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Biomedical subjects

K Harayama

Publications and source records attributed to K Harayama.

11 recordsLinked to original sources

Effects of feeding rats low protein diets containing casein or soy protein isolate supplemented with methionine or oligo-L-methionine.

The effects of supplementing 8% casein or 10% soy protein isolate (SPI) diets with graded levels of oligo-L-methionine (a mixture of hexa- and heptapeptides, OM) or L-methionine (Met) were studied in rats to determine the reason for the difference in nutritional quality between proteins and corresponding amino acid mixtures. As the OM concentration of the casein-based diet was increased from 0.02% to 0.6%, maximum weight gain was attained at 0.2%, and the growth-promoting activity of OM was comparable to Met at all the corresponding levels tested. Liver fat began to accumulate when supplemental Met reached a level of 0.08% of the casein diet, but OM addition did not produce a fatty liver at dietary levels of less than 0.3%. When SPI was used as the dietary protein source, the effect of supplemental OM was significantly less than that of Met. Digestibility of OM (assessed by incremental portal plasma Met concentration) was measured 30 min after feeding the casein or SPI diet supplemented with 3% OM using rats fasted for 24 h. Plasma Met concentration was greatly increased in rats fed the casein plus OM diet compared with that of rats fed the SPI + OM diet. Similarly, the 30-min portal Met concentration significantly increased in response to the casein + OM diet compared with the SPI + OM diet regardless of the prefed proteins (25% casein and 25% SPI for 2 wk).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids

Massive periretinal proliferation in retinal detachment in relation to diabetes mellitus.

The relationship between the 'diabetic state' and massive periretinal proliferation (MPP) in idiopathic retinal detachment was examined. In 18 (3.5%) of 508 cases of idiopathic retinal detachment, MPP occurred before or after retinal detachment surgery. In 24 cases of retinal detachment, a diabetic or suspected diabetic state was found. 11 of the 24 were receiving treatment for diabetes and never developed MPP, while 5 of the 13 patients who were not being treated had MPP. This suggests that MPP in retinal detachment may easily be induced by the diabetic state and prevented by treatment for diabetes. Additional causes of MPP in retinal detachment were giant tears, massive vitreous hemorrhages at operation and frequent recurrence.

Diabetes Complications

Long-term results of retinal detachment surgery.

Patients treated successfully with retinal detachment surgery 11-39 years earlier were called back and examined. The average age was 35 years at the time of surgery and the average interval between the operation and this follow-up examination was 16 years. The visual acuity had decreased in many patients. The most frequent causes of this fall in visual acuity after surgery were cataract and macular degeneration. Chorioretinal atrophy with blackish pigment spots developed in the reattached retina a long time after surgery and caused defects in the visual fields. This atrophy seems to be related to the long duration of retinal detachment before and after operation, which may cause malnutrition of the detached retina and result in incomplete recovery of visual cells, leading to chorioretinal atrophy. Macular degeneration was caused or accelerated by detachment of the macula. There was no difference in postoperative ocular findings between only diathermy and combination of diathermy with segmental scleral-buckling procedures. However, Arruga's ring suture method induced cataract more frequently than did other surgical procedures.

Adolescent