Otwarty dostęp

The Role of Melatonin and Bromocriptine in the Regulation of Prolactin Secretion in Animals – A Review


Zacytuj

Andrews Z.B., Kokay I.C., Grattan D.R. (2002). Disociation of prolactin secretion from tuberoinfundibular dopamine activity in late pregnant rats. Endocrinology, 142: 2179-2724.Arbogast L.A., Voogt J.L. (1996). The resposiveness of tuberoinfundibular dopaminergic neurons to prolactin feedback is diminished between early lactation and midlactation in the rat. Endocrinology, 1: 137.Search in Google Scholar

Arihara Z., Sakurai K., Yamashita R., Niitsuma S., Ueno T., Yamamura N., Ya - mada S., Inoshita N., Takahashi K. (2014). Bromocriptine,adopamine agonist, increases growth hormone secretion inapatient with acromegaly. Tohoku J. Exp. Med., 234: 129-135.Search in Google Scholar

Bartke A., Amador A.G., Chandrashekar V., Klemcke H.G. (1987). Seasonal differences in testicular receptors and steroidogenesis. J. Steroid Biochem., 27: 581.Search in Google Scholar

Ben- Jonathan N. (1985). Dopamine:aprolactin inhibiting hormone. Endocr. Rev., 6: 564-589.Search in Google Scholar

Ben- Jonathan N., Arbogast L.A., Hyde J.F. (1989). Neuroendocrine regulation of prolactin release. Prog. Neurobiol., 33: 399-447.Search in Google Scholar

Ben- Jonathan N., Hnasko R. (2001). Dopamine asaprolactin inhibitor. Endocr. Rev., 22: 724-763.Search in Google Scholar

Besognet B., Hansen B., Deals P. (1995). Prolactin secretion during the transitional phase and the relationship to onset of reproductive season in mares. Biol. Reprod. Mono., 1: 459-467.Search in Google Scholar

Bole-Feysot C., Goffin V., Edery M., Binart N., Kelly P.A. (1998). Prolactin (PRL) and its receptor: actions, signal transduction pathways and phenotypes observed in PRLreceptor knockout mice. Endocr. Rev., 19: 225-268.Search in Google Scholar

Boyd A. (1997). Bromocriptine and psychosis:aliterature review. Psychiat. Quart., 66: 87-95.Search in Google Scholar

Brody S., Kruger T.H. (2006). The post-orgasmic prolactin increase following intercourse is greater than following masturbation and suggests greater satiety. Biol. Psychol., 71: 5-312.Search in Google Scholar

Christian H.C., Chapman L.P., Morris J.F. (2007). Thyrotropin-releasing hormone, vasoactive intestinal peptide, prolactin-releasing peptide and dopamine regulation of prolactin secretion by different lactotroph morphological subtypes in the rat. J. Neuroendocrinol., 19: 605-613.Search in Google Scholar

Ciechanowska M., Misztal T., Przekop F. (2013). Prolactin and the physiological regulation of its secretion. Areview. J. Anim. Feed Sci., 22: 79-89.Search in Google Scholar

De Bellis A., Bizzaro A., Bellastella A. (2008). Role of prolactin in autoimmune diseases. In: Handbook of systemic autoimmune diseases. Endocrine manifestations of systemic autoimmune diseases, Walker S., Jara L.J. (eds). Elsevier B.V., 9: 29-43.Search in Google Scholar

Doherty P.C., Bartke A., Smith M.S. (1981). Differential effects of bromocriptine treatment on LHrelease and copulatory behavior in hyperprolactinemic male rats. Horm. Behav., 15: 436.Search in Google Scholar

Dominguez- Gonzalez A., Genaro R.C. (1994). Evidence for participation of the catecholaminergic system of the mid brain centralgray matter on ovulation:alateralized study. Med. Sci. Res., 22: 311-312.Search in Google Scholar

Dupre S.M., Miedzinska K., Duval C.V., Le Yu., Goodman R.L., Lincoln G.A., Da - vis J.R.E., Mc Neilly A.S., Burt D.D., Loudon A.S.I. (2010). Identification of Eya3 and TAC1 as long-day signals in the sheep pituitary. Curr. Biol., 20: 829-835.Search in Google Scholar

