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Bioactive and immunoreactive FSH concentrations in ewe and ram lambs over the first year of life
Institution:1. Wallaceville Animal Research Centre, P.O. Box 40063, Upper Hutt, New Zealand;2. Invermay Agricultural Research Centre, Private Bag, Mosgiel, New Zealand;1. Laboratory on Animal Germplasm Conservation, Federal Rural University of Semi-Arid – UFERSA, Mossoro, RN, Brazil;2. Laboratory of Animal Biotechnology, UFERSA, Mossoro, RN, Brazil;3. Laboratory of Biometeorology and Environmental Biophysics, UFERSA, Mossoró, RN, Brazil;1. Division of Clinical Pharmacology and Toxicology, Geneva University Hospitals, Geneva, Switzerland;2. Department of Pediatrics, Onco-Hematology Unit, Geneva University Hospitals, Geneva, Switzerland;1. Department of Reproductive Medicine, Paule de Viguier Hospital, Toulouse Teaching Hospital Group, Toulouse, France;2. EA 3694 Human Fertility Research Group, Paule de Viguier Hospital, Toulouse Teaching Hospital Group, Toulouse, France;1. Maria Sklodowska-Curie National Research Institute of Oncology, Warsaw, Poland;2. Lower Silesian Cancer Center, Wroclaw, Poland;3. Maria Sklodowska-Curie National Research Institute of Oncology, Cracow Branch, Cracow, Poland;4. Iagiellonian University, Cracow, Poland;5. Jan Kochanowski University, Kielce, Poland;6. Regional Cancer Center, Bydgoszcz, Poland;7. Oncology Center, Lublin, Poland;1. Department of Veterinary Parasitology and Entomology, Faculty of Veterinary Medicine, Ahmadu Bello University, Zaria, Nigeria;2. Department of Veterinary Medicine, Faculty of Veterinary Medicine, Ahmadu Bello University, Zaria, Nigeria
Abstract:Several studies suggest that the concentration of immunoreactive (I) FSH measured in peripheral plasma by radioimmunoassay does not always reflect the level of bioactive (B) hormone capable of eliciting a biological response (e.g. oestradiol synthesis by Sertoli cells in vitro). The aim of this study was to measure both B-FSH and I-FSH concentrations in male and female sheep during the first year of life, and to relate this to pubertal development. The hypothesis being tested was that B-FSH is present in both male and female sheep during the prepubertal period and that discrete changes in B-FSH are associated with the onset of puberty. Eight ewe lambs and eight ram lambs were blood sampled fortnightly from 2 to 52 weeks of age. All samples were assayed for B-FSH and I-FSH content. Pubertal development was monitored in ewe lambs from behavioural oestrus and from plasma progesterone concentrations, and in ram lambs from penile and testicular development and from plasma testosterone concentrations. Mean I-FSH concentrations varied significantly with time after birth, in both females and males (P<0.01). In contrast, B-FSH was found to vary with time in females only (P<0.01). Around the expected time of puberty in ram lambs (i.e. at 30–40 weeks of age), and thereafter, I-FSH concentrations were undetectable (<0.2 ng ml−1), whereas the B-FSH concentrations were measurable at concentrations up to twice the assay detection limit (0.8 ng ml−1) until 38 weeks of age. In ewe lambs, but not ram lambs, there was a significant linear relationship between B-FSH and I-FSH values (R=0.595; P<0.005). When standardised about the time of puberty, B-FSH (P<0.05) but not I-FSH was significantly higher in ewe lambs that failed to reach puberty. No differences for either B-FSH or I-FSH between pubertal and non-pubertal ram lambs were noted. In summary, B-FSH was often measurable in plasma throughout prepubertal development in sheep and the concentrations often differed from those of I-FSH, especially in ram lambs. However, there appeared to be no discrete changes in B-FSH that could be directly related to specific pubertal events. It is concluded that although FSH may be a prerequisite for prepubertal testicular development and/or ovarian follicular growth, it is not a critical factor in determining whether puberty is attained during the first year of life in this seasonally breeding species.
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