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B Chrzanowska

Publications and source records attributed to B Chrzanowska.

4 recordsLinked to original sources

Continuous administration of growth hormone does not prevent the decrease of IGF-I gene expression in zinc-deprived rats despite normalization of liver GH binding.

To determine the role of reduced liver GH binding (GHR) in the decreased IGF-I observed in zinc-deficient (ZD) animals, we investigated the effects of GHR restoration on growth, insulin-like growth factor I (IGF-I) and its binding proteins (IGFBPs) in ZD rats. Rats were fed for 4 weeks a zinc-deficient diet (ZD Zn, 0 ppm) or a Zinc-normal diet (pair-fed or PF; Zn, 75 ppm). ZD rats received continuous s.c. infusion of bovine growth hormone (bGH) (100 microg/d) for the 4 weeks or for the last week of the study. Compared with pair-fed rats, zinc deficiency produced attenuated weight gain (-43%, P < 0.001), lower serum IGF-I and liver IGF-I mRNA (-52%, P < 0.001 and -44%, P < 0.05), lower serum IGFBPs (IGFBP-3 -66%, IGFBP-4 -48%, 34-29 kDa IGFBP cluster -53%, P < 0.05), lower liver GHR and its mRNA (-20 and -34%, P < 0.05) and lower serum growth hormone binding protein (GHBP) and its mRNA (-56 and -48%, P < 0.05; all comparisons vs PF rats). Exogenous bGH given continuously normalized the liver GHR, serum GHBP and their liver mRNAs, as well as circulating IGFBPs. Despite restoration of GHR and GHBP to normal, growth, serum IGF-I and its liver mRNA were not stimulated by GH infusion in ZD rats, indicating that IGF-I synthesis requires the presence of zinc in addition to GH, and that the lack of growth-promoting action of GH in zinc-deprived rats results from a defect beyond GH binding to its liver receptors.

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[Serotonin concentration in the rat fetal brain in experimental intrauterine dystrophy].

The concentration of serotonin (5-hydroxytryptamine, 5-HT) was determined in the brain of fetal rats with experimental intrauterine growth retardation (IUGR). IUGR was induced using the procedure of Wigglesworth. On the 17th day of gestation, the uterine artery supplying one uterine horn was ligated. The artery of the opposite uterine horn was left untouched (control). On the 22nd day the fetuses were delivered by C-section. 5-HT was determined by fluorometric method. Statistical analysis employed the paired Student t-test. The average body weight of the IUGR fetuses was 3.15 g, whereas control fetuses 4,50 g. The mean concentration of 5-HT was 10,4% lower in IUGR fetal brains. The mean 5-HT brain concentration in IUGR was 155 micrograms/g of tissue, whereas in control the mean concentration was 173 micrograms/g of tissue. The difference between these brain concentrations was significant (p less than 0,005). We conclude that reduction in maternofetal blood flow in the 3rd trimester of gestation results in decreased concentration in the brain of 5-HT.

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[Serotonin concentration in the placentas in experimental intrauterine growth retardation].

A number of investigators have shown that 5-hydroxytryptamine (5-HT) administration to pregnant animals produces changes in the placenta and leads to death of the fetuses. It has been well known that 5-HT is the most potent umbilical-placental vasoconstrictor and that its administration affects the nutritional function of the placenta. In view of these results it seemed desirable to determine 5-HT concentration in the placenta in experimental intrauterine growth retardation. IUGR was induced on the 17th day of gestation in pregnant rats by ligating the uterine artery of one horn as described by Wigglesworth with the opposite horn left untouched (control). On day 22, fetuses were delivered by C-section. 5-HT was determined by a fluorometric method. Statistical analysis employed the paired Student t-test. Average weight of IUGR fetuses was 3,05 g, whereas control fetuses 4,48. The mean concentration of 5-HT was 11% higher in IUGR fetal placentas. The mean placental concentration in IUGR was 247 micrograms/g of tissue, whereas in control the mean concentration was 222 micrograms/g of tissue. The difference between these placental concentrations was significant (p less than 0,01). We conclude that decreased blood supply to the pregnant rat uterus results in increased concentration in the placenta of 5-HT.

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