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Reducing the interval between generations would significantly advance the efficiency of genetic selection, which is mainly important in species characterized by late puberty, long pregnancy and single offspring. Oocytes for in vitro embryo production can be obtained from calves, lambs, goats, foals and gilts well before puberty, either after slaughter or by less invasive methods, such as laparoscopy and transvaginal aspiration under ultrasonograph guidance. The latter two can be applied to females without greatly affecting their health and are therefore the preferred methods when animals are to be retained for breeding purposes. However, the use of transvaginal aspiration is limited to larger animals, such as 6-month old calves. The quality of oocytes from prepubertal females seems to be lower than that of adults. Although hormone stimulation of the animals and the use of enriched media improve embryonic competence of prepubertal oocytes following in vitro maturation and fertilisation, the efficiency of embryo production remains low. The is probably due to the immaturity of their cytoplasm.
The level of melatonin in plasma was investigated in gilts reared during long summer days (sunrise 430, sunset 2030). Lighting in the animal's rooms was provided by windows and fluorescent lamps, which were automatically turned on at 545 and turned off at 1945. The light intensity during photophase was 500 lux at the level of the animal's eyes. Blood samples were taken from twelve gilts over a 24 hour period and further sampling was continued in six pigs over the following 3 days. The effect of exposure to a 500 lux light during the night on plasma melatonin levels was studied in the remaining six gilts. The concentration of melatonin in the plasma was measured by direct radioimmunoassay employing an R/R/19540-16876 antibody and iodinated tracer. Concentrations of the investigated hormone were low during day and rapidly increased at the onset of night during which the plasma melatonin level remained at an elevated plateau and then declined at the onset of day. The mean concentration of plasma melatonin was about three times higher during the night compared to daytime. Monitoring of the pineal hormone level in blood plasma over four consecutive days indicated regular melatonin rhythms in 5 of the 6 investigated pigs. A 500 lux light (turned on for one night) did not prevent a nocturnal increase in plasma melatonin levels.
Mycotoxicosis has long been studied in humans and animals. Zearalenone-induced mycotoxicosis poses a growing problem in companion animals and livestock. The objective of this study was to determine whether intoxication with low doses of zearalenone (ZEA) and its biotransformation in selected animal species affects hematological and serum biochemical indices, as well as endocrine, intracrine and immunohistochemical parameters. Materials and Methods. Experiment I was performed on 36 gilts with a body weight of ± 20 kg. Half of the animals (18 gilts) were administered ZEA at a daily dose of 40 ìg/kg BW, and the remaining gilts were the placebo group. The experiment lasted 42 days. The animals were slaughtered at the end of the experiment (day 42), and samples were collected for laboratory analyses. Experiment II was performed on 30 clinically healthy pre-pubertal beagle bitches aged 70 days, with the initial body weight of ± 8 kg. The dogs were randomly divided into two experimental groups (EI and EII) and a control group (C). The experimental groups were administered per os ZEA doses of 50 and 75 ìg/kg BW, respectively, for 42 days. The control group bitches were administered placebo. The animals were subjected to ovariohysterectomy at the end of the experiment. Results and Discussion. The type of cell death induced by ZEA was very difficult to define in both groups of animals. Cell apoptosis and/or necrosis is determined by the cell’s energy resources, which reflect the level of mitochondrial metabolic activity. ZEA-induced damage of the cell membrane probably reduced the mitochondrial membrane potential. The above led to a decrease in ATP levels, which play an important role in the cell death process. In the presence of a toxic substance, such as ZEA, cell apoptosis and/or necrosis can be induced by the same factor as part of the hormetic response. The death of the cells studied here was induced by excessive Ca²⁺ levels in the mitochondria, mitochondrial dysfunction and a decrease or loss of mitochondrial metabolic activity in oocytes, follicular cells and interstitial cells in the ovaries of experimental bitches and gilts. Low doses of ZEA reduced the number of ERβ receptors, the only receptors in the ovaries, which activated epigenetic modification mechanisms and inhibited ovarian development. The increase in E2 concentrations was proportional to the degree of intoxication, which resulted from specific enzymatic regulation in the presence of ZEA as a competitive substrate that modulates the activity of enzymes participating in estrogen biosynthesis at the pre-receptor level and very low concentrations of á-zearalenol due to slow biotransformation of ZEA. Hyperestrogenism was observed, and the hormetic threshold dose level was clearly exceeded in the experimental groups. No changes were found in the hematological and serum biochemical parameters of the gilts and bitches.
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