Eftekhari N., Mohammadalizadeh S. (2009). Pregnancy rate following bromocriptine treatment in infertile women with galactorrhea. Gynecol. Endocrinol., 25: 122-124.Search in Google Scholar

Fitzgerald P., Dinan T.G. (2008). Prolactin and dopamine: what is the connection? Areview article. J. Psychopharmacol., 22: 9-12.Search in Google Scholar

Frawley L.S., Neill J.D. (1981). Stimulation of prolactin secretion in rhesus monkeys by vasoactive intestinal peptide. Neuroendocrinology, 3: 79-83.Search in Google Scholar

Freeman M.E., Kanyicska B., Lerant A., Nagy G. (2000). Prolactin structure, function and regulation of secretion. Physiol. Rev., 80: 1523-1631.Search in Google Scholar

Fuentes V.O. (1986). Does prolactin regulate prolificity in the ewe?. Vet. Rec., 118: 638.Search in Google Scholar

Fuentes V.O., Fuentes P.I., Gonzalez-Ruiz H., Sanchez-Parra V.M. (2006). The effect of bromocriptine on plasma prolactin concentration and ovulation rate in ewe breeds with different fecundity rates. Small Rum. Res., 63: 199-203.Search in Google Scholar

Gloria E., Regisford C., Katz L.S. (1994). Effects of bromocriptine treatment on the expression of sexual behavior in male sheep (Ovis aries). J. Anim. Sci., 72: 591-597.Search in Google Scholar

Goffin V., Binart N., Touraine P., Kelly P.A. (2002). The new biology of an old hormone. Annu. Rev. Physiol., 64: 47-67.Search in Google Scholar

Gómez- Brunet A., Santiago-Moreno J., Toledano-Diaz A., Paulido- Pas- tor A., López- Sebastian A. (2008). Short communication. Synchronization of ovulationand artificial insemination protocol for Spanish ibex (Capra pyrenaica) based in progesterone and cloprostenol. Span. J. Agric. Res., 6: 39-41.Search in Google Scholar

Gouderau J.L., Falls W.M., Lookingland K.J., Moore K.E. (1995). Periventicular-hypophysial dopaminergic neurons innervate the intermediate but not the neural lobe of the rat pituitary gland. Neuroendocrinol, 62: 147-154.Search in Google Scholar

Grattan D.R. (2001). The actions of prolactin in the brain during pregnancy and lactation. Prog. Brain Res., 133: 153-171.Search in Google Scholar

Gregory S.J., Brooks J., Mc Neilly A.S., Ingleton P.M., Tortonese D.J. (2007). Gonadotroph- lactotroph associations and expression of prolactin receptors in the equine pituitary gland throughout the seasonal reproductive cycle. J. Reprod. Fertil., 119: 223-231.Search in Google Scholar

Hannibal J. (2002). Pituitary adenylate cyclase-activating peptide in the rat central nervous system: An immunohistochemical and in situ hybridization study. J. Comp. Neurol., 453: 389-417.Search in Google Scholar

Harris J., Stanford P.M., Oakes S.R., Ormandy C.J. (2004). Prolactin and the prolactin receptor: new targets of an old hormone. Ann. Med., 36: 414-425.Search in Google Scholar

Hastings M., O’ Neill J.S., Maywood E.S. (2007). Circadian clocks: regulators of endocrine and metabolic rhythms. J. Neuroendocrinol., 195: 187-198.Search in Google Scholar

Hazelering D.G., Andersson H., Johnston J.D., Lincoln G. (2004). Molecular characterization of the long-day response in the Soay sheep,aseasonal mammal. Curr. Biol., 14: 334.Search in Google Scholar

Johnson A.L., Becker S.E. (1987). Effect of physiologic and pharmacologic agents on serum prolactin concentrations in the nonpregnant mare. J. Anim. Sci., 65: 1292-1297.Search in Google Scholar

Johnston J.D. (2004). Photoperiodic regulation of prolactin secretion: changes in intra-pituitary signaling and lactotroph heterogeneity. J. Endocrinol., 180: 351-356.Search in Google Scholar

