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Biomedical subjects

Mako Isaji

Publications and source records attributed to Mako Isaji.

4 recordsLinked to original sources

Transient Graves disease developing after surgery for Cushing disease.

A 49-year-old man, diagnosed as having Cushing disease in 1976 at the age of 26, underwent a Hardy operation 13 years after treatment with reserpine combined with pituitary radiation. In laboratory examinations before and 2 weeks after the successful surgery, the patient's serum thyroid hormones were found to be normal except for suppressed serum thyroid-stimulating hormone (TSH), and his serum anti-TSH receptor (TRAb) and anti-TSH receptor-stimulating antibodies (TSAb) were negative. Glucocorticoid supplemental treatment was withdrawn on the 15th day after surgery and was restarted on the 48th day, during which time there were no signs of an adrenal crisis. Sinus tachycardia, fine finger tremor, and enlarged thyroid gland, approximately the size of a thumb head, were observed on the 140th day after surgery. Thyrotoxicosis with increased serum TSAb and TRAb and high 24-h thyroid uptake of 123I was noted, indicating a diagnosis of Graves disease. No special treatment was prescribed, but his serum thyroid hormone levels started to decrease on the 140th day after the operation and returned to normal on the 520th day. Serum TRAb also spontaneously decreased, but the timing of the peak of serum TRAb was delayed 230 days from that of the thyroid hormones. This is the first reported case of Graves disease after successful surgery for Cushing disease. We presume that a latent autoimmune process in the thyroid, suppressed by hypercortisolism, developed into overt Graves disease after the abrupt reduction of plasma glucocorticoid levels induced by surgery.

Adult↗

Altered corticosteroid metabolism differentially affects pituitary corticotropin response.

To evaluate the effects of altered corticosteroid metabolism on the hypothalamic-pituitary-adrenal axis, we examined rats treated with glycyrrhizic acid (G rats) or rifampicin (R rats) for 7 days. The half-life of exogenously administered hydrocortisone as a substitute for corticosterone was longer in G rats and shorter in R rats, with no differences in basal plasma levels of ACTH or corticosterone. The ACTH responses to human corticotropin-releasing factor (CRF) or insulin-induced hypoglycemia were greater in G rats and tended to be smaller in R rats compared with those in the control rats, whereas the corticosterone response was similar. No difference was observed in the content and mRNA level of hypothalamic CRF among the groups. The number and mRNA level of CRF receptor and type 1 11 beta-hydroxysteroid dehydrogenase (11-HSD1) mRNA level in the pituitary were increased in G rats but not changed in R rats, suggesting that chronically increased intrapituitary corticosterone upregulates pituitary CRF receptor expression. In contrast, CRF mRNA levels in the pituitary were increased in R rats. Our data indicate novel mechanisms of corticosteroid metabolic modulation and the involvement of pituitary 11-HSD1 and CRF in glucocorticoid feedback physiology.

11-beta-Hydroxysteroid Dehydrogenases↗

Lingual thyroid.

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Child↗