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Biomedical subjects

B B Jacobsen

Publications and source records attributed to B B Jacobsen.

At least 19 recordsLinked to original sources

Germ cell neoplasms in three intersex patients with 46,XY karyotype.

This report presents 3 cases with gonadoblastoma mixed with other germ cell tumours in intersex patients, all with a 46,XY karyotype. One 11-year-old patient was a true hermaphrodite, the others, aged 13 and 18, respectively, had both gonadal dysgenesis. Different clinical courses have been noted. Two patients had gonadoblastoma combined with dysgerminoma; in one of them a teratoma was also found. In the third case gonadoblastoma was transformed into teratocarcinoma. The malignant degeneration was more serious in the 2 pubertal patients. Thus, we recommend early and prophylactic gonadectomy.

Adolescent

Comparisons between serum concentrations of thyroxine and thyroxine-binding proteins in samples simultaneously obtained from capillary, peripheral vein, central vein and aorta in newborn infants.

A total number of 40 newborn infants with various maturity were studied: 13 babies without perinatal events, 19 infants recovered from transient diseases, 6 infants with idiopathic respiratory distress syndrome and 2 infants with asphyxia indicating artificial ventilation. Comparisons were performed between serum concentrations of thyroxine (T4), thyroxine-binding globulin (TBG), prealbumin (TBPA) and albumin (Alb) in capillary versus peripheral vein, aorta versus central vein and, finally, in peripheral versus central veins. In healthy infants serum T4 concentrations in capillary blood and peripheral vein did not differ significantly. Although serum concentrations of thyroid hormone-binding proteins tended to be increased in aortic compared to central venous specimens no statistically significant differences appeared. In infants in good clinical conditions serum T4, TBG, TBPA, and Alb levels were 6--8% higher in peripheral than in central veins, possibly primarily due to a hemo-concentrating effect of venous stasis. Therefore, in evaluation of the thyroid variables in newborn infants the technique of blood sampling must be considered. In most infants with idiopathic respiratory distress syndrome and in one asphyxiated baby a remarkable tendency to a low serum TBG and T4 concentration in peripheral compared to central vein samples were observed.

Aorta

Serum concentrations of thyroxine-binding globulin, prealbumin and albumin in healthy fullterm, small-for-gestational age and preterm newborn infants.

Simultaneous serum concentrations of thyroxine-binding globulin (TBG), prealbumin (TBPA) and albumin (Alb) were measured in 130 fullterm, 32 small-for-gestational age and 25 preterm infants during their first six days of life. In all infants serum concentrations of TBG were higher and serum TBPA and Alb were lower than in male adults. Even higher serum TBG levels were found in the mothers. There was no correlation between serum concentrations in paired maternal and cord sera. In infants with birth weights appropriate for gestation serum TBG, TBPA, and Alb concentrations increased progressively with gestational age. In small-for-gestational age infants born at term serum concentrations of TBG and Alb were lower than those in fullterm, but higher than those in premature newborns. Serum TBPA in small-for-gestational age babies was even lower than seen in prematures. A positive correlation was found between thyroid hormones and TBG concentrations, not between serum TBPA and thyroid hormones. The ratios between serum concentration of thyroid hormones and proteins might indicate that more thyroid hormonebinding sites are occupied in fullterm than in low birth-weight newborns. However, the main reason for the different serum levels of thyroid hormones in fullterm, small-for-gestational age and preterm babies is probably the various serum TBG concentrations demonstrated in these infants.

Birth Weight

Serum concentrations of thyrotropin, thyroid hormones and thyroid hormone-binding proteins during acute and recovery stages of idiopathic respiratory distress syndrome.

A total number of 27 premature infants with idiopathic respiratory distress syndrome (IRDS) and 52 healthy controls with comparable gestational age and body weights were studied during the first month of life. In infants with IRDS a reduced thyrotropin (TSH) response to birth was suggested, as serum TSH was lower in IRDS patients than in controls during the first two days of life. Low serum concentrations of thyroid hormones were found in the acute stage of IRDS reaching minimal values by day 3--5. After that period an increase in thyroid hormone levels occurred. The serum T2 increased to the level of healthy prematures by day 6--10, whereas the serum T4 increased to normal levels by day 21--30. Serum concentrations of thyroxine-binding globulin (TBG) were significantly lower in IRDS patients than in healthy controls; a gradual increase to normal levels occurred during recovery. Serum prealbumin (TBPA) levels in IRDS infants increased rapidly after birth and exceeded levels of healthy infants. Serum albumin values were not significantly different in the two groups of infants. The serum T4/TBG ratios were low during recovery from IRDS.

