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1.
Cloning and expression of a complementary DNA encoding a high affinity human neurotensin receptor // FEBS Lett., 1993. Vol. 317, N 1-2.-С.139- 142

2.
Konkoy Christopher S. Acute administration on neuroleptics decreases neurotensin metabolism on intact, regional rat brain slices // J. Pharmacol. and Exp. Ther., 1994. Vol. 269, N 2.-С.555-563

3.
Human umbilical vein endothelial cells express high affinity neurotensin receptors coupled to intracellular calcium release // J. Biol. Chem., 1995. Vol. 270, N 7.-С.3409-3413

4.
Merchant Kalpana M. Induction of neurotensin and c-fos mRNA in distinct subregions of rat neostriatum after acute methamphetamine: Comparison with acute haloperidol effects // J. Pharmacol. and Exp. Ther., 1994. Vol. 269, N 2.-С.806-812

5.
Merchant Kalpana M. Induction of neurotensin and c-fos mRNA in distinct subregions of rat neostriatum after acute methamphetamine: Comparison with acute haloperidol effects // J. Pharmacol. and Exp. Ther., 1994. Vol. 269, N 2.-С.806-812

6.
Lack of rapid desensitization of Ca{2+} responses in transfected CHO cells expressing the rat neurotensin receptor despite agonist-induced internalization // J. Neurochem., 1995. Vol. 64, N 6.-С.2518-2525

7.
Nicot A. Differential expression of neutotensin receptor mRNA in the dopaminergic cell groups of the rat diencephalon and mesencephalon // J. Neurosci. Res., 1995. Vol. 40, N 5.-С.667-674

8.
Effects of dexamethasone and forskolin on neurotensin production in rat hypothalamic cultures // Endocrinology, 1995. Vol. 136, N 6.-С.2554-2560

9.
Effects of dexamethasone and forskolin on neurotensin production in rat hypothalamic cultures // Endocrinology, 1995. Vol. 136, N 6.-С.2554-2560

10.
Effects of dexamethasone and forskolin on neurotensin production in rat hypothalamic cultures // Endocrinology, 1995. Vol. 136, N 6.-С.2554-2560

11.
Stable expression of the mouse levocabastine-sensitive neurotensin receptor in HEK 293 cell line: Binding properties, photoaffinity labeling, and internalization mechanism // Biochem. and Biophys. Res. Commun., 1998. Vol. 243, N 2.-С.585-590

12.
Gailly P.H. Role of calcium-calmodulin-dependent protein kinase II (CaMKII) and phospholipase A[2] (PLA[2]) in the Ca{2+} stores depletion-Ca{2+} entry coupling of chinese hamster ovary cells transfected with the rat neurotensin receptor // J. Gen. Physiol., 1998. Vol. 112, N 1.-С.19

13.
Evidence for additional neurotensin receptor subtypes: Neurotensin analogs that distinguish between neurotensin-mediated hypothermia and antinociception // Brain Res., 1998. Vol. 792, N 2.-С.246-252

14.
Zhang Влияние введения в желудочек головного мозга нейротензина на давление крови у крысы // Shengli xuebao, 1999. Vol. 51, N 2.-С.140-146

15.
Souaze Neurotensin agonist induces differential regulation of neurotensin receptor mRNA. Identification of distinct transcriptional and post-transcriptional mechanisms // J. Biol. Chem., 1997. Vol. 272, N 15.-С.10087-10094

16.
CSF neurotensin concentrations and antipsychotic treatment in schizophrenia and schizoaffective disorder // Amer. J. Psychiat., 1997. Vol. 154, N 7.-С.1019-1021

17.
Repeated administration of the neurotensin receptor antagonist SR 48692 differentially regulates mesocortical and mesolimbic dopaminergic systems // J. Neurochem., 1998. Vol. 71, N 3.-С.1158-1167

18.
Identification of the receptor subtype involved in the analgesic effect of neurotensin // J. Neurosci., 1999. Vol. 19, N 1.-С.503-510

19.
Repeated administration of the neurotensin receptor antagonist SR 48692 differentially regulates mesocortical and mesolimbic dopaminergic systems // J. Neurochem., 1998. Vol. 71, N 3.-С.1158-1167

20.
Identification of the receptor subtype involved in the analgesic effect of neurotensin // J. Neurosci., 1999. Vol. 19, N 1.-С.503-510

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