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A Ruiz-Marcos

Publications and source records attributed to A Ruiz-Marcos.

26 records · Page 2Linked to original sources

Thyroxine treatment and recovery of hypothyroidism-induced pyramidal cell damage.

We have previously shown that changes occur in pyramids of area 17 of the rat visual cortex both after thyroidectomy (T) at 10 and at 40 days of age. To assess the effects of thyroxine treatment, instituted at different ages after T, two series of experiments were performed. A : rats were T at 10 days of age and either left untreated, or injected once daily with 1.5 micrograms thyroxine (T4)/100 g body weight. Treatment was started at 12, 15, 20, 30 or 40 days of age. Groups of untreated and T4-treated T rats and of age-paired intact controls were killed at different ages, ranging from 40 to 80 days. B : rats were T at 40 days of age, a group being treated with the same T4 dose starting 30 days after T. These animals, solvent-treated T rats and intact age-paired controls were killed at 90 days of age. The number and distribution of spines along the shaft of Golgi-stained pyramidal cells of the visual cortex were measured and fitted by a mathematical model developed previously. Body weights, pituitary growth hormone contents, plasma thyrotropic hormone, thyroxine and triiodothyronine levels were measured to assess the degree of hypothyroidism. It was found that treatment with T4 of rats T at 10 days of age prevented the alterations of pyramidal cells, provided treatment was started by 12 days of age and euthyroidism was maintained. In rats T at 40 days of age, treatment with T4 had an ameliorating effect despite a delay in onset of treatment of 30 days after T. Whatever the mechanisms which are involved, the present results stress once more the importance of very early treatment of hypothyroid newborns, if permanent cortical brain damage is to be prevented.

Animals↗

Reversible morphological alterations of cortical neurons in juvenile and adult hypothyroidism in the rat.

We have studied: (i) whether or not hypothyroidism induced experimentally in the adult rat affects the number and distribution of spines along the apical shaft of pyramidal cells from the visual cortex; and (ii) whether treatment with thyroid hormone would reverse such changes. Two experiments were performed. Experiment A involved the study of rats which were thyroidectomized (T) at 40 or at 120 days of age, killed at 120 and 220 days of age, respectively, data being compared to those of adequate sex and age-paired controls. Experiment B involved rats which were T at 40 days of age; they were subdivided into two groups, one of which was left untreated and the other received 0.2 microgram of thyroxine/100 g body weight/day for 25 days. Both groups were killed at 90 days of age. We found that: (i) T at 40 and at 120 days of age resulted in a decrease of the number of spines and a derangement of their distribution along the shaft, the observed changes being qualitatively comparable to those previously described for rats T at 10 days of age; and (ii) preliminary results from experiment B indicate that the observed changes in neuronal morphology might be reversible. It is suggested that age-independent and reversible alterations of learning capacity and electrocortical activity of hypothyroid rats might have age-independent and reversible morphological correlates at the level of the cortex.

Age Factors↗

Severe hypothyroidism and the maturation of the rat cerebral cortex.

In order to study the influence of hypothyroidism on the maturation of the visual cortex, rats were thyroidectomized (T) surgically at 10 days of age and injected with 131I within 2 days after the operation. These T rats, and age-paired controls (C), were killed at 20, 25, 30, 40 and 80 days of life. The groups of T rats were subdivided into 'severely' hypothyroid and hypothyroid animals, on the basis, respectively, of complete or incomplete stasis of body growth and depletion of pituitary growth hormone stores. The pyramidal cells of the visual coretx of 'severely' hypothyroid rats were studied separately from those of hypothyroid animals. It was found that the number of spines along the apical shaft of such cells was markedly and equally reduced in all of the T rats, as compared to C rats, irrespective of the degrees of hypothyroidism attained, and stopped increasing in number by 30 days of age. From this age onwards, the distribution of the spines could no longer be fitted by a mathematical model31 which, however, adequately described for normal rats the developmental changes which take place with increasing age in the distribution of spines along the shaft of pyramidal cells from the visual cortex. This lack of fit was only found for the 'severely' hypothyroid animals; data from the other hypothyroid animals could still be fitted by the model. Such data show that the above-mentioned model31 may be a useful tool for the study of the intensity of the effects of hypothyroidism on the maturation of cortical neurons.

Age Factors↗