Humans

Changes in serum concentrations of thyroid hormones and thyroid hormone-binding proteins during early infancy. Studies in healthy fullterm, small-for-gestational age and preterm infants aged 7 to 240 days.

Serum concentrations of thyrotropin (TSH), thyroxine (T4), triiodothyronine (T3), thyroxine-binding globulin (TBG), prealbumin (TBPA) and albumin (Alb) were determined in 492 blood samples from 127 fullterm (FT), 91 small-for-gestational age (SGA) and 88 preterm (PT) healthy infants aged 7 to 240 days. Serum T4 decreased about 20% during the first month of life. In infants aged 7--49 days, serum T4 concentrations were significantly lower in SGA than in FT infants, and even lower values were found in PT infants. Serum T3 increased 50--70% reaching maximal values by 50--79 days of life. Serum T3 levels were higher in FT than in SGA infants throughout the observation period. In PT infants serum T3 increased from low values to levels which exceeded those of SGA and FT infants by 120--240 days of life. Serum TSH level did not change with age and was less than or equal to 5 mU/l in all infants. Serum TBG values were high compared to normal adult values and did not change significantly with age. Comparable serum TBG values were found in FT, SGA and PT infants. Serum TBPA increased with age. Serum TBPA increased gradually in FT infants. In SGA infants serum TBPA increased from low values to levels which by 120--240 days of life exceeded those of PT and FT infants. In PT infants a decrease in serum TBPA appeared before the rise commenced. Serum Alb increased gradually in FT, SGA and PT infants during the observation period. Serum Alb in PT infants aged 30--119 days was lower than those in FT infants with similar ages. These physiological changes in serum concentrations of thyroid hormones and hormone-binding proteins during early infancy should be considered when interpreting thyroid function tests in infants with various maturity.

Age Factors

Combined test of hypothalamic-pituitary function in growth-retarded children treated with growth hormone. II. Secretion of LH, FSH, TSH, prolactin and ACTH.

A total number of 23 patients treated with human growth hormone were retested by use of a combined pituitary stimulation test. Plasma concentrations of GH, FSH, LH, TSH, T4, T3, prolactin (PRL), ACTH and cortisol were measured before and after stimulation with hypoglycemia, TRH and LHRH. The test was performed in patients with persistent GH deficiency (group A) and patients with transitory GH deficiency (group B). In group A a normal pubertal development was found in three patients, whereas in prepubertal subjects the FSH/LH responses were smaller than those of prepubertal patients in group B. Also plasma ACTH increase was less pronounced in group A patients than in group B. In contrast, the plasma TSH and PRL responses were more sustained in group A than in group B. The secretory pattern of TSH and PRL was comparable in the two groups of patients. Thus, in patients with persistent GH deficiency additional multiple disturbances of the hypothalamic-pituitary function often appeared whereas in most patients with transitory GH deficiency the combined pituitary test was normal at the reinvestigation.

Adolescent

Combined test of hypothalamic-pituitary function in growth retarded children treated with growth hormone. I. Secretion of growth hormone and somatomedin before and after treatment.

In 23 growth retarded children two consecutive insulin tolerance tests (ITT) were performed to establish a diagnosis of growth hormone (GH) deficiency. Nine children did not respond (GH peak value less than 8 mU/1), whereas 14 were classified as having partial GH deficiency (GH peak value less than 20 mU/1). All were treated for an average period of 40 months with human growth hormone (HGH). In a combined stimulation test at the end of the treatment period 9 children demonstrated a persistent GH deficiency, whereas a normal response was found in 14 of the previous partial GH deficient children. During treatment the monthly growth rate rose from 0.21 cm 0.58 cm in the GH deficient children and from 0.31 cm to 0.70 cm in the partial deficient children, in most of whom spontaneous pubertal development occurred during treatment. Somatomedin (SM) values were decreased in the GH deficient children before and after treatment but increased to normal levels during treatment. Growth velocity in these children during treatment was correlated to SM values before treatment. In the partial GH deficient children SM values were subnormal before but normal after treatment. This supports the assumption that in some children with constitutional delay in puberty a reversible functional hypopituitarism exists, which is normalized after the onset of puberty, due to androgens sensitizing growth hormone releasing mechanisms. Treatment with HGH may induce increased growth velocity in some of these patients.

