Effects of an antiserum to rat growth hormone on lactation in the rat
- 1 October 1986
- journal article
- research article
- Published by Bioscientifica in Journal of Endocrinology
- Vol. 111 (1) , 117-123
- https://doi.org/10.1677/joe.0.1110117
Abstract
A highly specific antiserum to rat GH (anti-rGH) was used to assess the role of GH in lactation in the rat. When administered alone, anti-rGH had no effect on litter weight gain, whereas bromocriptine reduced serum prolactin concentrations and litter weight gain for up to 7 days when given on day 4 of lactation. When bromocriptine and anti-rGH were given in combination, however, litter weight gain declined even more dramatically so that pups were receiving virtually no milk 2–3 days after treatment. Daily litter exchange failed to prevent this effect. Concurrent injections of highly purified GH (prolactin contamination undetectable) prevented the dramatic decline in litter weight gain induced by combined bromocriptine and anti-rGH treatment, so that these litters grew as well as those receiving bromocriptine alone. Growth hormone did not act by influencing serum prolactin concentrations, which remained low during GH therapy. Direct effects of anti-rGH or GH on the pups (transferred through the milk) were ruled out since virtually identical results were obtained when milk yield was estimated during a 30-min suckling period after a 3-h separation of mother and pups. Lactation had virtually ceased 3 days after treatment with both bromocriptine and anti-rGH, but it could be reinitiated by a single injection of prolactin or GH, and subsequent recovery was virtually complete. The results of this study show that (1) prolactin can maintain a full milk yield in the absence of GH, (2) milk yield is reduced by approximately 50% in the absence of prolactin and (3) milk yield is totally stopped in the absence of prolactin and GH. Growth hormone therefore appears to play an auxiliary role in lactation which may be important in times of prolactin insufficiency. J. Endocr. (1986) 111, 117–123This publication has 10 references indexed in Scilit:
- Responses of High-Producing Dairy Cows to Long-Term Treatment with Pituitary Somatotropin and Recombinant SomatotropinJournal of Dairy Science, 1985
- Prolactin Directly Stimulates the Liverin Vivoto Secrete a Factor (Synlactin) which Acts Synergistically with the Hormone*Endocrinology, 1985
- Measurement of Somatomedin-Related Peptides in Fetal, Neonatal, and Maternal Rat Serum by Insulin-Like Growth Factor (IGF) I Radioimmunoassay, IGF-II Radioreceptor Assay (RRA), and Multiplication- Stimulating Activity RRA after Acid-Ethanol Extraction*Endocrinology, 1982
- Effects of growth hormone on fatty acid synthesis in sheep adipose tissueInternational Journal of Biochemistry, 1982
- Metabolism of sheep adipose tissue during pregnancy and lactation. Adaptation and regulationBiochemical Journal, 1981
- Effect of Exogenous Growth Hormone on Lactational Performance in High Yielding Dairy CowsJournal of Nutrition, 1981
- Endocrine control of energy metabolism in the cow: the effect on milk yield and levels of some blood constituents of injecting growth hormone and growth hormone fragmentsBritish Journal of Nutrition, 1980
- Endocrine Control of Energy Metabolism in the Cow: Correlations of Hormones and Metabolites in High and Low Yielding Cows for Stages of LactationJournal of Dairy Science, 1979
- ENDOCRINE CONTROL OF ENERGY METABOLISM IN THE COW: COMPARISON OF THE LEVELS OF HORMONES (PROLACTIN, GROWTH HORMONE, INSULIN AND THYROXINE) AND METABOLITES IN THE PLASMA OF HIGH- AND LOW-YIELDING CATTLE AT VARIOUS STAGES OF LACTATIONJournal of Endocrinology, 1978
- Plasma Growth Hormone Concentration in the Rat Determined by Radioimmunoassay: Influence of Sex, Pregnancy, Lactation, Anesthesia, Hypophysectomy and Extrasellar Pituitary TransplantsEndocrinology, 1966