Kamberi I.A., Mical R.S., Porter J.C. (1971). Effects of melatonin and serotonin on the release of FSHand prolactin. Endocrinology, 88: 1288-1293.Search in Google Scholar

Leong D.A., Frawley L.S., Neill J.D. (1983). Neuroendocrine control of prolactin secretion. A. Rev. Phys., 45: 109-127.Search in Google Scholar

Li S.H., Chen H.B., Wang Z.F., Tang R.H., Zhang X.Y., Yang J.S., Zhao W.Q., Sun X.R., Ma J. (2013). Efficacy and safety of ropinirole in the treatment of Parkinson’s disease:amulticancer, randomized, double-blind and bromocriptine-controlled trial. Zhonghua Yi. Xue. Za. Zhi., 93: 1952-1957.Search in Google Scholar

Lincoln G.A. (2006). Melatonin entrainment of circannual rhythms. Chronobiol. Int., 23: 3-6.Search in Google Scholar

Lincoln G.A., Clarke I.J. (1994). Photoperiodically-induced cycles in the secretion of prolactin in hypothalamo-pituitary disconnected rams: evidence for translation of the melatonin signal in the pituitary gland. J. Neuroendocrinol., 6: 251-260.Search in Google Scholar

Lincoln G.A., Clarke I.J. (1995). Evidence that melatonin acts in the pituitary gland through a dopamine-independent mechanism to mediate effects of daylight on secretion of prolactin in the ram. J. Endocrinol., 7: 637-643.Search in Google Scholar

Lincoln G.A., Davidson W. (1997). The relationship between sexual and aggressive behaviour and pituitary and testicular activity during the seasonal sexual cycle of rams and the influence of photoperiod. J. Reprod. Fertil., 49: 267.Search in Google Scholar

Lincoln G.A., Clarke I.J. (2002). Noradrenaline and dopamine regulation of prolactin secretion in sheep: role in prolactin homeostasis but not photoperiodism. J. Neuroendocrinol., 1: 36-44.Search in Google Scholar

Lincoln G.A., Andersson H., Hazlerigg D. (2003). Clock genes and the long-term regulation of prolactin secretion: evidence foraphotoperiod/circannual timer in the pars tuberalis. J. Neuroendocrinol., 15: 390-397.Search in Google Scholar

Mattioli M.F., Galeati C.G., Seren E. (1986). Effect of naloxone on plasma concentrationsof prolactin and LHin lactating sows. Instituto di Fisiologia Veterinaria, Bologna, Italy, 76: 167-173.Search in Google Scholar

Mc Cann S.M., Lumpkin M.D., Mizuma H., Khorram O., Ottlecz A., Samson W.K. (1984). Peptidergic and dopaminergic control of prolactin release. Trends Neurosci., 7: 127-131.Search in Google Scholar

Mezey E., Palkovitz M. (1982). Two-way transport in the hypothalamo-hypophyseal system. Front. Neuroendocrin., pp. 1-29.Search in Google Scholar

Misztal T., Romanowicz K., Barcikowski B. (1997). Natural and melatonin stimulated changes in the rhythm of prolactin secretion in the ewe during seasonal anestrus. Neuroendocrinology, 66: 360-367.Misztal T., Romanowicz K., Barcikowski B. (1999). Melatonin modulation of the daily prolactin secretion in intact and ovariectomized ewes. Neuroendocrinology, 69: 105-112.Search in Google Scholar

Misztal T., Romanowicz K., Wa ńkowska M., Wójcik-Gładysz A., Polkowska J. (2001). Does prolactin influence the hypothalamo-pituitary Gn RH-LHsystem in preovulatoryphase ewes? Reprod. Biol., 5: 31-49.Search in Google Scholar

Mizuinuma H., Khorran? ., Mc Cann S.M. (1985). Purification ofanon-dopaminergic and non-GABAergic prolactin release inhibiting factor (PIF) in sheep stalk-median eminence. Proc. Soc. Exp. Biol. Med., 178: 114-120.Search in Google Scholar

Molik E., Kalisz B., Matyja A. (2009). Influence of day lenght on changes in secretion of melatonin and prolactin in sheep (in Polish). Wiad. Zoot., XLVII, 2: 13-17.Search in Google Scholar

