Light-induced circadian rhythm in the number of white blood corpuscles in the peripheral blood of rats.
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Biomedical subjects
Publications and source records attributed to Y Takeo.
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The role of the pineal gland in inducing and maintaining the persistent estrus of rats exposed to continuous illumination was examined. Under the cyclic illumination, the pinealectomy or sham-operation revealed no effect on the estrous cycle, although weights of the ovaries, adrenals and hypophysis were slightly but definitely greater in the pinealectomized animals. In rats exposed to the continous illumination immediately after pinealectomy or sham-operation, both groups exhibited the persistent estrous states soon after the change of lighting condition. In these rats, neither the degree of persistent estrus nor the organ weights a autopsy showed any significant difference between the groups. Moreover, the pinealectomy could not alter the incidence of estrous in persistent estrous rats which had been established already by the continuous illumination.
The rats brought up under continuous illumination from the neonatal day persist in the rhythmic estrous cycle for long time and do not easily reveal so-called continuous vaginal estrus. On the contrary, immature rats at about 30 days of age show the persistent estrus soon after exposure to continuous illumination as well as adult rats. The purpose of this paper was to examine the relation of the age placed under continuous illumination and the time required to reach the persistent estrus. As the results, it was found that the younger rats need proportionally the longer time to reach the persistent estrus; the rats which were transferred into continuously illuminated environment at 0 (group A), 5 (group B), 10 (group C), 15-16 (group D) and 30 (group E) days of age required a mean time of 132.1 +/- 8.4, 126.8 +/- 8.9, 89.7 +/- 6.2, 91.5 +/- 3.8 and 70.3 +/- 3.0 days after birth to reach the persistent estrus, respectively. In the present data, a significant difference was seen between group B and C. Though all rats were killed after the same length of persistently estrous periods, actual endocrine level appeared to differ among the groups; the rats required longer time to reach the persistent estrus had smaller ovaries and adrenals.
Effects of monoamines or its precursors on the induction of persistent estrus by testosterone propionate (T.P.) were studied in Wistar strain female rats. Daily treatment with 5-hydroxytryptophane (5-HTP) for the first 10 days of life delayed the occurrence of persistent estrus in rats given T.P. at 4 days of age. The onset of persistent estrus occurred in this group of animals at 67.1+/-2.5 days of age compared with 45.1+/-1.4 days of age for the saline treated control group. The role of hypothalamic monoamines in contributing to the induction of persistent estrus by T.P. treatment of neonatal rats is discussed.
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Transections of the brain of rabbit reveal that electroencephalographic arousal produced by injections of adrenaline takes place at the midbrain level, while mescaline and 3,4-dimethoxyphenylethylamine induce such arousal lower in the brainstem, at the medullary level.
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One day after surgery groups of pinealectomized and sham-pinealectomized animals were placed in continuous darkness, and killed 0, 20, 40, 60, 80 and 100 days later. The data revealed that the sham-pinealectomized group exposed to constant darkness differs from pinealectomized group by showing lower dihydrotestosterone (DHT) concentrations, bw, accessory sex organ wt and levator ani muscle wt. No statistically significant differences were found in plasma LH, FSH and testosterone concentrations or pituitary or testes wt. The results indicated that the accessory sex organ wt were not correlated with the plasma gonadotropin and testosterone levels but they were with DHT. The data are consistent with the idea that some pineal principle acts directly on accessory sex organs in the rat.
The effect of pinealectomy on the circadian periodicity in plasma gonadotropins (LH and FSH), testosterone (T) and dihydrotestosterone (DHT) was investigated in adult male rats maintained under conditions of 12 h light/12 h dark (light on 06:00-18:00 h). Animals were killed at 3 hour intervals over 24 hours by decapitation. Plasma concentrations of LH, T and DTH (but not FSH) were found to exhibit significant circadian variations as determined by analysis of variance. No distinct LH or T nadir was recorded but peaks were observed at 09:00 h. Peak DHT values were recorded near the middle of the dark period. Pinealectomy resulted in an altered daily LH and T rhythmicity, and also in an abolished DHT rhythmicity. The fact that there was no significant increase in mean gonadotropin levels at 50 days after pinealectomy suggests that the pineal regulates the timing of gonadotropin secretion rather than the quantity. Since pinealectomy was found to abolish the circadian rhythm of DHT but not of T, we deduced that the pineal may also be responsible for the rhythmic conversion of T to DHT.