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Effects of Zeranol upon luteal maintenance and fetal development in peripubertal gilts.

Eighty gilts were utilized to determine whether zeranol implants could maintain hCG-induced corpora lutea (CL) in peripubertal gilts and to examine the effects of a Zeranol implant on fetal development. Crossbred gilts (171+/-0.3 days of age, 109.1+1.4 kg) were blocked by weight and ancestry to control (n=40) or treatment (n=40) groups. To induce ovulation and CL maintenance, treated gilts received 500 IU of hCG i.m. and a Zeranol ear implant (Ralgro, 36 mg; day 0). All gilts were checked once daily for estrus with a mature boar from days 3-58 of the experiment. On day 42, treated gilts received two 10 mg injections of Lutalyse (PGF(2)alpha) spaced 6 h apart. Treated gilts not displaying estrus within 7 days of PGF(2)alpha received two additional 10 mg of PGF(2)alpha spaced 6 h apart on day 49. On days 44-58, gilts detected in estrus were inseminated twice, 24 h apart with pooled semen via AI. Blood samples were obtained on days 0, 7, 18 and 42 and analyzed for serum progesterone (P(4)). Bred gilts were slaughtered on days 58-62 of gestation. Ovulation, as determined by serum concentrations of P(4) on day 7 of the experiment, was induced by hCG in 79.5% of treated gilts. Zeranol implants, however, failed to increase (P>0.05) the proportion of gilts available for breeding (treated, 21/39; control, 18/40). Of gilts inseminated on days 44-58, 16/21 treated gilts and 16/18 control gilts were pregnant at slaughter on days 58-62 of gestation. Number of fetuses (7.5 versus 12), fetal weight (83 versus 121 g), fetal length (117 versus 132 mm) and fetal survival (45% versus 78%) were reduced (P<0.001) by Zeranol implants. These data indicate that treatment of peripubertal gilts with a 36 mg Zeranol implant did not increase the proportion of gilts available for breeding while causing deleterious effects upon the fetuses.

Animals↗

Quantitation and histochemical localization of galectin-1 and galectin-1-reactive glycoconjugates in fetal development of bovine organs.

The display of cellular oligosaccharide chains is known to undergo marked developmental changes, as monitored histochemically with plant lectins. In conjunction with endogenous lectins respective ligand structures may have a functional role during fetal development. The assumption of a recognitive, functionally productive interplay prompts the study of the expression of a tissue lectin and of lectin-reactive glycoconjugates concomitantly. Focusing on common beta-galactosides as constituents of oligosaccharide chains and the predominant member of the family of galectins in mammals, namely galectin-1, the question therefore is addressed as to whether expression of lectin and lectin-reactive glycoconjugates exhibits alterations, assessed in three morphologically defined fetal stages and in adult bovine organs. Using a sandwich ELISA, the level of the rather ubiquitous galectin-1 is mostly increased in adult organs relative to respective fetal stages, except for the case of kidney. This developmental course is seen rather seldom, when the amounts of lectin-reactive glycoproteins or glycolipids are quantitated in solid-phase assays after tissue homogenization. Western blotting, combined with probing by labeled galectin-1, discloses primarily quantitative changes in the reactivity of individual glycoproteins. Performing the same assays on extract aliquots with a plant agglutinin, namely the galactoside-binding mistletoe lectin, whose fine specificity is different from galectin-1, its reduced extent of binding in solid-phase assays and the disparate profile of lectin-reactive glycoproteins reveal a non-uniform developmental alteration within the group of structural variants of beta-galactosides. Although sample preparation can affect ligand preservation and/or presentation and thus restricts the comparability of biochemical and histochemical results, especially for soluble reactants, the histochemical studies on frozen and paraffin-embedded sections of bovine heart, kidney and liver demonstrate that the localization of the galectin and of lectin-reactive epitopes can show a similar distribution, as seen in liver and heart, with organ-typical quantitative changes of a rather similar staining profile (heart, kidney) or notable changes in the spatial distribution (liver) in the course of development. This report emphasizes the potential value of combined monitoring of the lectin and its potential in vivo ligands to contribute to eventually unravel organ-related function(s) of a tissue lectin.

Animals↗

[Effect of cefuroxime on embryonic and fetal development in an experiment].

The direct and indirect effects of cefuroxime on the embryo and fetus were studied in vitro and in vivo at different gestation times. The placenta, liver and kidneys of the mother and fetus were investigated morphologically. It was shown that in a dose of 250 mg/kg the antibiotic did not induce disorders in the fetus development. The histological examination of the fetus placenta and liver revealed no changes as compared to the controls. However, in the renal tubules of the mother and fetus, pathological lesions in the form of the cytoplasm granular degeneration and nucleus swelling, lysis and necrosis were observed. These lesions were of a dose-dependent character. The possible nephrotoxic effect of cefuroxime prevents its use as a drug of choice in treatment of gestation pyelonephritis.

