24 results on '"Gromada J"'
Search Results
2. Restoration of First-Phase Insulin Secretion by the Imidazoline Compound LY374284 in Pancreatic Islets of Diabetic dbdb Mice
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BRENNER, MB, GROMADA, J, EFANOV, AM, BOKVIST, K, and MEST, H-J
- Abstract
The effect of the imidazoline compound LY374284 has been studied in pancreatic islets of dbdb mice, a progressive model of diabetes. In perifusion experiments, pancreatic islets of dbdb mice showed a progressive deterioration of glucose-induced insulin release with increasing age, whereby the first phase of insulin secretion was almost completely abolished and the second phase was substantially decreased by 15 weeks of age. LY374284 restored the first phase of glucose-induced insulin secretion in islets of 16-week-old dbdb mice to 70 of that observed in islets isolated from age-matched nondiabetic db1 mice. LY374284 did not affect insulin secretion at a low glucose concentration (3.3 mmolL). A similar restoration of first phase insulin secretion was observed after application of glucagon-like peptide-1, whereas a sulfonylurea agent, tolbutamide, was inactive. LY374284 did not affect cytosolic Ca21concentration or cellular ATP content. Furthermore, LY374284 strongly enhanced insulin secretion in islets of dbdb and db1 mice maximally depolarized by 30 mmolL K1and 250 mmolL diazoxide. The present data suggest that the imidazoline compound LY374284 restores biphasic insulin secretion in islets of diabetic dbdb mice by amplifying glucose-induced insulin secretion at a site distal to Ca21-influx.
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- 2003
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3. Measurement of Initial Degree of Polymerization without Reactivation as a New Method To Estimate Rate Constants of Deactivation in ATRP
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Gromada, J. and Matyjaszewski, K.
- Abstract
A new simple method has been developed for the estimation of deactivation rate constants in atom transfer radical polymerization using copper catalysts. This method is based on the principle of reverse ATRP and is conducted under an air atmosphere, using molecular oxygen as an oxidant for Cu(I) species. The deactivation rate constants for several different reactive copper complexes were estimated by this procedure, and the results are correlated with those obtained from the analysis of the evolution of molecular weight distribution with conversion and with competitive trapping reactions using nitroxides. The effect of temperature on these rate constants was also studied.
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- 2002
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4. Nateglinide, but not repaglinide, stimulates growth hormone release in rat pituitary cells by inhibition of K channels and stimulation of cyclic AMP-dependent exocytosis
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Gromada, J, Bokvist, K, Hoy, M, Olsen, HL, Lindstrom, P, Hansen, BS, Gotfredsen, CF, Rorsman, P, and Thomsen, MK
- Abstract
OBJECTIVE: GH causes insulin resistance, impairs glycemic control and increases the risk of vascular diabetic complications. Sulphonylureas stimulate GH secretion and this study was undertaken to investigate the possible stimulatory effect of repaglinide and nateglinide, two novel oral glucose regulators, on critical steps of the stimulus-secretion coupling in single rat somatotrophs. METHODS: Patch-clamp techniques were used to record whole-cell ATP-sensitive K(+) (K(ATP)) and delayed outward K(+) currents, membrane potential and Ca(2+)-dependent exocytosis. GH release was measured from perifused rat somatotrophs. RESULTS: Both nateglinide and repaglinide dose-dependently suppressed K(ATP) channel activity with half-maximal inhibition being observed at 413 nM and 13 nM respectively. Both compounds induced action potential firing in the somatotrophs irrespective of whether GH-releasing hormone was present or not. The stimulation of electrical activity by nateglinide, but not repaglinide, was associated with an increased mean duration of the action potentials. The latter effect correlated with a reduction of the delayed outward K(+) current, which accounts for action potential repolarization. The latter effect had a K(d) of 19 microM but was limited to 38% inhibition. When applied at concentrations similar to those required to block K(ATP) channels, nateglinide in addition potentiated Ca(2+)-evoked exocytosis 3.3-fold (K(d)=3 microM) and stimulated GH release 4.5-fold. The latter effect was not shared by repaglinide. The stimulation of exocytosis by nateglinide was mimicked by cAMP and antagonized by the protein kinase A inhibitor Rp-cAMPS. CONCLUSION: Nateglinide stimulates GH release by inhibition of plasma membrane K(+) channels, elevation of cytoplasmic cAMP levels and stimulation of Ca(2+)-dependent exocytosis. By contrast, the effect of repaglinide was confined to inhibition of the K(ATP) channels.
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- 2002
5. Simultaneous Reverse and Normal Initiation in Atom Transfer Radical Polymerization
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Gromada, J. and Matyjaszewski, K.
- Abstract
Atom transfer radical polymerization (ATRP) with concurrent reverse and normal initiation process was investigated. Bulk polymerizations of both n-butyl acrylate (BA) and styrene (St) were conducted using CuBr
2 complexed with 1 equiv of tris(2-(dimethylamino)ethyl)amine (Me6 -TREN) as the catalytic system, initiated by 2,2-azobis(isobutyronitrile) (AIBN) and an alkyl halide (RX). Polymerization of BA at 60 or 90 °C provided well-defined polymers with molecular weights up to 40 000 g/mol and low polydispersities (Mw /Mn < 1.10). Similar results were obtained for the polymerization of styrene at 110 °C. The effects of polymerization temperature and solubility were studied in order to moderate the high activity of the catalyst and the poor solubility of the Cu(II) complex in monomers. Additionally, other parameters influencing this ATRP process are discussed.- Published
- 2001
6. Reduction in the rate of inositol 1,4,5-trisphosphate synthesis in rat parotid acini by lithium
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Tritsaris, K., Gromada, J., Jorgensen, T. D., Nauntofte, B., and Dissing, S.
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- 2001
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7. Regulation of glucagon release in mouse α‐cells by KATPchannels and inactivation of TTX‐sensitive Na+channels
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Göpel, S. O., Kanno, T., Barg, S., Weng, X.‐G., Gromada, J., and Rorsman, P.
