Cite

1. Andressen C., Blume I., Celia M. R.: Calcium binding proteins: selective markers of nerve cells. Cell Tissue Res 1993, 271, 181-208.10.1007/BF00318606 Search in Google Scholar

2. Bannon A.W., Seda J., Carmouche M., Francis J.M., Jarosinski M.A., Douglass J.: Multiple behavioral effects of cocaine- and amphetamine-regulated transcript (CART) peptides in mice: CART 42-89 and CART 49- 89 differ in potency and activity. J Pharmacol Exp Ther 2001, 299, 1021-1026. Search in Google Scholar

3. Bogus-Nowakowska K., Robak A., Równiak M., Wasilewska B., Najdzion J., Kolenkiewicz M., Żakowski W., Majewski M.: Distribution and chemical coding pattern of the cocaine- and amphetamine-regulated transcript (CART) immunoreactivity in the preoptic area of the pig. Folia Histochem Cytobiol 2011, 49, 604-614.10.5603/FHC.2011.0083 Search in Google Scholar

4. Bratincsak A., Palkovits M.: Evidence that peripheral rather than intracranial thermal signals induce thermoregulation. Neuroscience 2005, 135, 525-532.10.1016/j.neuroscience.2005.06.028 Search in Google Scholar

5. Celio M.R.: Calbindin D28k and parvalbumin in the rat nervous system. Neuroscience 1990, 35, 375-475.10.1016/0306-4522(90)90091-H Search in Google Scholar

6. Cunningham M.J., Clifton D.K., Steiner R.A.: Leptin's actions on the reproductive axis: perspectives and mechanisms. Biol Reprod 1999, 60, 216-222.10.1095/biolreprod60.2.216 Search in Google Scholar

7. Edelmann M., Wolfe C., Scordalakes E.M., Rissman E.F., Tobet S.: Neuronal nitric oxide synthase and calbindin delineate sex differences in the developing hypothalamus and preoptic area. Dev Neurobiol 2007, 67, 1371-1381.10.1002/dneu.20507 Search in Google Scholar

8. Fortin M., Parent A.: Distribution of calretinin, calbindin-D28k and parvalbumin in the hypothalamus of the squirrel monkey. J Chem Neuroanat 1997, 14, 51-61.10.1016/S0891-0618(97)10012-6 Search in Google Scholar

9. Gil M., Bhatt R., Picotte K.B., Hull E.M.: Oxytocin in the medial preoptic area facilitates male sexual behavior in the rat. Horm Behav 2010, 59, 435-443.10.1016/j.yhbeh.2010.12.012308141521195714 Search in Google Scholar

10. Hull E.M., Du J., Lorrain D.S., Matuszewich L.: Extracellular dopamine in the medial preoptic area: implications for sexual motivation and hormonal control of copulation. J Neurosci 1995, 15, 7465-7471.10.1523/JNEUROSCI.15-11-07465.1995 Search in Google Scholar

11. Hurtazo H.A., Parades R.G., Agmo A.: Inactivation of the medial preoptic area/anterior hypothalamus by lidocaine reduces male sexual behavior and sexual incentive motivation in male rats. Neuroscience 2008, 152, 331-337.10.1016/j.neuroscience.2007.10.06318262728 Search in Google Scholar

12. Kolenkiewicz M., Robak A., Równiak M., Bogus- Nowakowska K., Całka J., Majewski M.: Distribution of cocaine- and amphetamine--regulated transcript in the hippocampal formation of the guinea pig and domestic pig. Folia Morphol 2009, 68, 23-31. Search in Google Scholar

13. Koutcherov Y., Paxinos G., Mai J.K.: Organization of the human medial preoptic nucleus, J Comp Neurol 2007, 503, 392-406.10.1002/cne.21355 Search in Google Scholar

14. Kristensen P., Judge M.E., Thim L., Ribel U., Christjansen K.N., Wulff B.S., Clausen J.T., Jensen P.B., Madsen O.D., Vrang N., Larsen P.J., Hastrup S.: Hypothalamic CART is a new anorectic peptide regulated by leptin. Nature 1998, 393, 72-76.10.1038/29993 Search in Google Scholar

15. Kuhar M.J., Jaworski J.N., Hubert G.W., Philpot K.B., Dominguez G.: Cocaine- and amphetamine-regulated transcript peptides play a role in drug abuse and are potential therapeutic targets. AAPS J 2005, 7, E259- E265.10.1208/aapsj070125 Search in Google Scholar

16. Kumar V.M.: Why the medial preoptic area is important for sleep regulation. Ind J Physiol Pharmacol 2004, 48, 137-149. Search in Google Scholar

17. Lázár G., Calle M., Roubos E.W., Kozicz T.: Immunohistochemical localization of cocaine- and amphetamine-regulated transcript peptide in the central nervous system of the frog Rana esculenta. J Comp Neurol 2004, 477, 324-339.10.1002/cne.20264 Search in Google Scholar

