Highly efficient detection of insulinotropic action of glucagon via GLP-1 receptor in mice pancreatic beta-cell with a novel perfusion microchip
- Corresponding author: Yi Wang, wangyideyouxiang@sohu.com
Citation:
Li-Dan Hu, Yu-Lin Zhang, Hong Wang, Xing-Yue Peng, Yi Wang. Highly efficient detection of insulinotropic action of glucagon via GLP-1 receptor in mice pancreatic beta-cell with a novel perfusion microchip[J]. Chinese Chemical Letters,
;2016, 27(7): 1027-1031.
doi:
10.1016/j.cclet.2016.05.023
E.W. Sutherland, C. De Duve. Origin and distribution of the hyperglycemicglycogenolytic factor of the pancreas[J]. J. Biol. Chem., 1948,175:663-674.
R.H. Unger, A.D. Cherrington. Glucagonocentric restructuring of diabetes: a pathophysiologic and therapeutic makeover[J]. J. Clin. Invest., 2012,122:4-12. doi: 10.1172/JCI60016
B.E. Dunning, J.E. Gerich. The role of a-cell dysregulation in fasting and postprandial hyperglycemia in type, 2 diabetes and therapeutic implications[J]. Endocr. Rev., 2007,28:253-283. doi: 10.1210/er.2006-0026
Y. Lee, E.D. Berglund, X.X. Yu. Hyperglycemia in rodent models of type, 2 diabetes requires insulin-resistant alpha cells[J]. Proc. Natl. Acad. Sci. U. S. A., 2014,111:13217-13222. doi: 10.1073/pnas.1409638111
R.H. Unger, L. Orci. The essential role of glucagon in the pathogenesis of diabetes mellitus[J]. Lancet, 1975,305:14-16. doi: 10.1016/S0140-6736(75)92375-2
A.D. Baron, L. Schaeffer, P. Shragg, O.G. Kolterman. Role of hyperglucagonemia in maintenance of increased rates of hepatic glucose output in type II diabetics[J]. Diabetes, 1987,36:274-283. doi: 10.2337/diab.36.3.274
H.Y. Gaisano, P.E. Macdonald, M. Vranic. Glucagon secretion and signaling in the development of diabetes[J]. Front. Physiol., 2012,3349.
S. Malmgren, B. Ahré n. Evidence for time dependent variation of glucagon secretion in mice[J]. Peptides, 2016,76:102-107. doi: 10.1016/j.peptides.2016.01.008
L.R. Nyman, K.S. Wells, W.S. Head. Real-time, multidimensional in vivo imaging used to investigate blood flow in mouse pancreatic islets[J]. J. Clin. Invest., 2008,118:3790-3797. doi: 10.1172/JCI36209
E. Samols, G. Marri, V. Marks. Interrelationship of glucagon, insulin and glucose: the insulinogenic effect of glucagon[J]. Diabetes, 1966,15:855-866. doi: 10.2337/diab.15.12.855
P. Huypens, Z. Ling, D. Pipeleers, F. Schuit. Glucagon receptors on human islet cells contribute to glucose competence of insulin release[J]. Diabetologia, 2000,43:1012-1019. doi: 10.1007/s001250051484
K. Moens, D. Flamez, C. Van Schravendijk. Dual glucagon recognition by pancreatic β-cells via glucagon and glucagon-like peptide, 1 receptors[J]. Diabetes, 1998,47:66-72. doi: 10.2337/diab.47.1.66
J.S. Mohammed, Y. Wang, T.A. Harvat, J. Oberholzer, D.T. Eddington. Microfluidic device for multimodal characterization of pancreatic islets[J]. Lab Chip, 2009,9:97-106. doi: 10.1039/B809590F
S. Runge, B.S. Wulff, K. Madsen, H. Bräuner-Osborne, L.B. Knudsen. Different domains of the glucagon and glucagon-like peptide-1 receptors provide the critical determinants of ligand selectivity[J]. Br. J. Pharmacol., 2003,138:787-794. doi: 10.1038/sj.bjp.0705120
L.J. Jelinek, S. Lok, G.B. Rosenberg. Expression cloning and signaling properties of the rat glucagon receptor[J]. Science, 1993,259:1614-1616. doi: 10.1126/science.8384375
L.B. Knudsen, D. Kiel, M. Teng. Small-molecule agonists for the glucagon-like peptide, 1 receptor[J]. Proc. Natl. Acad. Sci. U. S. A., 2007,104:937-942. doi: 10.1073/pnas.0605701104
D.J. Drucker, J. Philippe, S. Mojsov, W.L. Chick, J.F. Habener. Glucagon-like peptide I stimulates insulin gene expression and increases cyclic AMP levels in a rat islet cell line[J]. Proc. Natl. Acad. Sci. U. S. A., 1987,84:3434-3438. doi: 10.1073/pnas.84.10.3434
B. Portha, C. Tourrel-Cuzin, J. Movassat. Activation of the GLP-1 receptor signalling pathway: a relevant strategy to repair a deficient beta-cell mass[J]. Exp. Diabetes Res., 2011,2011376509.
P.E. MacDonald, W. El-Kholy, M.J. Riedel. The multiple actions of GLP-1 on the process of glucose-stimulated insulin secretion[J]. Diabetes, 2002,51:S434-S442. doi: 10.2337/diabetes.51.2007.S434
K.M. Hope, P.O.T. Tran, H.R. Zhou. Regulation of α-cell function by the β-cell in isolated human and rat islets deprived of glucose: the “switch-off” hypothesis[J]. Diabetes, 2004,53:1488-1495. doi: 10.2337/diabetes.53.6.1488
G. Tian, S. Sandler, E. Gylfe, A. Tengholm. Glucose- and hormone-induced cAMP oscillations in α- and β-cells within intact pancreatic islets[J]. Diabetes, 2011,60:1535-1543. doi: 10.2337/db10-1087
L.R. Landa Jr., M. Harbeck, K. Kaihara. Interplay of Ca2+ and cAMP signaling in the insulin-secreting MIN6 b-cell line[J]. J. Biol. Chem., 2005,280:31294-31302. doi: 10.1074/jbc.M505657200
B. Hellman, A. Salehi, E. Grapengiesser, E. Gylfe. Isolated mouse islets respond to glucose with an initial peak of glucagon release followed by pulses of insulin and somatostatin in antisynchrony with glucagon[J]. Biochem. Biophys. Res. Commun., 2012,417:1219-1223. doi: 10.1016/j.bbrc.2011.12.113
H. Yoowarren, A.G. Willse, N. Hancock. Regulation of rat glucagon receptor expression[J]. Biochem. Biophys. Res. Commun., 1994,205:347-353. doi: 10.1006/bbrc.1994.2671
N. Abrahamsen, E. Nishimura. Regulation of glucagon and glucagon-like peptide-1 receptor messenger ribonucleic acid expression in cultured rat pancreatic islets by glucose, cyclic adenosine, 30, 50-monophosphate, and glucocorticoids[J]. Endocrinology, 1995,136:1572-1578.
G. Xu, H. Kaneto, D.R. Laybutt. Downregulation of GLP-1 and GIP receptor expression by hyperglycemia: possible contribution to impaired incretin effects in diabetes[J]. Diabetes, 2007,56:1551-1558. doi: 10.2337/db06-1033
A.P. van Beek, E.R. de Haas, W.A. van Vloten. The glucagonoma syndrome and necrolytic migratory erythema: a clinical review[J]. Eur. J. Endocrinol., 2004,151:531-537. doi: 10.1530/eje.0.1510531
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