- Abstract
1The perforated patch whole‐cell configuration of the patch‐clamp technique was applied to superficial glucagon‐secreting α‐cells in intact mouse pancreatic islets.2α‐cells were distinguished from the β‐ and δ‐cells by the presence of a large TTX‐blockable Na+current, a TEA‐resistant transient K+current sensitive to 4‐AP (A‐current) and the presence of two kinetically separable Ca2+current components corresponding to low‐ (T‐type) and high‐threshold (L‐type) Ca2+channels.3The T‐type Ca2+, Na+and A‐currents were subject to steady‐state voltage‐dependent inactivation, which was half‐maximal at −45, −47 and −68 mV, respectively.4Pancreatic α‐cells were equipped with tolbutamide‐sensitive, ATP‐regulated K+(KATP) channels. Addition of tolbutamide (0·1 mm) evoked a brief period of electrical activity followed by a depolarisation to a plateau of −30 mV with no regenerative electrical activity.5Glucagon secretion in the absence of glucose was strongly inhibited by TTX, nifedipine and tolbutamide. When diazoxide was added in the presence of 10 mmglucose, concentrations up to 2 μmstimulated glucagon secretion to the same extent as removal of glucose.6We conclude that electrical activity and secretion in the α‐cells is dependent on the generation of Na+‐dependent action potentials. Glucagon secretion depends on low activity of KATPchannels to keep the membrane potential sufficiently negative to prevent voltage‐dependent inactivation of voltage‐gated membrane currents. Glucose may inhibit glucagon release by depolarising the α‐cell with resultant inactivation of the ion channels participating in action potential generation.
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- 2000
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8. Acute stimulation with long chain acyl-CoA enhances exocytosis in insulin-secreting cells (HIT T-15 and NMRI beta-cells).
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Deeney, J T, Gromada, J, Høy, M, Olsen, H L, Rhodes, C J, Prentki, M, Berggren, P O, and Corkey, B E
- Abstract
Non-insulin-dependent diabetes mellitus is associated with, in addition to impaired insulin release, elevated levels of free fatty acids (FFA) in the blood. Insulin release is stimulated when beta-cells are acutely exposed to FFA, whereas chronic exposure may inhibit glucose-induced insulin secretion. In the present study we investigated the direct effects of long chain acyl-CoA (LC-CoA), the active intracellular form of FFA, on insulin exocytosis. Palmitoyl-CoA stimulated both insulin release from streptolysin-O-permeabilized HIT cells and fusion of secretory granules to the plasma membrane of mouse pancreatic beta-cells, as measured by cell capacitance. The LC-CoA effect was chain length-dependent, requiring chain lengths of at least 14 carbons. LC-CoA needed to be present to stimulate insulin release, and consequently there was no effect following its removal. The stimulatory effect was observed after inhibition of protein kinase activity and in the absence of ATP, even though both kinases and ATP, themselves, modulate exocytosis. The effect of LC-CoA was inhibited by cerulenin, which has been shown to block protein acylation. The data suggest that altered LC-CoA levels, resulting from FFA or glucose metabolism, may act directly on the exocytotic machinery to stimulate insulin release by a mechanism involving LC-CoA protein binding.
- Published
- 2000
9. Scinderin-derived actin-binding peptides inhibit Ca2+- and GTPgS-dependent exocytosis in mouse pancreatic b-cells
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Bruun, T. Z., Hoy, M., and Gromada, J.
- Published
- 2000
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10. Uptake and release of Ca2+ by the endoplasmic reticulum contribute to the oscillations of the cytosolic Ca2+ concentration triggered by Ca2+ influx in the electrically excitable pancreatic B-cell.
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Gilon, P, Arredouani, A, Gailly, P, Gromada, J, and Henquin, J C
- Abstract
The role of intracellular Ca2+ pools in oscillations of the cytosolic Ca2+ concentration ([Ca2+]c) triggered by Ca2+ influx was investigated in mouse pancreatic B-cells. [Ca2+]c oscillations occurring spontaneously during glucose stimulation or repetitively induced by pulses of high K+ (in the presence of diazoxide) were characterized by a descending phase in two components. A rapid decrease in [Ca2+]c coincided with closure of voltage-dependent Ca2+ channels and was followed by a slower phase independent of Ca2+ influx. Blocking the SERCA pump with thapsigargin or cyclopiazonic acid accelerated the rising phase of [Ca2+]c oscillations and increased their amplitude, which suggests that the endoplasmic reticulum (ER) rapidly takes up Ca2+. It also suppressed the slow [Ca2+]c recovery phase, which indicates that this phase corresponds to the slow release of Ca2+ that was taken up by the ER during the upstroke of the [Ca2+]c transient. Glucose promoted the buffering capacity of the ER and amplified the slow [Ca2+]c recovery phase. The slow phase induced by high K+ pulses was not affected by modulators of Ca2+- or inositol 1,4,5-trisphosphate-induced Ca2+ release, did not involve a depolarization-induced Ca2+ release, and was also observed at the end of a rapid rise in [Ca2+]c triggered from caged Ca2+. It is attributed to passive leakage of Ca2+ from the ER. We suggest that the ER displays oscillations of the Ca2+ concentration ([Ca2+]ER) concomitant and parallel to [Ca2+]c. The observation that thapsigargin depolarizes the membrane of B-cells supports the proposal that the degree of Ca2+ filling of the ER modulates the membrane potential. Therefore, [Ca2+]ER oscillations occurring during glucose stimulation are likely to influence the bursting behavior of B-cells and eventually [Ca2+]c oscillations.
- Published
- 1999
11. Characterisation of sulphonylurea and ATP-regulated K<SUP>+</SUP> channels in rat pancreatic A-cells
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Bokvist, K., Olsen, H.L., Høy, M., Gotfredsen, C.F., Holmes, W.F., Buschard, K., Rorsman, P., and Gromada, J.
- Abstract
We have monitored whole-cell and single channel ATP-sensitive K+ (KATP) currents in isolated rat glucagon-secreting pancreatic A-cells. Tolbutamide produced a concentration-dependent decrease in the whole-cell KATP conductance (Ki=6 µM) and initiated action potential firing. The K+ channel opener diazoxide, but not cromakalim or pinacidil, inhibited electrical activity and increased the whole-cell K+ conductance fourfold. ATP applied to the intracellular face of the membrane inhibited KATP channel activity with a Ki of 17 µM, an effect that could be counteracted by Mg-ADP and Mg-GDP. GTP and UTP did not affect KATP channel activity. Phosphatidylinositol 4,5-bisphosphate activated KATP channels inhibited by ATP after a delay of 90 s. In situ hybridisation demonstrated the expression of the mRNA encoding KATP channel subunits Kir6.2 and SUR1 but not Kir6.1 and SUR2. We conclude that rat pancreatic A-cells express KATP channels with the nucleotide-, sulphonylurea- and K+ channel-opener sensitivities expected for a channel formed by Kir6.2 and SUR1 subunits.
