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Общее количество найденных документов : 26
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 1-20    21-26 
1.
Af Klinteberg K. Signaling mechanisms underlying the insulinotropic effect of pituitary adenylate cyclase-activating polypeptide in HIT-T15 cells // Endocrinology, 1996. Vol. 137, N 7.-С.2791-2798

2.
Contribution of L- and non-L-type calcium channels to voltage-gated calcium current and glucose-dependent insulin secretion in HIT-T15 cells // Endocrinology, 1995. Vol. 136, N 10.-С.4589-4601

3.
Contribution of L- and non-L-type calcium channels to voltage-gated calcium current and glucose-dependent insulin secretion in HIT-T15 cells // Endocrinology, 1995. Vol. 136, N 10.-С.4589-4601

4.
Dynamics of Ca{2+} and guanosine 5'-['гамма'-thio]triphosphate action on insulin secretion from 'альфа'-toxin-permeabilized HIT-T15 cells // Biochem. J., 1994. Vol. 301, N 2.-С.523-529

5.
Eizirik Decio L. Interleukin-1-induced expression of nitric oxide synthase in insulin-producing cells is preceded by c-fos induction and depends on gene transcription and protein synthesis // FEBS Lett., 1993. Vol. 317, N 1-2.-С.62-66

6.
Exposure to extremely low frequency magnetic fields affects insulin-secreting cells // Bioelectromagnetics, 2008. Vol. 29, N 2.-С.118-124

7.
Filipsson K. Intracellular signaling pathways involved in the insulinotropic effect of PACAP38 // Regul. Peptides, 1997. Vol. 71, N 2.-С.110

8.
GTP-binding protein-independent potentiation by mastoparan of IL-1'бета'-induced nitric oxide release from insulin-secreting HIT-T15 cells // Apoptosis, 2004. Vol. 9, N 2.-С.145-148

9.
GTP-binding protein-independent potentiation by mastoparan of IL-1'бета'-induced nitric oxide release from insulin-secreting HIT-T15 cells // Apoptosis, 2004. Vol. 9, N 2.-С.145-148

10.
Investigation of the effects of antisense oligodeoxynucleotides to islet amyloid polypeptide mRNA on insulin release, content and expression // J. Endocrinol., 1996. Vol. 151, N 3.-С.341-348

11.
Lactate alters plasma membrane potential and stimulates the concentration of cytosolic Ca++ and the secretion of insulin by HIT-Т15 cells // Diabet. Med., 1989. Vol. 6, N 6.-С.33

12.
Modulation of adenosine triphosphate-sensitive potassium channel and voltage-dependent calcium channel by activin A in HIT-T15 cells // Endocrinology, 1995. Vol. 136, N 7.-С.2960-2966

13.
Pioglitazone hydrochloride stimulates insulin secretion in HIT-T 15 cells by inducing Ca{2+} influx // J. Endocrinol., 1996. Vol. 150, N 1.-С.107-111

14.
Pioglitazone hydrochloride stimulates insulin secretion in HIT-T 15 cells by inducing Ca{2+} influx // J. Endocrinol., 1996. Vol. 150, N 1.-С.107-111

15.
Pioglitazone hydrochloride stimulates insulin secretion in HIT-T 15 cells by inducing Ca{2+} influx // J. Endocrinol., 1996. Vol. 150, N 1.-С.107-111

16.
Pituitary adenylate cyclase-activating peptide, carbachol, and glucose stimulate insulin release in the absence of an increase in intracellular Ca{2+} // Mol. Pharmacol., 1996. Vol. 50, N 4.-С.1047-1054

17.
Potentiation of insulin secretion by phorbol esters is mediated by PKC-'альфа' and nPKC isoforms // Amer. J. Physiol., 2002. Vol. 283, N 5.-С.E880-E888

18.
Reconstitution of glucotoxic HIT-T15 cells with somatostatin transcription factor-1 partially restores insulin promoter activity // Diabetes, 1998. Vol. 47, N 6.-С.900-904

19.
Regazzi R. Distribution of smg25/rab3, a GTP-binding protein of insulin-secreting cells // Diabetologia, 1991. Vol. 34, Suppl. N2.-С.84

20.
Somatostatin selectively couples to G['омикрон''альфа'] in HIT-T15 cells // Diabetes, 1995. Vol. 44, N 1.-С.85-89

 1-20    21-26 
 




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