Body Height

Neonatal hypocalcaemia associated with maternal hyperparathyroidism. New pathogenetic observations.

A 32-day-old male infant had hypocalcaemic convulsions associated with asymptomatic maternal hyperparathyroidism. Very low total and ionised serum calcium, increased serum phosphate, and normal serum parathyroid hormone (PTH) and 25-hydroxycholecalciferol (25-OHD3) concentrations were found at admission. After treatment with calcium and vitamin D, serum PTH and 25-OHD3 concentrations increased markedly before serum calcium levels returned to normal perhaps indicating an inability to convert 25-OHD3 to the metabolically active 1,25-dihyroxyvitamin D3 during the hyperphosphataemic state. Treatment with 1,25-dihdroxyvitamin D3 or its analogues is recommended.

Calcium

Pituitary-thyroid responsiveness to thyrotropin-releasing hormone in preterm and small-for-gestational age newborns.

A dose of 40 microgram TRH was injected intravenously in 12 preterm (PT) and 15 small-for-gestational age (SGA) babies (with advanced gestational ages) between 5 and 167 hours after birth. Serum-thyrotropin (TSH) was measured prior to and 30 and 180 min after TRH; serum-thyroxine (T4) and serum-triiodothyronine (T3) were measured prior to and 180 min after TRH. The percentage increase in serum-TSH in PT and SGA babies was comparable to that of fullterm newborns. The serum-TSH 30 min after TRH in SGA newborns was significantly correlated to basal TSH values, such a correlation could not be shown in the preterms. One SGA and four PT babies had a repeat TRH-test performed later in infancy: In all but one PT with a gestational age of 27 weeks the TSH rise was lower than in the neonatal period. The thyroid hormone responses after TRH were similar in the two groups of babies. The percentage increase above basal levels were: Median serum-T3 increase about 46% and median serum-T4 increase about 14%. It is concluded that in low-birth-weight newborn babies the pituitary TSH response to exogenous TRH was like that detected in fullterm newborns and more pronounced that later in infancy. The effect of endogenous TSH as measured by thyroid hormone increases was of the same magnitude as observed in fullterms and in adults.

Female

Changes in serum levels of thyroxine and thyroxine-binding proteins (TBG, TBPA, ALBUMIN) induced by venous stasis.

Serum concentrations of thyroxine (T4), thyroxine-binding globulin (TBG), thyroxine-binding pre-albumin (TBPA) and albumin were determined in 21 healthy, young subjects before and after a brief venous stasis in two experiments: 1) 3 min stasis induced by a sphygmomanometer with constant pressure 20 mmHg above the diastolic blood pressure and 2) 2 min stasis induced by an arm tourniquet of rubber. In both experiments the serum T4 level was significantly rised (mean 9%) after venous compression. Increases of the same magnitude were observed for serum TBG, serum TBPA and serum albumin. The serum concentrations of the free constituents--sodium and creatinine--remained unchanged, whereas the haemoglobin concentration increased (mean 8%). This haemoconcentrating effect of venous stasis seemed to be more pronounced in females than in males. Our data emphasize the need for protein correction procedures when total serum T4 is measured.

Adult

Thyrotropin response to thyrotropin-releasing hormone in fullterm, euthyroid and hypothyroid newborns.

The serum concentration of thyrotropin (TSH) and the TSH response following thyrotropin-releasing hormone (TRH) were studied in 16 euthyroid babies from 16 to 172 hours after birth and in 2 primary hypothyroid babies, 3 and 28 days of age. Serum-TSH was measured before an intravenous injection of 40 mug TRH and after 30 and 180 min. In the euthyroid babies increased basal levels of TSH were seen shortly after birth, followed by a pronounced decline. The extent of TSH increase after TRH could be correlated with the basal levels, and the relative increase was comparable to that which occurs in adults. In the hypothyroid babies very high basal levels of serum-TSH were seen, 125 and 400 muU/ml respectively, with no further increase following TRH stimulation. It was concluded that in euthyroid fullterm newborn, the relative response of serum-TSH to TRH was equal to that of adults, in spite of elevated thyroid hormone concentrations. In the hypothyroid newborn very high levels of serum-TSH were seen and a supplementary TRH-test seems without diagnostic value in congenital hypothyroidism.

Congenital Hypothyroidism