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1.
Reisine Somatostatin inhibits cAMP-dependent and cAMP-independent calcium influx in the clonal pituitary tumor cell line AtT-20 through the same receptor population // J. Pharmacol. and Exp. Ther., 1988. Vol. 245, N 1.-С.225-231

2.
Findling James W. The Cushing syndromes: An enlarging clinical spectrum // N. Engl. J. Med., 1989. Vol. 321, N 24.-С.1677-1678

3.
Effect of taxol and nocodazole on the intracellular distribution of prolactin and hormone secretton in GH3В6 cells // Cell Biol.. -London etc., 1990.-С.196

4.
High affinity histamine H[3] receptors regulate ACTH release by AtT-20 cells // Eur. J. Pharmacol., 1992. Vol. 210, N 1.-С.31-35

5.
Vacher P. Complex effects of arachidonic acid and its lipoxygenase products on cytosolic calcium in GH[3] cells // Amer. J. Physiol., 1992. Vol. 263, N 5.-С.E/903-E/912

6.
Papas K.K. Cultivation of recombinant, insulin-secreting AtT-20 cells as free and entrapped spheroids // Cytotechnology, 1993. Vol. 13, N 1.-С.1-12

7.
Thyrotropin releasing hormone (TRH)-induced release of calcium ions from intracellular stores and influx of calcium ions are mediated by separate G proteins in the rat pituitaryderived GH3 tumour cell line // J. Physiol., 1993. Vol. 467.-С.84

8.
CCK[B] receptor signaling in rat pituitary GH3 cells. CCK-8S-induced intracellular calcium mobilization by Ca{2+} release and Ca{2+} influx // Neuropeptides, 1994. Vol. 27, N 4.-С.211-216

9.
Scammels J.G. Induction of secretogranin II mRNA by protein synthesis inhibitors in GH[4]C[1] cells // Amer. J. Physiol., 1994. Vol. 267, N 5.-С.Е656-Е664

10.
Activation of the prolactin promoter in transfected GH[3] cells by posterior pituitary cells // Endocrinology, 1994. Vol. 135, N 6.-С.2735- 2741

11.
CCK[B] receptor signaling in rat pituitary GH3 cells. CCK-8S-induced intracellular calcium mobilization by Ca{2+} release and Ca{2+} influx // Neuropeptides, 1994. Vol. 27, N 4.-С.211-216

12.
Opening of large-conductance calcium-activated potassium channels by the substituted benzimidazolone NS004 // J. Neurophysiol., 1994. Vol. 71, N 5.-С.1873-1882

13.
Mechanism of action of pituitary adenylate cyclase-activating polypeptide (PACAP) in human nonfunctioning pituitary tumors // J. Neuroendocrinol., 1995. Vol. 7, N 9.-С.695-702

14.
GH3 pituitary tumor cells contain heteromeric type I and type II receptor complexes for transforming growth factor 'бета' and activin-A // J. Biol. Chem., 1995. Vol. 270, N 2.-С.765-769

15.
Pawlikowski Failure of excitatory amino acids receptor agonists NMDA and quiscalate to affect the cell proliferation // Pol. J. Pharmacol., 1995. Vol. 47, N 2.-С.185-187

16.
Pawlikowski Failure of excitatory amino acids receptor agonists NMDA and quiscalate to affect the cell proliferation // Pol. J. Pharmacol., 1995. Vol. 47, N 2.-С.185-187

17.
The growth hormone secretagogue, L-692,429, induces phosphatidylinositol hydrolysis and hormone secretion by human pituitary tumors // Biochem. and Biophys. Res. Commun., 1995. Vol. 208, N 2.-С.555-561

18.
Pawlikowski Failure of excitatory amino acids receptor agonists NMDA and quiscalate to affect the cell proliferation // Pol. J. Pharmacol., 1995. Vol. 47, N 2.-С.185-187

19.
Mechanism of action of pituitary adenylate cyclase-activating polypeptide (PACAP) in human nonfunctioning pituitary tumors // J. Neuroendocrinol., 1995. Vol. 7, N 9.-С.695-702

20.
Влияние пептида гастролиберина и вазоактивного кишечного полипептида на транскрипцию гена пролактина в опухоли гипофиза крыс // Shengli xuebao, 1997. Vol. 49, N 1.-С.79-87

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