Protein changes in neurons and glias in same centers of hypothalamus at food motivation

Protein changes in neurons and glias in same centers of hypothalamus at food motivation

In this study, the morphological alteration of proteins in neurons and glias at some centers of hypothalamus during the period of food motivation has been analyzed. There is a correlation between morphological changes occurred in the neurons of lateral and ventromedial centers of hypothalamus and their functional properties. There is also o close correlation between physicochemical methods occurred in protein molecules and the function of lateral and ventromedial centers. In our study, we have additionally determined a short-termed correlation between protein molecules and functional system of food.

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  • [1]. Barak D, Kronman C, Ordentlich A, Ariel N, Bromberg A, Marcus D, Lazar A, Velan B, Shafferman A. 1994. Journal of Biological Chemistry. 269: 6296-6305.
  • [2]. Glebov RN, Berzucko SM. 1973. Obmennie prosessi v sisteme neyrogliya pri razlicnıh fisiologiceskih i patologiceskih sostoyaniyah nervnoy sistemi. Journal nevropatologii i psihatrii im 7: 1085-1095
  • [3]. Şelikov VN, Dergacev VV, Poletaev AT, Naumova TS. 1975. O vozmojnoy roli nöroglii v deyatelnosti nervnoy sistemi. Uspehi fiziologiceskih. 76: 90-100
  • [4]. Aleksandrovskaya MM. 1969. Morfoloceskiye danniye o vozmojnoy svyazi mejdu reaksiyey neyroglii ivoznknoveniyem medlennih biopotensialov v koze golovnogo mazga jivotnih. V kn: Dlitelniye elektriceskiye potansciali nervnoy sistemi. Mezniezeba, Tbilisi, 97-113
  • [5]. Hongling Z, Javier C. 2002. Sigma Receptors Inhibit High- Voltage-Activated Calcium Channels in Rat Sympathetic and Parasympathetic Neurons Journal Neurophysiol 87: 2867-2879.
  • [6]. Galambos RA. 1961. Glia-neuroe theory of brain function. Proceeding of National Academy of Sciences. 97: 129-136
  • [7]. Paez X., Stanley BG. and Leibowitz SF. 1993. Microdialysis analysis of norepinephrine levels in the paraventricular nucleus in association with food intake at dark onset. Brain Research., 606: 167-170
  • [8]. Cicero TJ, Provine RR. 1972. The levels of the brain spesific protein S-100 and 14-3-2 in the devoloping cliek spinal cord. Brain Research. 44: 294-298
  • [9]. Hyden H, Ewen BA. 1966. Glial protein spesific for the nervous. Proceeding of National Academy of Sciences. 55: 354-358
  • [10]. Hyden H, Lange PW. 1971. A knetic study of the neuron glia relationship. Journal Cellule Biology. 13: 233-237
  • [11]. Dahl D, Bigmani A. 1973. Glial fibrillary acidic protein from normal human brain. Purification and properties. Brain Research. 57: 343-360
  • [12]. Radic Z, Duran R, Vellom DC, Li Y, Cervenansky C, Taylor P. 1994. Journal of biological Chemistry. 270: 11233-9.
  • [13]. Geyer G. 1960. Lur Eiweibfarburg mit amido schworz 10B. Acta histochem 10: 286-292
  • [14]. Gerstein LM, Ball TV. 1969. Metodica differen sirovannogo viyavleniya neyronov i glii na parofinovih srezah. V kn: Sovremenniye metodu morfologiceskih issledovaniy mazga. Nauka, Moscowa, pp 11-13
  • [15]. Anohin PK, Sudakov KV. 1971. Neyrofiziologi ceskaya teoriya goloda, appetida i nasişeniya. Uspehi fiziologia. 2: 3-41
  • [16]. Harel M, Schalk I, Ehret-Sabatier L, Bouet F, Goeldner M, Hirth C, Axelsen PH, Silman I, Sussman JL. 1993. Proceeding of National Academy of Sciences. 90: 9015-5.
  • [17]. Anohin PK. 1968. Biologiya i neyrofiziologiya uslavnoga refl eksa Medisina Nauka, Moscowa, 543-547.
  • [18]. Gibbs J, Smith GP. 1984. Frontiess in neuroendocrinology. Raven press. P. 233.
  • [19]. Jhanwar-Uniyal M., Awad, IR,. Gearhart GM, Finkelstein JA and Leibowitz SF. 1991. Higher -noradrenergic receptors in paraventricular nucleus of obese zucker rats: Decline after food deprivation. Pharmacol. Biochemical Behaviour. 40: 853-859.
  • [20]. Menendez JA, Atrens DM and Leibowitz SF. 1992. Metabolic effects of galanin injections into the paraventricular nucleus of the hypothalamus. Peptides 13: 323-327.
  • [21]. Sudakov SK. 1988. Neyropeptidi v zentralnih mehanizmah pişevogo povedeniya. Uspehi sovremyennoy biologii. 105: 100-116
  • [22]. Leibowitz SF. 1992. Neurochemical-neuroendocrine systems in the brain controlling macronutrient intake and metabolism. Trends ın Neuorsiences 15: 491-497.
  • [23]. İbrahimova OS. 1998. Stıykturniye belki neyronov i glialnıh kletok sensomatornoy i limbiceskoy oblastey karı golovnogo mazga pri razlicnıh srokah golodaniya. (Avtoreferat dissertasii) Bakü 21.
  • [24]. Yarigin NE .1973. Patologiceskie u prisposobitelniye irmeneniya neyronov. Medisina, Moscowa, 190-192.
  • [25]. Young KC, Cheng-Shu L, David VS. 2002. Taste Responses of Neurons of the Hamster Solitary Nucleus Are Enhanced by Lateral Hypothalamic Stimulation Journal Neurophysiol 87: 1981-1992.
  • [26]. Askerov FB, Alekperova SA. 1991. Soderjoniye obşego belka antivnost neytralnıl i kislih peptid-gidrolaz v sybkletocnih fraksiyah gipotalamusa pri razlicnıh urovnyah pişeyov motivasii. Ukrainskıy Biohimiceskiy Jurnal 63: 38-43
  • [27]. Polenov AL. 1968. Gipotalamiceskaya neyrosekresiya. Nauka, Leningrad, 158
  • [28]. Askerov FB. 1991. Morfohimiceskiye zakono mernosti adaptasionno–kompensatornıh reaksiy yader gipotalamusa pri izmeneniy pişeyov i pityevoy motivasii (Avtoreferat dissertasi). Kiev. 50-58
Journal of Applied Biological Sciences-Cover
  • ISSN: 1307-1130
  • Başlangıç: 2007
  • Yayıncı: Nobel Bilim ve Araştırma Merkezi