Abnormalities, Drug-Induced↗

Expression of T-cell antigen receptor genes during fetal development in the thymus.

The T-cell antigen receptor is a heterodimeric molecule composed of alpha- and beta-subunits of relative molecular mass 40,000-50,000 (refs 1-6). Recently, the genes encoding both the beta- and alpha- chains have been cloned. By comparing amino-acid and nucleic-acid sequences, it is clear that these genes encode the alpha- and beta-proteins of the T-cell receptor. In addition, a third receptor-like gene, the gamma-chain gene, has been identified, which has many structural and sequence characteristics in common with the alpha- and beta-chain genes. The role of the gamma-chain gene in T-cell development is unknown. We have reported recently that the beta-chain genes are transcriptionally turned on in the thymus at about day 17 of fetal development. Here we report that the alpha-chain also is transcriptionally activated during this time, but that the gamma-chain gene is active in the thymus at day 14, reaches a peak steady-state level at day 15 and rapidly declines thereafter. If the gamma-chain gene has a functional role, it would seem to be involved very early in T-cell development, before the mature T-cell receptor is expressed.

Animals↗

Zinc, copper, and iron metabolism during porcine fetal development.

Zinc, copper, and iron levels in maternal and fetal pig tissues and fluids were measured starting on d 30 of gestation and continuing to term (d 114) at 10-d intervals. Fetal hematocrit increased from a low of 19% on d 30 to 32% by d 50, after which it remained above 30% to term. Amniotic fluid zinc, copper, and iron all reached maximal levels by d 60 of gestation. Maternal serum zinc levels fluctuated little during gestation, but fetal serum zinc concentration was significantly elevated above maternal levels during the second trimester. Fetal serum copper levels were significantly lower than maternal values throughout gestation and this was also the case for ceruloplasmin oxidase activity. Maternal serum iron reached its lowest level by d 80 of gestation when rate of transfer of iron to the developing fetuses was high. Fetal serum iron declined throughout gestation, reaching its lowest level on d 100. In general, fetal liver concentrations of zinc, copper, and iron were higher than the corresponding maternal values throughout gestation. Distinct increases were noted for fetal hepatic zinc and copper concentrations during the second trimester of pregnancy and these were accompanied by increases in cytosolic and metallothionein-bound zinc and copper levels. Maternal hepatic iron declined during the second trimester, reaching its lowest point on d 80, indicative of the shunting of maternal iron reserves to fetal tissues. Fetal kidney metal levels did not demonstrate any distinctive developmental patterns with respect to zinc, copper, or iron concentrations, but a general accumulation of each metal was observed as gestation progressed. The results of this study highlight some of the distinct changes occurring in the metabolism of zinc, copper, and iron in both maternal and fetal tissues and fluids during gestation in the pig.

Animals↗

[Insulin-like growth factor-I(IGF-I), and its binding protein-3 (IGFBP-3) correlated with fetal development].

OBJECTIVE: To study the relations between IGF-I, IGFBP-3 and human fetal growth. METHODS: The blood samples of maternal serum (MS) and umbilical cord serum (UCS) from 81 cases with singleton term pregnancy including 38 cases of normal pregnancy (NP), 20 cases of gestational diabetic mellitus (GDM), 23 cases of macrosomia of non-diabetic pregnancy (MNDP) were examined for IGF-I and IGFBP-3 levels by immunoassay kit from DSL, USA. RESULTS: IGF-I in MS of NP and MNDP showed a positive correlation with birth weight (BW) (r = 0.653 and r = 0.640 respectively, both P < 0.01). IGF-I of MS in MNDP was higher than that in NP (P < 0.05). IGF-I of MS and UCS in GDM were higher than that in NP (P < 0.05). IGF-I and IGFBP-3 of UCS in these three groups were significantly lower than that of MS (P < 0.001). CONCLUSION: Detection of IGF-I in MS can assess fetal intra-uterus growth, birth weight and has certain value of predicting macrosomia. IGF-I and IGFBP-3 play important roles for human fetal growth.

Adult↗

The effect of chronic oral alcoholization upon late fetal development in mice.

The late fetal effect of chronic alcoholization in two strains of mice (RAP and RAP female x CBAT6 male) was controlled. Unilateral ocular anomalies (retinal folding, various degrees of ocular disorganization) were detected in 16% of the alcoholized RAP female x CBAT6 male group. The findings are discussed in connection with other experimental models of alcohol embryo and fetopathy.

Abnormalities, Drug-Induced↗