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- 1999
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12. 35th Annual Meeting of the European Association for the Study of Diabetes
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Melander, A., Olsson, J., Lindberg, G., Salzman, A., Howard, T., Stang, P., Lydick, E., Emslie-Smith, A., Boyle, D. I. R., Evans, J. M. M., Macdonald, T. M., Bain, J., Sullivan, F., Juhl, C., Pørksen, N., Sturis, J., Hollingdal, M., Pincus, S., Veldhuis, J., Dejgaard, A., Schmitz, O., Kristensen, J. S., Frandsen, K. B., Bayer, Th., Müller, P., Dunning, B. E., Paladini, S., Gutierrez, C., Deacon, R., Valentin, M., Grunberger, G., Weston, W. M., Patwardhan, R., Rappaport, E. B., Sargeant, L. A., Wareham, N. J., Khaw, K. T., Zethelius, Björn, Lithell, Hans, Hales, C. Nicholas, Berne, Christian, Lakka, H.-M., Oksanen, L., Tuomainen, T.-P., Kontula, K., Salonen, J. T., Dekker, J. M., de Boks, P., de Vegt, F., Stehouwer, C. D. A., Nijpels, G., Bouter, L. M., Heine, R. J., Bruno, G., Cavallo-Perin, P., Bargero, G., D’Errico, N., Borra, M., Macchia, G., Pagano, G., Newton, R. W., Ruta, D. A., New, J. P., Wallace, C., Roxburgh, M. A., Young, R. J., Vaughan, N. J. A., Elliott, P., Brennan, G., Devers, M., MacAlpine, R., Steinke, D., Lawson, D. H., Decallonne, B., Casteels, K., Gysemans, C., Bouillon, R., Mathieu, C., Linn, Thomas, Strate, Christine, Schneider, Kerstin, Funda, D. P., Jirsa, M., Kozáková, H., Kaas, A., Kofronová, O., Tlaskalová-Hogenová, H., Buschard, K., Wanka, H., Hartmann, A., Kuttler, B., Rasmussen, S. B., Sørensen, T. S., Markholst, H., Petersen, J. S., Karounos, D., Dyrberg, T., Mabley, J. G., Haskó, G., Szabó, C., Seissler, J., Nguyen, T. B. T., Steinbrenner, H., Scherbaum, W. A., Cipriani, R., Gabriele, A., Sensi, M., Guidobaldi, L., Pantellini, F., Cerrito, M. G., Scarpa, S., Di Mario, U., Morano, S., Ceolotto, G., Iori, E., Baritono, E., Del Prato, S., Semplicini, A., Trevisan, R., Zerbini, G., Meregalli, G., Asnaghi, V., Tentori, F., Maestroni, A., Mangili, R., Marescotti, C., Vedovato, M., Tiengo, A., Tadjieva, J., Mankovsky, B. N., Van Aken, S., Raes, A., Vande Walle, J., Matthys, D., Craen, M., Hansen, H. P., Lund, S. S., Rossing, P., Jensen, T., Parving, H.-H., Andersen, S., Tarnow, L., Hansen, B. V., Trautner, C., Haastert, B., Ennenbach, N., Willich, S., Tabák, Á. Gy., Orchard, T. J., Spranger, J., Preissner, K. T., Schatz, H., Pfeiffer, A., Cantón, A., Burgos, R., Hernández, C., Lecube, A., Mesa, J., Segura, R. M., Mateo, C., Simó, R., Fathallah, L., Greene, D. A., Obrosova, I., Gilbert, R. E., Kelly, D. J., Cox, A. J., Berka-Wilkinson, J. L., Taylor, H. R., Panagiotopoulos, S., Lee, V., Jerums, G., Cooper, M. E., Hitman, G. A., Aganna, E., Ogunkolade, W. B., Rema, M., Deepa, R., Shanthi-Rani, C. S., Barakat, K., Kumarajeewa, T. R., Cassell, P. G., McDermott, M. F., Mohan, V., Ways, K., Bursell, S., Devries, T., Woodworth, J., Alatorre, C., King, G., Aiello, L. P., Karisen, A. E., Pavlovic, D., Nielsen, K., Jensen, J., Andersen, H. U., Pociot, F., Mandrup-Poulsen, T., Eizirik, D. L., Nerup, J., Lortz, S., Tiedge, M., Lenzen, S., Lally, F. J., Bone, A. J., Darville, M. I., Ho, Y.-S., Sternesjö, J., Sandler, S., Chen, M.-C., Schuit, F., Pipeleers, D. G., Merezak, S., Hardikar, A., Hoet, J. J., Remacle, C., Reusens, B., Bréant, B., Garofano, A., Czernichow, P., Kubota, N., Terauchi, Y., Miki, H., Tamemoto, H., Yamauchi, T., Nakano, R., Komeda, K., Eto, K., Tobe, K., Kimura, S., Kadowaki, T., Ide, T., Murakami, K., Tsunoda, M., Mochizuki, T., Ozanne, S. E., Nave, B. T., Wang, C. L., Dorling, M. W., Petry, C. J., Koopmans, S. J., van der Bent, C., Que, I., Radder, J. K., Sebokova, E., Sana, A. K., Klimes, I., Ruderman, N., Morviducci, L., Pastore, L., Morelli, S., Sagratella, E., Zorretta, D., Buongiomo, A., Tamburrano, G., Giaccari, A., Martinenghi, Sabina, De Angelis, Gabriella Cusella, Ravasi, Flavio, Bifari, Francesco, Bordignon, Claudio, Falqui, Luca, Kessler, A., Dransfeld, O., Sasson, S., Tomas, E., Zorzano, A., Eckel, J., Thorsby, P., Rosenfalck, A. M., Kjems, L., Hanssen, K. F., Madsbad, S., Birkeland, K. I., Hamilton-Wessler, M., Markussen, J., Bergman, R. N., Melki, V., Hanaire-Broutin, H., Bessières-Lacombe, S., Tauber, J.