Molik E., Pieronkiewicz D. (2011). Biologiczne uwarunkowania instynktu macierzyńskiego u owiec (in Polish). Prz. Hod., 7: 21-22.Search in Google Scholar

Molik E., Misztal T., Zi ęba D. (2013). The effect of physiological and environmental factors on the prolactin profile in seasonally breeding animals. Prolactin, 7: 121-138.Search in Google Scholar

Molith M.E. (2015). Endocrinology in pregnancy: management of the pregnant patient withaprolactinoma. Eur. J. Endocrinol., 172: 205-213.Search in Google Scholar

Morgan P.J. (2000). The pars tuberalis, the missing link in the photoperiodic regulation of prolactin secretion. J. Neuroendocrinol., 12: 287-296.Search in Google Scholar

Pfaus J.G., Phillips A.G. (1991). Role of dopamine in anticipatory and consummatory aspects of sexual behavior in the male rat. Behav. Neurosci., 105: 727.Search in Google Scholar

Poletini M.O., Kennet J.E., Mc Kee D.T., Freeman M.E. (2010). Central clock regulates the cervically stimulated prolactin surges by modulation of dopamine and vasoactive intestinal polypeptide release in ovariectomized rats. Neuroendocrinology, 91: 179-188.Search in Google Scholar

Regisford E.G.C., Katz L.S (1993). Effects of bromocriptine-induced hypoprolactinaemia on gonadotrophin secretion and testicular function in rams (Ovis aries) during two seasons J. Rep. Fertil., 99: 529-537.Search in Google Scholar

Rushen J., Robert S., Farmer C.H. (2001). Evidence ofalimited role for prolactin in the reparturient activity of confined gilts. App. Anim. Behav. Sci., 72: 309-319.Search in Google Scholar

Skinner D.C., Lee Lang A., Lindsay P., Wang Q. (2009). Substance P-immunoreactive cells in the ovine pars tuberalis. Neuroendocrinology, 89: 3-8.Search in Google Scholar

Stojilkovic S.S., Tabak J., Bertram R. (2010). Ion channels and signaling in the pituitary gland. Endocr. Rev., 31: 845-915.Search in Google Scholar

Sweeney T., Kelly G., O’ Callaghan D. (1999). Seasonal variation in long-day stimulation of prolactin secretion in ewes. Biol. Reprod., 60: 128-133.Search in Google Scholar

Tachibana T., Moriyama S., Takahashi A., Tsukada A., Oda A., Takeuchi S., Sakamoto T. (2011). Isolation and characterisation of prolactin-releasing peptide in chicks and its effects on prolactin release and feeding behaviour. J. Neuroendocrinol., 23: 74-81.Search in Google Scholar

Thiery J.C. (1991). Monoamine content of the stalk-median eminence and hypothalamus in adult female sheep as affected by daylength. J. Neuroendocrinology, 3: 407-411.Search in Google Scholar

Vaughan M.K., Blask D.E., Johnson L.Y., Reiter R.J. (1979). The effect of subcutaneous injection of melatonin, arginine vasotocin, and related peptides on pituitary and plasma levels of luteinizing hormone, follicle-stimulating hormone, and prolactin in castrated adult male rats. Endocrinology, 104: 212-217.Search in Google Scholar

Vonderhaar B.K., Bhattacharys A., Alhadi T., Liscia D.S., Andrew E.M., Young J.K., Ginsburg E., Bhatacharjee M., Horn T.M. (1985). Isolation, characterization and regulation of the prolactin receptor. J. Dairy Sci., 68: 466-488.Search in Google Scholar

Wood S., Loudon A. (2014). Clocks for all seasons: unwinding the roles and mechanisms of circadian and interval timers in the hypothalamus and pituitary. J. Endocrinol., pp. 39-59.10.1530/JOE-14-0141410403924891434Search in Google Scholar

Wylot M., Laszczyńska M., Słuczanowska-Gł ąbowska S. (2003). Prolactin receptors in human and various animal species (in Polish). Post. Biol. Kom., 31: 749-761. Search in Google Scholar

eISSN:
2300-8733
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine