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Kumiko Tsuboi

Publications and source records attributed to Kumiko Tsuboi.

4 recordsLinked to original sources

The relation of initial methimazole dose to the incidence of methimazole-induced agranulocytosis in patients with Graves' disease.

The relation between the incidence of methimazole (methylmercaptoimidazole; MMI)-induced agranulocytosis and initial MMI dose was evaluated in a group of 514 patients with Graves' disease who were treated between 1995 and 2005. One hundred and forty-six (28.40%) patients had received an initial dose of 30 mg MMI and 277 (53.89%) patients had been treated with 15 mg MMI. Nine patients (1.75%) developed agranulocytosis due to MMI treatment. Six (4.11%) of 146 patients who received an initial dose of 30 mg MMI, two (4.54%) of 44 patients given an initial dose of 20 mg MMI, and one (0.36%) of 277 patients given an initial dose of 15 mg MMI developed agranulocytosis. There was a statistically significant difference in agranulocytosis incidence between patients receiving an initial dose of 30 mg MMI and those who received an initial dose of 15 mg. Although 8 (4.10%) of 195 patients in the high-dose group (20 mg or higher) developed agranulocytosis, only 1 (0.31%) of 319 patients in the low-dose group (15 mg or lower) did. In conclusion, the incidence of agranulocytosis with low-dose MMI therapy was ten times lower than that of the high-dose regimen.

Adolescent↗

[Myxedema coma].

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Coma↗

Comment: the corticotropin-releasing hormone stimulation test in white coat hypertension.

This study was undertaken to clarify the status of the ACTH and cortisol responses to CRH in patients with white coat hypertension. White coat hypertension was defined as a difference between clinic blood pressure and ambulatory blood pressure of at least 20 mm Hg for systolic blood pressure and/or 10 mm Hg for diastolic blood pressure. CRH stimulation tests were performed between 1400 and 1700 h in 11 patients with white coat hypertension (4 males and 7 females) and 11 normal subjects (4 males and 7 females). Blood pressure and heart rate were measured 15 min before, at time zero, and 15, 30, 60, and 120 min after initiation of the CRH stimulation tests. In white coat hypertension, both the mean systolic blood pressure (162 +/- 15 mm Hg) and diastolic blood pressure (97 +/- 10 mm Hg) were higher than in controls (P < 0.01) on 3 occasions. The mean ambulatory blood pressure for the 24-h period of the test did not differ between patients with white coat hypertension and normal subjects. Basal levels of ACTH and cortisol did not differ between patients with white coat hypertension and control subjects. However, challenge with CRH elevated ACTH (30 min) and cortisol (30, 60, and 120 min) to levels higher than those in controls, with the net increase in both ACTH and cortisol being higher than that in controls over the study period (P < 0.01). These significant responses suggest that white coat hypertension is associated with hypothalamic-pituitary-adrenal hypersensitivity to stressors.

Adrenocorticotropic Hormone↗

Decreased steroidogenic enzyme 17,20-lyase and increased 17-hydroxylase activities in type 2 diabetes mellitus.

OBJECTIVE: To analyze activities of adrenal steroidogenic enzymes in type 2 diabetes mellitus, serum levels of 11 steroid hormones were measured simultaneously. SUBJECTS: We studied 130 patients with type 2 diabetes mellitus (74 men and 56 women between the ages of 40 and 69 years), whose blood glucose control had been poor (more than 10% in HbA(1c)). Age-matched normal subjects served as the control group. METHODS: Serum levels of steroid hormones (pregnenolone (Preg), progesterone (Prog), deoxycorticosterone (DOC), corticosterone (B), 17-hydroxypregnenolone (17-OH-Preg), 17-hydroxyprogesterone (17-OHP), 11-deoxycortisol (S), cortisol (F), dehydroepiandrosterone (DHEA) and Delta4-androstenedione (Delta4A)) were measured by HPLC/RIA methods. Fasting plasma glucose (FPG), HbA(1c), ACTH, serum immunoreactive insulin (IRI) and DHEA sulfate (DHEA-S) were also measured. We analyzed product/precursor ratios to assess relative activities of adrenal steroidogenic enzymes. RESULTS: Serum levels of ACTH and F were high and DHEA and DHEA-S were low in both male and female patients under poor blood glucose control. Following 6-months treatment with diet only or with sulfonylurea, FPG and HbA(1c) improved, and blood concentrations of ACTH and F decreased while DHEA and DHEA-S levels increased to within the normal range. DHEA/17-OH-Preg and Delta4A/17-OHP ratios, reflecting 17,20-lyase activity, were low before treatment and recovered to the normal range after treatment, and 17-OH-Preg/Preg and 17-OHP/Prog ratios, reflecting 17-hydroxylase activity, were high before treatment, and fell within the normal range after treatment. 3beta-Hydroxysteroid dehydrogenase, 21-hydroxylase and 11beta-hydroxylase activities remained within the normal range both before and after treatment. CONCLUSIONS: These data suggest that the decrease in DHEA and DHEA-S concentrations together with the high F levels that occur in patients with type 2 diabetes mellitus is associated with low 17,20-lyase and high 17-hydroxylase activity in the adrenal steroidogenic enzymes. High insulin concentrations may further lower DHEA and DHEA-S levels.

Adrenal Glands↗