-P., Home, P. D., Lindholm, A., Riis, A., Rosenstock, J., Schwartz, S., Clark, C., Edwards, M., Donley, D., Swift, P., Mortensen, H. B., Lynggaard, H., Hougaard, P., Cull, C. A., Neil, H. A. W., Frighi, V., Manley, S. E., Holman, R. R., Turner, R. C., Steiner, G., Davis, W. A., Weeraratna, T., Bruce, D. G., Davis, T. M. E., Vergès, B., Duvillard, L., Pont, F., Florentin, E., Gambert, Ph., Benko, B., Ljubić, S., Turk, Z., Granić, M., März, W., Wollschläger, H., Klein, G., Neiss, A., Wehling, M., Huxtable, S. J., Saker, P. J., Walker, M., Frayling, T. M., Levy, J. C., O’Rahilly, S., Hattersley, A. T., McCarthy, M. I., Orecchio, A., Giacchini, A., Dominici, R., Canettieri, G., Trinti, B., Zani, M., Andreoli, M., Sciacchitano, S., de Silva, A. M., Whitecross, K., Pasco, J., Kotowicz, M., Nicholson, G., Zimmet, P., Boyko, E. J., Collier, G. R., Frittitta, L., Pizzuti, A., Argiolas, A., Graci, S., Goldfine, I. D., Bozzali, M., Ercolino, T., Costanzo, B., Iacoviello, L., Tassi, V., Trischitta, V., Wauters, M., Rankinen, T., Mertens, I., Chagnon, M., Bouchard, C., Van Gaal, L., Sivenius, K., Valve, R., Hakkarainen, V., Niskanen, L., Laakso, M., Uusitupa, M., Beridze, N., Japaridze, M., Kurashvili, R., Dundua, M., Kebuladze, G., Kazakhashvili, N., Offley-Shore, B., Thomas, B., Ghebremeskel, K., Crawford, M., Lowy, C., Eriksson, Ulf J., Martin Simán, C., Wisse, Bert, Gittenberger-de Groot, Adriana C., Wentzel, P., Eriksson, U. J., Wender-Ożegowska, E., Drews, K., Biczysko, R., Bronisz, A., Rość, D., Graczykowska-Koczorowska, A., Kotschy, M., Sokup, A., Kohnert, K. D., Besch, W., Strese, J., Frick, U., Zander, E., Kemer, W., Škrha, J., Kvasnička, J., Kalvodová, B., Hilgertová, J., Schatteman, K., Goossens, F., Scharpé, S., De Leeuw, I., Hendriks, D., Legakis, I. N., Panayiotou, D., Mountokalakis, Th. D., Enderle, M. D., Beckmann, P., Balletshofer, B., Rittig, K., Maerker, E., Volk, A., Meisner, C., Jacob, S., Matthaei, S., Häring, H. U., Rett, K., Ueda, K., Nakagawa, T., Shimajiri, Y., Kokawa, M., Matsumoto, E., Sasaki, H., Sanke, T., Nanjo, K., McKinnon, Caroline M., Macfarlane, Wendy M., Docherty, Kevin, Furukawa, N., Shirotani, T., Kishikawa, H., Kaneko, K., Araki, E., Shichiri, M., Prentki, M., Roduit, R., Susini, S., Buteau, J., Ejrnæs, A. M., Andersen, N. Aa., Osterhoff, M., Möhlig, M., Ortmann, J., Bikashaghi, F., Mayer, C., Bikashagi, F., Ackermans, M. T., Pereira Arias, A. M., Bisschop, P. H. L. T., Endert, E., Sauerwein, H. P., Romijn, J. A., Gastaldelli, A., Baldi, S., Pettiti, M., Natali, A., Frascerra, S., Camastra, S., Toschi, E., Ferrannini, E., Stingl, H., Krssak, M., Bischof, M. G., Krebs, M., Fürnsinn, C., Nowotny, P., Waldhäusl, W., Roden, M., Neeft, M., Meijer, A. J., Båvenholm, P., Pigon, J., Efendic, S., Kästenbauer, T., Sauseng, S., Sokol, G., Auinger, M., Irsigler, K., Abbott, C. A., Carrington, A. L., Faragher, B., Kulkarni, J., Van Ross, E. R. E., Boulton, A. J. M., Armstrong, D. G., Hadi, S., Nguyen, H. C., Harkless, L. B., Jirkovská, A., Kasalicky, P., Hosová, J., Skibova, J., Uccioli, L., Caselli, A., Giacomozzi, C., Macellari, V., Giurato, L., Lardieri, L., Menzinger, G., Pham, H. T., Rosenblum, B. I., Lyons, T. E., Giurini, J. M., Smakowski, P., Chrzan, J. S., Habershaw, G. M., Veves, A., Foster, A. M., Bates, M., Doxford, M., Edmonds, M. E., Kecha, O., Winkler, R., Martens, H., Collette, J., Lefèbvre, P. J., Greiner, D., Geenen, V., Atlan-Gepner, C., Naspetti, M., Valéro, R., Barad, M., Lepault, F., Vialettes, B., Naquet, P., de Galan, B., Netea, M. G., Hancu, N., Smits, P., Van der Meer, J. W. M., Osterbye, T., Jørgensen, K. H., Tranum-Jensen, J., Fredman, P., Høy, M., Bokvist, K., Olsen, H. L., Horn, T., Gromada, J., Laub, R., Lohmann, T., Hahn, H. J., Adler, T., Emmrich, F., Rabuazzo, A. M., Lupi, R., Dotta, F., Patanè, G., Marselli, L., Realacci, M., Piro, S., Del Guerra, S., Santangelo, C., Navalesi, R., Purrello, F., Marchetti, P., de Vos, P., Visser, L., de Haan, B. J., Klok, P., van Schilfgaarde, R., Poppema, S., Juang, J.-H., Kuo, C.-H., Hsu, B. R.-S., Nacher, V., Pérez, M., Biarnés, M., Raurell, M., Soler, J., Montanya, E., Ritzel, R., Maubach, J., Büsing, M., Becker, T., Klempnauer, J., Hücking, K., Schmiegel, W. H., Nauck, M. A., Bouček, P., Saudek, F., Adamec, M., Kožitarová, R., Jedináková, T., Vlasáková, Z., Skibová, J., Bartoš, V., Maffi, P., Bertuzzi, F., Aldrighetti, L., Taglietti, M. V., Castelnuovo, A., Pozza, G., Di Carlo, V., Secchi, A., Renier, G., Mamputu, J.-C., Gillespie, J. S., McMaster, D., Mercer, C., Trimble, E. R., Lecomte, M., Véricel, E., Paget, C., Ruggiero, D., Lagarde, M., Wiernsperger, N., Pricci, F., Leto, G., Amadio, L., Cordone, S., Iacobini, C., Catalano, S., Violi, F., Rotella, C. M., Pugliese, G., Zicari, A., Gradini, R., Sale, P., Pala, L., Cresci, B., Giannini, S., Manuelli, C., Dahlfors, G., Arnqvist, H. J., Gonelle-Gispert, C., Halnan, P. A., Sadoul, K., Wolter, S., Lang, J., Niwa, T., Yu, W., Hidaka, H., Senda, T., Niki, I., Fukasawa, T., Renstrom, E., Barg, S., Seward, E., Rorsman, P., Rutter, G. A., Molinete, M., Lilla, V., Ravazzola, M., Halban, P. A., Efanov, A. M., Bertorello, A. M., Zaitsev, S. V., Zwiller, J., Berggren, P.