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E Bertino

Publications and source records attributed to E Bertino.

9 recordsLinked to original sources

[Serum prealbumin standards in the neonatal period].

Serum prealbumin standards for the first and sixth days of life have been determined by immunoprecipitation ascertained with kinetic nephelometry in two samples of healthy newborns, born at term and of normal weight.

Birth Weight

Development of thyroid function between VI-IX month of fetal life in humans.

Well-preserved thyroid glands from 28 fetuses 22-34 weeks of gestational age and from 4 term newborns who survived at most 12 days were examined to study thyroid development in late intrauterine life. Total iodine thyroglobulin (Tg), T4, T3 and rT3 were assayed before and after hydrolysis with pronase. In the same maternity unit the cord-serum of 25 healthy term newborns was also assayed and the urine iodine on the day of delivery was tested in 52 newborns and their mothers. Results are expressed as mean values +/- SD. The thyroid gland weight ratio to body weight for the preterms was 0.063 +/- 0.024; thyroid Tg content 5.9 +/- 4.0 mg/g; total thyroid iodine 41.7 +/- 35.1 micrograms/g; Tg iodination 0.72 +/- 0.37%; hormone quota of Tg iodine 39.9 +/- 12.4. Molar ratios were: T4/Tg 3.3 +/- 1.6, T3/Tg 0.25 +/- 0.14, rT3/Tg 0.072 +/- 0.059. Considerable differences in thyroid iodine content and Tg iodination were observed although the availability of iodine was presumably the same. The high Tg iodination reflects the enhanced uptake of the fetal thyroid. The quantity of iodine involved in hormonogenesis varied greatly among fetuses of the same gestational age, this being in the third term as active as in fully mature thyroids. Hormonogenesis seemed preferentially directed to production of T4 and rT3, which, in the latter case, is higher peripherically. Four preterms with a particularly low level of hormonogenesis were not seen to have deficient levels of thyroid iodine or Tg iodination and the most compromised step was the iodine utilization in the production of hormones.(ABSTRACT TRUNCATED AT 250 WORDS)

Congenital Hypothyroidism

Thyroid hormones in tissues from human embryos and fetuses.

This study was intended to quantify T3 and T4 in various human tissues at different stages of gestation as a contribute in the evaluation of the role of thyroid hormones in fetal development, particularly before the maturation of fetal thyroid function. Moreover, for a better comprehension of the influence of thyroid hormone status in tissues, the study was extended to adults. Embryonic specimens were obtained from voluntary abortions between 6 and 12 weeks of gestation, fetal and neonatal specimens from fetuses and neonates between 15 and 36 weeks of gestation after spontaneous abortion or stillbirth, and adult specimens from men (age range: 45-65 years) after death for cardiovascular diseases. Thyroid hormones were measured by the method of Gordon and coworkers. In embryos T3 and T4 were measured in limbs, carcasses, brain and liver: considering all values measured in the period 9-12 weeks, a mean concentration of 0.11 ng/g for T3 and 1.28 ng/g for T4 was obtained. In pooled limbs of 6-8 weeks T3 was barely measurable (0.01 ng/g). In the carcasses there was an increase in T3 and T4 concentrations of 40 and 20 times respectively from the 9th to the 12th week, when thyroid follicles organization takes place. In fetuses and adults T3 and T4 were measured in brain, heart, kidney, liver, lung, skeletal muscle and skin (mean concentrations: 0.86 ng/g for T3 and 7.44 ng/g for T4 in fetuses and neonates; 1.36 ng/g for T3 and 12.75 ng/g for T4 in adults). Hormones concentration increased with gestational age; the T3/T4 ratio increased until 22-24 weeks, when the prevalent increment in T4 occurs. T3 concentration up to 30 weeks was generally higher in tissues than in cord serum of the corresponding age. During the last month of gestation T3 increment was faster in serum. T4 level was always predominant in serum. In conclusion, T3 and T4 have been detected in the limbs of embryos before the onset of thyroid hormone secretion. Concentrations were 1/150 and 1/70, of the normal maternal blood values respectively. It is conceivable that these hormones are of maternal origin, and the question of whether such small quantities may play a role in fetal development is open.

Brain

Human milk components cross-reacting with antibodies against bovine beta-lactoglobulin.

The human whey components cross-reacting with antibodies raised against bovine and/or equine beta-lactoglobulin were screened systematically. The milk of six women on a normal diet was collected within 72 h of confinement and whey components were fractionated by high-speed size exclusion chromatography and reversed-phase techniques. The fractions which were immunoreactive in double diffusion experiments with antisera anti-bovine and/or equine beta-lactoglobulin were subsequently purified by native PAGE and then electroblotted on Pro-blott membrane (Western blotting). Pro-blot membranes were stained in parallel with Coomassie and by immunostaining using antibodies against bovine and/or equine beta-lactoglobulin as first antibody solution. The immunoreactive bands were cut out from the membrane and N-terminally sequenced; all the immunoreactive components were clearly identified as human beta-casein or its (mainly tryptic) fragments. The strong antigenic similarity between human beta-casein and beta-lactoglobulin (bovine and equine) might be of immunological importance; it could mean that breast-fed neonates risk being sensitized to beta-lactoglobulin irrespective of the presence of cow's milk in the mother's diet.

Amino Acid Sequence

[Magnesium concentration in the amniotic fluid].

Using a direct colorimetric method the concentration of magnesium in amniotic liquid was determined in 150 pregnant women at gestational ages ranging from 9 to 41 weeks. Results revealed a men value of 1.7 mg/dl (s = 0.39).

Amniocentesis