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Journal Abstract Search


146 related items for PubMed ID: 2874054

  • 1. Hypothalamic dynorphin and vasopressin mRNA expression in normal and Brattleboro rats.
    Sherman TG, Civelli O, Douglass J, Herbert E, Burke S, Watson SJ.
    Fed Proc; 1986 Aug; 45(9):2323-7. PubMed ID: 2874054
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  • 4. Localization and osmotic regulation of vesicular glutamate transporter-2 in magnocellular neurons of the rat hypothalamus.
    Hrabovszky E, Csapó AK, Kalló I, Wilheim T, Túri GF, Liposits Z.
    Neurochem Int; 2006 Jun; 48(8):753-61. PubMed ID: 16481069
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  • 5. Peptides and transmitter enzymes in hypothalamic magnocellular neurons after administration of hyperosmotic stimuli: comparison between messenger RNA and peptide/protein levels.
    Meister B, Cortés R, Villar MJ, Schalling M, Hökfelt T.
    Cell Tissue Res; 1990 May; 260(2):279-97. PubMed ID: 1694105
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  • 6. Hypothalamic pituitary adrenal axis and hypothalamic-neurohypophyseal responsiveness in water-deprived rats.
    Grinevich V, Ma XM, Verbalis J, Aguilera G.
    Exp Neurol; 2001 Oct; 171(2):329-41. PubMed ID: 11573986
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  • 9. Brattleboro rat hypothalamic neurons transcribe vasopressin gene: evidence from in situ hybridization.
    McCabe JT, Morrell JI, Ivell R, Schmale H, Richter D, Pfaff DW.
    Neuroendocrinology; 1986 Oct; 44(3):361-4. PubMed ID: 3808221
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  • 10. Localization of arginine vasopressin-neurophysin II messenger ribonucleic acid in the hypothalamus of control and Brattleboro rats by hybridization histochemistry with a synthetic pentadecamer oligonucleotide probe.
    Fuller PJ, Clements JA, Funder JW.
    Endocrinology; 1985 Jun; 116(6):2366-8. PubMed ID: 3996319
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  • 11. Magnocellular vasopressin system in ontogenesis: development and regulation.
    Ugrumov MV.
    Microsc Res Tech; 2002 Jan 15; 56(2):164-71. PubMed ID: 11810719
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  • 12. Regulation of hypothalamic magnocellular neuropeptides and their mRNAs in the Brattleboro rat: coordinate responses to further osmotic challenge.
    Sherman TG, Day R, Civelli O, Douglass J, Herbert E, Akil H, Watson SJ.
    J Neurosci; 1988 Oct 15; 8(10):3785-96. PubMed ID: 2903913
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  • 13. Rapid, high-resolution in situ hybridization histochemistry with radioiodinated synthetic oligonucleotides.
    Lewis ME, Arentzen R, Baldino F.
    J Neurosci Res; 1986 Oct 15; 16(1):117-24. PubMed ID: 3746945
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  • 14. Quantitation of vasopressin mRNA and oxytocin mRNA in hypothalamic nuclei by solution hybridization assays.
    Burbach JP, Van Tol HH, Bakkus MH, Schmale H, Ivell R.
    J Neurochem; 1986 Dec 15; 47(6):1814-21. PubMed ID: 3772378
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  • 15. In situ hybridization histochemistry with oxytocin synthetic oligonucleotide: strategy for making the probe and its application.
    Kawata M, McCabe JT, Pfaff DW.
    Brain Res Bull; 1988 Jun 15; 20(6):693-7. PubMed ID: 3409053
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  • 16. Up-regulation of VGLUT2 expression in hypothalamic-neurohypophysial neurons of the rat following osmotic challenge.
    Kawasaki A, Hoshi K, Kawano M, Nogami H, Yoshikawa H, Hisano S.
    Eur J Neurosci; 2005 Aug 15; 22(3):672-80. PubMed ID: 16101749
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  • 17. Vasopressin, oxytocin, dynorphin, enkephalin and corticotrophin-releasing factor mRNA stimulation in the rat.
    Lightman SL, Young WS.
    J Physiol; 1987 Dec 15; 394():23-39. PubMed ID: 2895179
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  • 18. Galanin-R1 receptor in anterior and mid-hypothalamus: distribution and regulation.
    Landry M, Aman K, Hökfelt T.
    J Comp Neurol; 1998 Sep 28; 399(3):321-40. PubMed ID: 9733081
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  • 19. Vasopressin mRNA in situ hybridization: localization and regulation studied with oligonucleotide cDNA probes in normal and Brattleboro rat hypothalamus.
    Uhl GR, Zingg HH, Habener JF.
    Proc Natl Acad Sci U S A; 1985 Aug 28; 82(16):5555-9. PubMed ID: 3860875
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  • 20. In situ hybridization histochemistry for the analysis of gene expression in the endocrine and central nervous system tissues: a 3-year experience.
    Bloch B, Popovici T, Le Guellec D, Normand E, Chouham S, Guitteny AF, Bohlen P.
    J Neurosci Res; 1986 Aug 28; 16(1):183-200. PubMed ID: 3755762
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