-O., MŞengül, A., Salman, F., Sargrn, M., Özer, E., Karşidaǧ, K., Salman, S., Gedik, S., Satman, İ., Dinççaǧ, N., Yılmaz, M. T., Lloyd, A., Hopkinson, P. K., Testa, M. A., Blonde, L., Turner, R. R., Hayes, J., Simonson, D. C., van der Ven, N. C. W., Lubach, C. H. C., Snoek, F. J., Mollema, E. D., van der Ploeg, H. M., Danne, T., Hoey, H., McGee, H., Fitzgerald, H., Lernmark, B., Thernlund, G., Fredin, K., Hägglöf, B., Lugari, R., Dell’Anna, C., Ugolotti, D., Dei Cas, A., Barilli, A. L., Sard, L., Marani, B., Iotti, M., Zandomeneghi, R., Gnudi, A., Kjems, L. L., Volund, Aa., Toft-Nielsen, M., Damholt, M. B., Hilsted, L., Hughes, T. E., Krarup, T., Holst, J. J., Young, A., Gottlieb, A., Fineman, M., Kolterman, O., Cancelas, J., García-Martínez, J. A., Villanueva-Peñacarrillo, M. L., Valverde, I., Malaisse, W. J., Filipsson, K., Ahrén, B., Balkan, B., Kwasnik, L., Battle, B., Li, X., Egan, J. M., Clocquet, A. R., Elahi, D., Petrella, E., Pricket, K., Petersen, K. F., Sullivan, J. T., Amatruda, J. M., Livingston, J. N., Shulman, G. I., Freyse, E.-J., Knospe, S., Glund, K., Demuth, H.-U., Walker, D., Malik, R. A., Reljanovic, M., Barada, A., Milicevic, Z., Tack, Cees J., Goldstein, David S., Van Huysen, C., Stevens, M. 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E., Ramu, Y., Vidyullatha, Y., Strojek, K., Gorska, J., Morawin, E., Ritz, E., Ciavarella, A., Malini, P. L., Strocchi, E., Fiumi, N., Ambrosioni, E., Idzior-Waluś, B., Stevens, L., McEneny, J., O’Kane, M. J., Moles, K. W., McMaster, C., Young, I. S., Leonhardt, W., Konstadelou, E., Gürlek, Alper, Soedamah-Muthu, S., Taskinen, M. R., Ehnholm, C., Wägner, A., Bayen, Laia, Rigla, M., Ortega, E., Caixàs, A., Mestrón, A., Ordóñez, J., Pérez, A., Sotiropoulou, G., Servais, P. L., Bertolotto, A., Pilo, M., Suchánková, G., Andratschke, S., Tschöp, M., Strasburger, C.-J., Rizzo, L., Aerts, P., Vinckx, M., Ansquer, J. C., Ryan, M., Buter, H., Navis, G. J., de Jong, P. E., de Zeeuw, D., Carreras, G., Giménez, G., Pou, J. M., Howorka, K., Gabriel, M., Pumprla, J., Köves, A., Bhowmik, N. B., Haque, A., Rahman, A., Paleari, F., Gamba, P., Mauri, G., Rovaris, G., Giannattasio, C., Piatti, M. L., Zincone, A., Cavaletti, G., Mancia, G., Lan, S., Arezzo, J., Gerber, R. A., Klioze, S. S., Saponara, C., Tartaglione, T., Cercone, S., Caputo, S., Meloni, T., Brunetti, D., Di Lazzaro, V., Xu, G., Jiang, H. Y., Shy, M. E., Sugimoto, K., Zhang, W.-X., Kuchmerovskaya, T., Donchenko, G., Shymansky, I., Kuchmerovsky, N., Pakyrbaeva, L., Cameron, N. E., Keegan, A., Cotter, M. A., Mirrlees, D., Smale, S. E., Biessels, G. J., Duis, S. E. J., Kamal, A., Gispen, W. H., Carrington, A., Carman, S., Smiarowski, H., Lavoie, D., Sawicki, D., Sabetta, A., Litchfield, J., Van Zandt, M., Sredy, J., Smirnova, V., Strokov, I., Ivanova, L., Ichunina, A., Nakamura, J., Nakayama, M., Hamada, Y., Chaya, S., Kato, K., Kasuya, Y., Mizubayashi, R., Miwa, K., Yasuda, Y., Kamiya, H., Hotta, N., Bíró, K., Kukorelli, T., Szilágyi, N., Kürthy, M., Komáromy, A., Mogyorosi, T., Nagy, K., Çakir, M., Baskal, N., Güllü, S., Elhan, A. H., Erdogan, G., Ziegler, D., Piolot, R., Neubauer, J., Senesi, B., Bonetti, R., Napolitano, A., Canepa, F., Ottonello, P., Schabmann, A., Giménez-Pérez, G., Arroyo, J. A., López, T., Ponz, E., Mauricio, D., Diem, P., Zanchin, L., Suter, S. L., Lefrandt, J. D., Smit, A., van Roon, A. M., Dullaart, R., Voita, D., Mackevics, V., Vitols, A., Lengyel, Cs., Farkas, Gy., Török, T., Légrády, P., Várkonyi, T. T., Kardos, A., Gingl, Z., Kempler, P., Rudas, L., Lonovics, J., Marchand, M., Stevens, L. K., Tarnás, Gy., Estrella, F., Christensen, N. J., Keresztes, K., Barna, I., Hermányi, Zs., Vargha, P., Bonnevie, L., Chanudet, X., Larroque, P., Tutuncu, N. Bascil, Deger, A., Batur, M. K., Yildirir, A., Onalan, O., Aksöyek, S., Kabakçι, G., Erbaş, T., Galicka-Latała, D., Surdacki, A., Gerritsen, J., TenVoorde, B. J., Heethaar, R. M., Tagawa, T. S., Kodama, M., Yoshioka, R., Yamasaki, Y., Didangelos, T., Athyros, V., Kontopoulos, A., Papageorgiou, A., Karamitsos, D., Lacigová, S., Rušavý, Z., Kárová, R., Perrild, H., Kay, L., Jørgensen, T., Bień, A. I., Witek, P., Geraldes, Elizabete, Rodrigues, D., Pereira, L., Doménech, A., Leitão, P., Anagnostopoulos, D., Foster, A. V. M., Nag, S., Barsoum, M., Lewis, G., Dunlop, N., Connolly, V., Bilous, R., Kelly, W., Chantelau, E., Gede, A., Sharman, D., O’Halloran, D., Best, C., Abbas, Z. G., Lutale, J., Gill, G. V., Jarvis, W. R., Archibald, L. K., Corcoran, S., Mansell, J., Pibworth, L., Terada, H., Shiba, T., Utugi, N., Utugi, T., Blum, M., Strobel, J., Höffken, K., Razvi, F. M., Kritzinger, E. E., Taylor, K., Jones, S., Illahi, W., Grüβer, M., Hartmann, P., Hoffstadt, K., van Leiden, H. A., Moll, A. C., Polak, B. C. P., Pietragalla, G. B., Maurino, M., Montanaro, M., Karadeniz, Ş., Tommasini, P., Quadrini, C., Demiraj, V., Rispoli, E., Ota, A., Takama, H., Saito, N., Hemández, C., Lepore, D., Antico, L., Giardina, B., Franconi, F., Michoud, E., Chamot, S., Riva, Ch., Hammes, H.