animals↗

Photosensitivity due to a fluorouracil derivative.

A photosensitive lichen planus-like eruption developed in a 63-year-old man during postoperative chemotherapy with 1-(2-tetrahydrofuryl)-5-fluorouracil. The action spectrum for the photosensitivity was in the long-wave ultraviolet light (UV-A). The reaction was reproducible on readministration of the drug and exposure to UV-A. At the time of this test, a flare-up phenomenon was observed at previously involved sites. The photopatch test was negative with the drug. Patients taking the drug who had no dermatitis were not sensitive to UV-A. These observations suggest that the photosensitivity that occurred in the patient was possibly photoallergic.

Fluorouracil↗

An ultrastructural study of the epidermis in hyperkeratosis lenticularis perstans.

A 60-year-old Japanese man contracted hyperkeratosis lenticularis perstans (Flegel). Biopsy specimens of the keratotic papules on the dorsa of the feet were studied with electron microscopy. An increase in the number of membrane coating granules, keratohyalin granules and tonofilaments was the most prominent feature of the keratinocytes underlying the keratotic papule. However, in the area just above the cone-shaped dermal infiltration, membrane coating granules were absent and keratohyalin granules and tonofilaments were poorly developed.

Arm↗