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Biomedical subjects

T Tomiuga

Publications and source records attributed to T Tomiuga.

5 recordsLinked to original sources

[Automatic determination for bone morphometry using a computed image analyzer].

An image analyzer which combines a digitizer and a computer is widely employed in bone histomorphometrical evaluation. With this method, however, all regions of determination are traced manually so that considerable time is consumed when many preparations are measured. To resolve this problem, we have developed an automatic program for rapid and quantitative measurement of many bone histomorphometrical parameters using a computed color image analyzer. The bone volume (BV), tissue volume (TV), osteoid surface (OS), and the bone surface (BS) of rat tibia metaphysis were measured by this automatic method, and by the manual method using an image analyzer. The correlation coefficient between both methods in measuring BV/TV was 0.98 and in measuring OS/BS was 0.96. The reproducibility and accuracy of both methods for these parameters were similar. The time required for the automatic method was much shorter than that for the manual method. Various parameters of the tibial metaphysis, lumbar vertebral body, and femoral mid-diaphysis in ovariectomized rat (Fischer) measured by this method were in good agreement with values reported previously.

Animals

[Influence of vitamin D3 on inhibitory effect of vitamin K2 on bone loss in ovariectomized rats].

To evaluate whether the vitamin D3 level in the plasma influences the inhibitory effect of vitamin K2 on bone loss, vitamin K2 (25 mg/kg/day) was administered to ovariectomized (OVX) rats fed a diet containing vitamin D3 (V.D.(+)) or a diet deficient in vitamin D3 (V.D.(-)). After 3 months of treatment, the plasma 25-OH-vitamin D3 (25-OH-D3) level in the V.D(-)-sham group was about 1/3 of that in the V.D(+)-sham group. The plasma calcium level and alkaline phosphatase activity were also significantly lower in the V.D(-)-sham group than in the V.D(+)-sham group. In the V.D(+) group, the plasma 25-OH-D3 level in the vitamin K2 group was about 1.5 times higher than that in the OVX-control group. Ovariectomy resulted in a significant decrease in bone density, bone mineral content (BMC) and bone mineral density (BMD) of femurs in both the V.D(+) and V.D(-) groups. In the V.D(-) group, vitamin K2 had no marked effect on the bone loss. In the V.D(+) group, the bone density and BMD in the mid portion of the femur were significantly increased by vitamin K2 treatment. These findings suggest that the effect of vitamin K2 on bone loss is affected by the vitamin D3 level in the plasma.

Animals

Effects of menatetrenone on the decrease in calcium balance induced by vitamin K-deficient diet and sodium loading in rats.

The effects of menatetrenone (2-methyl-3-tetraprenyl-1,4-naphthoquinone, MK-4) on calcium balance were studied in male Sprague-Dawley rats. Experiment 1: Rats in metabolic cages that were fed a vitamin K-deficient diet and injected daily with latamoxef (100 mg/kg, i.p.) were either treated or untreated with MK-4 for 7 days. Daily food intake, urine volume and feces weight were determined, and calcium concentration in these samples was measured. Calcium balance was calculated as the difference between calcium intake and urinary and fecal calcium excretion. Cumulative calcium balance in the vitamin K-deficient group treated with latamoxef was lower than that in normal rats; this balance was significantly improved by MK-4 (1 and 10 mg/kg, s.c.) administered for 7 days. Experiment 2: Rats were fed a vitamin K-deficient diet containing 4.6% sodium chloride for 6 weeks. MK-4 was administered as a dietary supplement. Forty-eight-hour calcium balance, determined once a week, was significantly reduced compared with that of normal rats after 3 and 5 weeks; the balance was restored dose-dependently by MK-4 administration (1 and 10 mg/kg). Experiment 3: Rats were subjected to the same experimental conditions as experiment 2 for 6 weeks, and intestinal calcium transport was determined using an everted gut-sac technique. Calcium transport was reduced by the high sodium, vitamin K-deficient diet, and this reduction was restored by MK-4 administration (10 mg/kg). These results suggest that MK-4 improves the reduced calcium balance by increasing intestinal calcium absorption in these rats.

Alkaline Phosphatase