-P., Renner, O., Breier, G., Lin, J., Alt, A., Betzholtz, C., Bretzel, R. G., Manti, R., Gallo, M., Molinar Hin, A., Brignardello, E., Boccuzzi, G., Li, Shanfang, Xiang, Kunsan, Zhang, Rugeng, Shangguan, Xinhong, Wu, Jianrong, Donnan, P. T., Broomhall, J., Hunter, K., Morris, A. D., Ioannidis, G., Peppa, M., Rontogianni, E., Kallifronas, M., Lekatsas, I., Chrysanthopoulou, G., Anthopoulos, L., Kesse, M., Thalassinos, N., Neves, C., Medina, J. L., Lopes, F., Yılmaz, M., Güvener, N., Güvener, M., Kocagöz, T., Böke, E., Paşaoglu, I., Bascil Tutuncu, N., Oto, A., Karvonen, M. K., Koulu, M., Pesonen, U., Mercuri, M., Rauramaa, R., Rutter, M. K., Kestevan, P., McComb, J. M., Marshall, S. M., Sobieska, M., Wiktorowicz, K., Kanters, S. D. J. M., Banga, J. D., Algra, A., Frijns, C. J. M., Beutler, J. J., Fijnheer, R., Nicoloff, G., Baydanoff, S., Stanimirova, N., Petrova, Ch., Lario, S., Campistol, J. M., Cases, A., Clària, J., Iñigo, P., Esmatjcs, E., Sármán, B., Tóth, M., Kocsis, I., Somogyi, A., Bumbure, A., Jachimowicz, K., Samson, J., Tomasiak, M., Sobol, A., Stańczyk, L., Watala, C., Stradina, P., Wiśniewska-Jarosińska, M., Marciniak, D., Więcławska, B., Watała, C., Golański, J., Zinnat, R., Mahmud, I., Büyükasik, Yahya, Demiroğlu, H., Szczepanik, A., Skowroński, M., Murawska, A., Meeking, D. R., Allard, S., Munday, J., Chowienczyk, P., Shaw, K. M., Cummings, M. H., Šimková, R., Jirsa, M., Hadoke, P. W. F., McIntyre, C. A., Jones, G. C., Williams, B. C., Elliott, A. I., McKnight, J. A., Pernow, J., Bombonato, G. C., Finucci, G. F., Zotta, L., Senses, V., Ozyazgan, S., Ince, E., Tunçdemir, M., Oztürk, M., Sultuybek, G., Akkan, A. G., Özyazgan, S., Unlücerci, Y., Bekpınar, S., Meyer, M. F., Lee, B. C., Shore, A. C., Humphreys, J. M., Tooke, J. E., Dell’Omo, G., Giovannitti, G., Caricato, F., Mariani, M., Pedrinelli, R., Kiviet-Boehm, C., Schwelling, V., Matthäei, S., Pfohl, M., McInerney, D., Itoh, H., Ohno, T., Katoh, N., Baumgartner-Parzer, S., Artwohl, M., Graier, W., Ludwig, C., Tachi, Y., Bannai, C., Shinohara, M., Shimpuku, H., Ohura, K., Bertacca, A., Sasvári, M., Szaleczki, E., Pusztai, P., Boes, U., Klaus, E., Dittrich, P., Wagner, Z., Wittmann, I., Pótó, L., Wagner, L., Mazák, I., Nagy, J., Feletto, F., Taboga, C., Tonutti, L., Lizzio, S., Russo, A., Selmo, V., Ceriello, A., Lekakis, J., Papamichael, C. M., Stamatelopoulos, K., Stamatelopoulos, S., Yillar, D. O., Gay, M., Lillaz, E., Passaro, A., Vanini, A., Calzoni, F., D’Elia, K., Carantoni, M., Zuliani, G., Fellin, R., Solini, A., Chwatko, G., Bald, E., Dramais, A.-S., Wallemacq, P. E., Vandeleene, B., Ciaria, M. V., Ariano, M., Strom, R., Gibney, J., Weiss, U., Turner, B., O’Gorman, P., Watts, G., Powrie, J., Crook, M., Shaw, K., and Cummings, M.
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- 1999
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13. Selectivity of prandial glucose regulators: nateglinide, but not repaglinide, accelerates exocytosis in rat pancreatic A-cells
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Bokvist, K., Hoy, M., Buschard, K., Holst, J.J., Thomsen, M.K., and Gromada, J.
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- 1999
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14. Cellular regulation of islet hormone secretion by the incretin hormone glucagon-like peptide 1
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Gromada, J., Holst, Jens Juul, and Rorsman, Patrik
- Abstract
Abstract: Glucagon-like peptide 1 is a gastrointestinally derived hormone with profound effects on nutrient-induced pancreatic hormone release. GLP-1 modulates insulin, glucagon and somatostatin secretion by binding to guanine nucleotide binding protein-coupled receptors resulting in the activation of adenylate cyclase and generation of cyclic adenosine monophosphate (cAMP). In the B-cell, cAMP, via activation of protein kinase A, interacts with a plethora of signal transduction processes including ion channel activity, intracellular Ca
2+ handling and exocytosis of the insulin-containing granules. The stimulatory action of GLP-1 on insulin secretion, contrary to that of the currently used hypoglycaemic sulphonylureas, is glucose dependent and requires the presence of normal or elevated concentrations of the sugar. For this reason, GLP-1 attracts much interest as a possible novel principle for the treatment of human type-2 diabetes. Here we review the actions of GLP-1 on islet cell function and attempt to integrate current knowledge into a working model for the control of pancreatic hormone secretion.- Published
- 1998
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15. Discovery of amino acid variants in the human glucose-dependent insulinotropic polypeptide (GIP) receptor: the impact on the pancreatic beta cell responses and functional expression studies in Chinese hamster fibroblast cells
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Almind, K., Ambye, L., Urhammer, S. A., Hansen, T., Echwald, S. M., Holst, J. J., Gromada, J., Thorens, B., and Pedersen, O.
