Abstract
Aim:
Glucose stimulates insulin secretion from pancreatic islet β cells by altering ion channel activity and membrane potential in the β cells. TRPV1 channel is expressed in the β cells and capsaicin induces insulin secretion similarly to glucose. This study aims to investigate the biophysical properties of the β cells upon stimulation of membrane channels using an atomic force microscopic (AFM) nanoindentation system.
Methods:
ATCC insulinoma cell line was used. Cell stiffness, a marker of reorganization of cell membrane and cytoskeleton due to ion channel activation, was measured in real time using an integrated AFM nanoindentation system. Cell height that represented structural changes was simultaneously recorded along with cell stiffness.
Results:
After administration of glucose (16, 20 and 40 mmol/L), the cell stiffness was markedly increased in a dose-dependent manner, whereas cell height was changed in an opposite way. Lower concentrations of capsaicin (1.67×10−9 and 1.67×10−8 mol/L) increased the cell stiffness without altering cell height. In contrast, higher concentrations of capsaicin (1.67×10−6 and 1.67×10−7 mol/L) had no effect on the cell physical properties.
Conclusion:
A unique bio-nanomechanical signature was identified for characterizing biophysical properties of insulinoma cells upon general or specific activation of membrane channels. This study may deepen our understanding of stimulus-secretion coupling of pancreatic islet cells that leads to insulin secretion.
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References
Leung YM, Ahmed I, Sheu L, Tsushima RG, Diamant NE, Hara M, et al. Electrophysiological characterization of pancreatic islet cells in the mouse insulin promoter–green fluorescent protein mouse. Endocrinology 2005; 146: 4766–75.
Juan-Pico P, Fuentes E, Bermudez-Silva FJ, Diaz-Molina FJ, Ripoll C, de Fonseca FR, et al. Cannabinoid receptors regulate Ca2+ signals and insulin secretion in pancreatic beta-cell. Cell Calcium 2006; 39: 155–62.
Nilius B, Owsianik G, Voets T, Peters JA . Transient receptor potential cation channels in disease. Physiol Rev 2007; 87: 165–217.
Karlsson S, Scheurink AJ, Steffens AB, Ahren B . Involvement of capsaicin-sensitive nerves in regulation of insulin secretion and glucose tolerance in conscious mice. Am J Physiol 1994; 267: R1071–7.
Akiba Y, Kato S, Katsube K, Nakamura M, Takeuchi K, Ishii H, et al. Transient receptor potential vanilloid subfamily 1 expressed in pancreatic islet beta cells modulates insulin secretion in rats. Biochem Biophys Res Commun 2004; 321: 219–25.
Lundbaek JA, Birn P, Girshman J, Hansen AJ, Andersen OS . Membrane stiffness and channel function. Biochemistry 1996; 35: 3825–30.
Cantiello HF . Role of the actin cytoskeleton on epithelial Na+ channel regulation. Kidney Int 1995; 48: 970–84.
Lundbaek JA, Andersen OS . Spring constants for channel-induced lipid bilayer deformations estimates using gramicidin channels. Biophys J 1999; 76: 889–95.
Lim CT, Zhou EH, Quek ST . Mechanical models for living cells — A review. J Biomech 2006; 39: 195–216.
Touhami A, Nysten B, Dufrene YF . Nanoscale mapping of the elasticity of microbial cells by atomic force microscopy. Langmuir 2003; 19: 4539–43.
Pelling AE, Veraitch FS, Chu CP, Mason C, Horton MA . Mechanical dynamics of single cells during early apoptosis. Cell Motil Cytoskeleton 2009; 66: 409–22.
Cross SE, Jin YS, Rao J, Gimzewski JK . Nanomechanical analysis of cells from cancer patients. Nat Nanotechnol 2007; 2: 780–3.
Fung CKM, Seiffert-Sinha K, Lai KWC, Yang RG, Panyard D, Zhang JB, et al. Investigation of human keratinocyte cell adhesion using atomic force microscopy. Nanomedicine 2010; 6: 191–200.
Hammerick KE, Huang Z, Sun N, Lam MT, Prinz FB, Wu JC, et al. Elastic properties of induced pluripotent stem cells. Tissue Eng Part A 2011; 17: 495–502.
Henquin JC . Triggering and amplifying pathways of regulation of insulin secretion by glucose. Diabetes 2000; 49: 1751–60.
Malaisse WJ, Sener A, Koser M, Ravazzola M, Malaisse-Lagae F . The stimulus-secretion coupling of glucose-induced insulin release. Insulin release due to glycogenolysis in glucose-deprived islets. Biochem J 1977; 164: 447–54.
Henquin JC, Meissner HP . Significance of ionic fluxes and changes in membrane potential for stimulus-secretion coupling in pancreatic B-cells. Experientia 1984; 40: 1043–52.
Schmidt PT, Tornoe K, Poulsen SS, Rasmussen TN, Holst JJ . Tachykinins in the porcine pancreas: potent exocrine and endocrine effects via NK-1 receptors. Pancreas 2000; 20: 241–7.
Kilpatrick DL . Ion channels and membrane potential in stimulus-secretion coupling in adrenal paraneurons. Can J Physiol Pharmacol 1984; 62: 477–83.
Ammala C, Kane C, Cosgrove KE, Chapman JC, Aynsley-Green A, Lindley KJ, et al. Characterization of ion channels in stimulus-secretion coupling in pancreatic islets. Digestion 1997; 58: 81–5.
Petersen OH . Stimulus-secretion coupling: cytoplasmic calcium signals and the control of ion channels in exocrine acinar cells. J Physiol 1992; 448: 1–51.
Acknowledgements
This research was partially supported by NSF Grants IIS-0713346 and DMI-0500372, ONR Grants N00014-04-1-0799 and N00014-07-1-0935, NIH Grant R43 GM084520, HL-57853, HL-73287, and DK67620.
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Yang, Rg., Xi, N., Lai, Kc. et al. Nanomechanical analysis of insulinoma cells after glucose and capsaicin stimulation using atomic force microscopy. Acta Pharmacol Sin 32, 853–860 (2011). https://doi.org/10.1038/aps.2011.56
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DOI: https://doi.org/10.1038/aps.2011.56
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