18. Lebrethon M.C., Vandersmissen E., Gérard A., Parent A.S., Junien J.L., Bourguignon J.P.: In vitro stimulation of the prepubertal rat gonadotropin-releasing hormone pulse generator by leptin and neuropeptide Y through distinct mechanisms. Endocrinology 2000, 141, 1464-1469.10.1210/endo.141.4.7432 Search in Google Scholar

19. Leslie R.A., Sanders S.J., Anderson S.I., Schuhler S., Horan T.L., Ebling F.J.: Appositions between cocaine and amphetamine-related transcript- and gonadotropin releasing hormone-immunoreactive neurons in the hypothalamus of the Siberian hamster. Neurosci Lett 2001, 314, 111-114.10.1016/S0304-3940(01)02291-1 Search in Google Scholar

20. Palczewska M., Groves P., Batta G., Heize B., Kuźnicki J.: Calretinin and calbindin D28k have different domain organization. Protein Sci 2003, 12, 180-184.10.1110/ps.0215303231240212493841 Search in Google Scholar

21. Perkins A., Roselli Ch.E.: The ram as a model for behavioral neuroendocrinology. Horm Behav 2007, 5, 270-277. Search in Google Scholar

22. Rondini T.A., Baddini S.P., Sousa L.F., Bittencourt J.C., Elias C.F.: Hypothalamic cocaine- and amphetamineregulated transcript neurons project to areas expressing gonadotropin releasing hormone immunoreactivity and to the anteroventral periventricular nucleus in male and female rats. Neuroscience 2004, 125, 735-748.10.1016/j.neuroscience.2003.12.04515099687 Search in Google Scholar

23. Roselli C.E., Stormshak F.: Prenatal programming of sexual partner preference: the ram model. J Neuroendocrinol 2009, 21, 359-364.10.1111/j.1365-2826.2009.01828.x266881019207819 Search in Google Scholar

24. Równiak M., Robak A., Bogus-Nowakowska K., Wasilewska B., Najdzion J., Majewski M.: The cocaineand amphetamine-regulated transcript (CART) immunoreactivity in the amygdala of the pig. Anat Histol Embryol 2010, 39, 385-397.10.1111/j.1439-0264.2010.01006.x20594191 Search in Google Scholar

25. Sanghera M.K., Zamora J.L., German D.C.: Calbindin- D28k-containing neurons in the human hypothalamus: relationship to dopaminergic neurons. Neurodegeneration 1995, 4, 375-381.10.1006/neur.1995.0045 Search in Google Scholar

26. Simerly R.B., Gorski R.A., Swanson L.W.: Neurotransmitter specificity of cells and fibers in the medial preoptic nucleus: an immunohistochemical study in the rat. J Comp Neurol 1986, 246, 343-363.10.1002/cne.902460305 Search in Google Scholar

27. Smith Y., Kieval J., Couceyro P.R., Kuhar M.J.: CART peptide immunoreactive neurones in the nucleus accumbens in monkeys: ultrastructural analysis, colocalization studies, and synaptic interactions with dopaminergic afferents. J Comp Neurol 1999, 407, 491-511.10.1002/(SICI)1096-9861(19990517)407:4<491::AID-CNE3>3.0.CO;2-0 Search in Google Scholar

28. Sturgis J.D., Bridges R.S.: N-methyl-DL-aspartic acid lesions of the medial preoptic area distrupt ongoing parental behavior in male rats. Physiol Behav 1997, 62, 305-310.10.1016/S0031-9384(97)88985-8 Search in Google Scholar

29. Swaab D.F., Fliers E.: A sexually dimorphic nucleus in the human brain. Science 1985, 228, 1112-1115.10.1126/science.3992248 Search in Google Scholar

30. Swanson L.W.: An autoradiographic study of the efferent connections of the preoptic region in the rat. J Comp Neurol 1976, 167, 227-256.10.1002/cne.901670207 Search in Google Scholar

31. Valera A.G., Cavalcante J.C., Elias C.F., Felício L.F.: Cocaine- and amphetamine-regulated transcript is overexpressed in the anteroventral periventricular nucleus of pregnant rats. J Neuroendocrinol 2006, 18, 711-714.10.1111/j.1365-2826.2006.01457.x Search in Google Scholar

32. Vrang N.: Anatomy of hypothalamic CART neurons. Peptides 2006, 27, 1970-1980.10.1016/j.peptides.2005.10.029 Search in Google Scholar

33. Wang P.Q., Deng L.M., Zhang B.Y., Chu M.X., Hou J.Z.: Polymorphisms of the cocaine-amphetamineregulated transcript (CART) gene and their association with reproductive traits in Chinese goats. Genet Mol Res 2011, 10, 731-738.10.4238/vol10-2gmr1091 Search in Google Scholar

34. Yahr P.: Sex difference and response to testosterone in gabaergic cells of the medial preoptic nucleus and ventral bed nuclei of the stria terminalis in gerbils. Horm Behav 2011, 59, 473-476.10.1016/j.yhbeh.2011.01.006 Search in Google Scholar

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