- Abstract
The two incretins, glucose-dependent insulinotropic polypeptide (GIP) and glucagon-like peptide-1 (GLP-1), are insulinotropic factors released from the small intestine to the blood stream in response to oral glucose ingestion. The insulinotropic effect of GLP-1 is maintained in patients with Type II (non-insulin-dependent) diabetes mellitus, whereas, for unknown reasons, the effect of GIP is diminished or lacking. We defined the exon-intron boundaries of the human GIP receptor, made a mutational analysis of the gene and identified two amino acid substitutions, A207 V and E354Q. In an association study of 227 Caucasian Type II diabetic patients and 224 matched glucose tolerant control subjects, the allelic frequency of the A207 V polymorphism was 1.1 % in Type II diabetic patients and 0.7 % in control subjects (p= 0.48), whereas the allelic frequency of the codon 354 polymorphism was 24.9 % in Type II diabetic patients versus 23.2 % in control subjects. Interestingly, the glucose tolerant subjects (6 % of the population) who were homozygous for the codon 354 variant had on average a 14 % decrease in fasting serum C-peptide concentration (p= 0.01) and an 11 % decrease in the same variable 30 min after an oral glucose load (p= 0.03) compared with subjects with the wild-type receptor. Investigation of the function of the two GIP receptor variants in Chinese hamster fibroblasts showed, however, that the GIP-induced cAMP formation and the binding of GIP to cells expressing the variant receptors were not different from the findings in cells expressing the wild-type GIP receptor. In conclusion, amino acid variants in the GIP receptor are not associated with random Type II diabetes in patients of Danish Caucasian origin or with altered GIP binding and GIP-induced cAMP production when stably transfected in Chinese hamster fibroblasts. The finding of an association between homozygosity for the codon 354 variant and reduced fasting and post oral glucose tolerance test (OGTT) serum C-peptide concentrations, however, calls for further investigations and could suggest that GIP even in the fasting state regulates the beta-cell secretory response. [Diabetologia (1998) 41: 1194–1198]The two incretins, glucose-dependent insulinotropic polypeptide (GIP) and glucagon-like peptide-1 (GLP-1), are insulinotropic factors released from the small intestine to the blood stream in response to oral glucose ingestion. The insulinotropic effect of GLP-1 is maintained in patients with Type II (non-insulin-dependent) diabetes mellitus, whereas, for unknown reasons, the effect of GIP is diminished or lacking. We defined the exon-intron boundaries of the human GIP receptor, made a mutational analysis of the gene and identified two amino acid substitutions, A207 V and E354Q. In an association study of 227 Caucasian Type II diabetic patients and 224 matched glucose tolerant control subjects, the allelic frequency of the A207 V polymorphism was 1.1 % in Type II diabetic patients and 0.7 % in control subjects (p= 0.48), whereas the allelic frequency of the codon 354 polymorphism was 24.9 % in Type II diabetic patients versus 23.2 % in control subjects. Interestingly, the glucose tolerant subjects (6 % of the population) who were homozygous for the codon 354 variant had on average a 14 % decrease in fasting serum C-peptide concentration (p= 0.01) and an 11 % decrease in the same variable 30 min after an oral glucose load (p= 0.03) compared with subjects with the wild-type receptor. Investigation of the function of the two GIP receptor variants in Chinese hamster fibroblasts showed, however, that the GIP-induced cAMP formation and the binding of GIP to cells expressing the variant receptors were not different from the findings in cells expressing the wild-type GIP receptor. In conclusion, amino acid variants in the GIP receptor are not associated with random Type II diabetes in patients of Danish Caucasian origin or with altered GIP binding and GIP-induced cAMP production when stably transfected in Chinese hamster fibroblasts. The finding of an association between homozygosity for the codon 354 variant and reduced fasting and post oral glucose tolerance test (OGTT) serum C-peptide concentrations, however, calls for further investigations and could suggest that GIP even in the fasting state regulates the beta-cell secretory response. [Diabetologia (1998) 41: 1194–1198]
- Published
- 1998
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16. G protein‐dependent inhibition of L‐type Ca2+ currents by acetylcholine in mouse pancreatic B‐cells.
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Gilon, P, Yakel, J, Gromada, J, Zhu, Y, Henquin, J C, and Rorsman, P
- Abstract
1. The effect of acetylcholine (ACh) on voltage‐dependent Ca2+ currents in mouse pancreatic B‐cells was studied using the whole‐cell configuration of the patch‐clamp technique. 2. ACh (0.25‐250 microM) reversibly and dose‐dependently inhibited the Ca2+ current elicited by depolarizations from ‐80 mV to +10 mV. Maximal inhibition was observed at concentrations > 25 microM where it amounted to approximately 35%. The effect was voltage independent and prevented by atropine (10 microM) suggesting that it was mediated by muscarinic receptors. 3. The inhibitory action of ACh on the Ca2+ current was abolished when the cytoplasmic solution contained GDP beta S (2 mM) and became irreversible when the non‐hydrolysable GTP analogue GTP gamma S (10 microM) was included in the pipette. This indicates the participation of G proteins in the inhibitory effect of ACh but pretreatment of the cells with either pertussis or cholera toxin failed to prevent the effect of ACh on the Ca2+ current. 4. ACh remained equally effective as an inhibitor of the whole‐cell Ca2+ current in the presence of the L‐type Ca2+ channel agonist (‐)‐Bay K 8644 and after partial inhibition of the current by nifedipine. Addition of omega‐agatoxin IVA, omega‐conotoxin GVIA or omega‐conotoxin MVIIC neither affected the peak Ca2+ current amplitude nor the extent of inhibition produced by ACh. These pharmacological properties indicate that ACh acts by inhibiting L‐type Ca2+ channels. 5. The inhibitory action of ACh on the B‐cell Ca2+ current was not secondary to elevation of [Ca2+]i and ACh remained equally effective as an inhibitor when Ba2+ was used as the charge carrier, when [Ca2+]i was buffered to low concentrations using EGTA and under experimental conditions preventing the mobilization of Ca2+ from intracellular stores. 6. These results suggest that ACh reduces the whole‐cell Ca2+ current in the B‐cell through a G protein‐regulated, voltage‐ and Ca(2+)‐independent inhibition of L‐type Ca2+ channels.
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- 1997
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17. Cyclic GMP potentiates phenylephrine but not cyclic ADP-ribose-evoked calcium release from rat lacrimal acinar cells
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Jorgensen, T. D., Dissing, S., and Gromada, J.
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- 1996
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18. Activation of P2z purinoceptors diminishes the muscarinic cholinergic-induced release of inositol 1,4,5-trisphosphate and stored calcium in rat parotid acini. ATP as a co-transmitter in the stimulus-secretion coupling
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Jørgensen, T D, Gromada, J, Tritsaris, K, Nauntofte, B, and Dissing, S
- Abstract
The effect of extracellular ATP on the intracellular free Ca2+ concentration ([Ca2+]i) and inositol phosphate production following stimulation with the muscarinic cholinergic agonist acetylcholine (ACh) was investigated in isolated rat parotid acinar cells. Stimulation of rat parotid acinar cells with ATP4- results in a rise in [Ca2+]i that is due to influx of extracellular Ca2+ and mobilization of Ca2+ from intracellular stores. Stimulation with purinergic agonists revealed that both influx as well as Ca2+ release from intracellular stores was mediated through activation of P2z receptors. The Ca2+ mobilization from intracellular stores was due to production of Ins(1,4,5)P3 and was inhibited by U73122, an inhibitor of phospholipase C-coupled processes. Under Ca(2+)-free conditions ATP4- caused a dose-dependent inhibition (IC50 = 8 microM) of the ACh-evoked Ca2+ release. The inhibitory effect of ATP4- is due to activation of the P2z purinoceptors, which results in a strong reduction in the ACh-induced inositol phosphate production. Prestimulation with 100 microM ATP4- reduced the amount of Ins(1,4,5)P3 formed after maximal ACh stimulation by 91%. In conclusion, the inhibitory effect of ATP4- on the ACh-mediated response is due to interactions of the activated P2z receptor with the phospholipase C-coupled processes underlying the muscarinic cholinergic response.
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- 1995
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19. Stimulation‐induced calcium signalling and ion transport in rat pancreatic acini
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GROMADA, J., JØRGENSEN, N. K., NAUNTOFTE, B., and DISSING, S.
- Abstract
In the present study we have characterized receptor‐mediated Ca2+signalling patterns as well as Ca2+‐mediated ion transport mechanisms in collagenase isolated rat pancreatic acini. Measurements of the initial Ca2+response to maximal carbachol stimulation revealed a rapid increase in [Ca2+]i, which, in general, occurred synchronously throughout the cells. Less frequently, not all cells in the acinus responded to carbachol, but did respond to subsequent stimulation with bombesin, indicating that not all cells possess receptors for all the applied agonists. In view of the heterogeneity in the agonist‐evoked Ca2+responses, ionomycin was used to assess the role of Ca2+in activating K+, Na+and Cl‐transport mechanisms. Ionomycin induced a rise in [Ca2+]i, thereby increasing Cl‐permeability as well as stimulating K+efflux, probably through non‐specific cation channels. However, the resting K+efflux was insensitive to blockers of non‐specific cation channels, indicating the existence of a selective resting K+conductance. Ionomycin also stimulated influx of Na+, which in part was mediated by non‐specific cation channels. The changes in ion fluxes measured in the present study revealed that when [Ca2+]iis raised in rat pancreatic acini, they gain Na+and Cl‐and lose K+, with non‐specific cation channels being essential for this process.
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- 1997
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20. Multisite regulation of insulin secretion by cAMP-increasing agonists: evidence that glucagon-like peptide 1 and glucagon act via distinct receptors
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Gromada, J., Ding, Wei-Guang, Barg, Sebastian, Renström, Erik, and Rorsman, Patrik
- Abstract
Abstract: The mechanisms by which glucagon-like peptide 1(7–36)amide (GLP-1[7–36]amide) potentiates insulin secretion were investigated by measurements of whole-cell K
+ and Ca2+ currents, membrane potential, the cytoplasmic Ca2+ concentration ([Ca2+ ]i ) and exocytosis in mouse pancreatic B-cells. GLP-1(7–36)amide (10 nM) stimulated glucose-induced (10 mM) electrical activity in intact pancreatic islets. The effect was manifested as a 34% increase in the duration of the bursts of action potentials and a corresponding 28% shortening of the silent intervals. GLP-1(7–36)amide had no effect on the electrical activity at subthreshold glucose con- centrations (≤6.5 mM). In cultured B-cells, GLP-1(7–36)amide produced a decrease of the whole-cell ATP-sensitive K+ (KATP ) conductance remaining at 5 mM glucose by ≈30%. This effect was associated with membrane depolarization and the initiation of electrical activity. GLP-1(7–36)amide produced a protein-kinase-A- (PKA-) and glucose-dependent fourfold potentiation of Ca2+ -induced exocytosis whilst only increasing the Ca2+ current marginally. The stimulatory action of GLP-1(7–36)amide on exocytosis was mimicked by the pancreatic hormone glucagon and exendin-4, a GLP-1 receptor agonist. Whereas the stimulatory action of GLP-1(7–36)amide could be antagonized by exendin-(9–39), this peptide did not interfere with the ability of glucagon to stimulate exocytosis. We suggest that GLP-1(7–36)amide and glucagon stimulate insulin secretion by binding to distinct receptors. The GLP-1(7–36)amide-induced stimulation of electrical activity and Ca2+ influx can account for (maximally) a doubling of insulin secretion. The remainder of its stimulatory action results from a cAMP/PKA-dependent potentiation of Ca2+ -dependent exocytosis exerted at a stage distal to the elevation of [Ca2+ ]i .- Published
- 1997
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21. Effects of the hypoglycaemic drugs repaglinide and glibenclamide on ATP-sensitive potassium-channels and cytosolic calcium levels in Β TC3 cells and rat pancreatic beta cells
- Author
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Gromada, J., Dissing, S., Kofod, H., and FrØkjÆr-Jensen, J.
- Abstract
The present study demonstrates the action of the hypoglycaemic drugs repaglinide and glibenclamide in cultured newborn rat islet cells and mouse ΒTC3 cells. In cell-attached membrane patches of newborn rat islet cells repaglinide (10 nmol/l) and glibenclamide (20 nmol/l) decrease the open probability of single ATP-sensitive K+-channels to approximately 10% of the activity prior to addition of the drugs in short-term experiments (<5 min). The influence of repaglinide and glibenclamide on the ATP-sensitive K+current was studied using the whole-cell patch clamp configuration. A half-maximal steady-state inhibition of the ATP-sensitive K+currents is observed at 89 pmol/l repaglinide and at 47 pmol/l glibenclamide in whole-cell experiments of longer duration (30 min). Applying digital Ca2+imaging on single ΒTC3 cells we found that repaglinide and glibenclamide induced a concentration-dependent increase in intracellular free Ca2+concentration ([Ca2+]i) with a half-maximal effect at 0.5 nmol/l for both drugs in long-term experiments (30 min). The rise in [Ca2+]iresults from Ca2+entry through voltage-dependent L-type Ca2+-channels since it is inhibited by verapamil (10 Μmol/l). The effect of repaglinide and glibenclamide is partly reversible (≈80%).
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- 1995
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22. The pathogenesis of NIDDM involves a defective expression of the GIP receptor
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Holst, J. J., Gromada, J., and Nauck, M. A.
- Published
- 1997
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23. Incretin Hormones and Insulin Secretion
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Ahrén, B., Gromada, J., and Schmitz, O.
- Published
- 2004
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24. The free fatty acid receptor GPR40 generates excitement in pancreatic beta-cells.
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Gromada J
- Subjects
- Animals, Humans, Fatty Acids, Nonesterified metabolism, Insulin-Secreting Cells metabolism, Potassium Channels, Voltage-Gated metabolism, Receptors, G-Protein-Coupled metabolism, Signal Transduction physiology
- Published
- 2006
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