Skip to main content
Erschienen in: Diabetologia 7/2008

01.07.2008 | Article

Blood vessels of human islets of Langerhans are surrounded by a double basement membrane

verfasst von: I. Virtanen, M. Banerjee, J. Palgi, O. Korsgren, A. Lukinius, L.-E. Thornell, Y. Kikkawa, K. Sekiguchi, M. Hukkanen, Y. T. Konttinen, T. Otonkoski

Erschienen in: Diabetologia | Ausgabe 7/2008

Einloggen, um Zugang zu erhalten

Abstract

Aims/hypothesis

Based on mouse study findings, pancreatic islet cells are supposed to lack basement membrane (BM) and interact directly with vascular endothelial BM. Until now, the BM composition of human islets has remained elusive.

Methods

Immunohistochemistry with specific monoclonal and polyclonal antibodies as well as electron microscopy were used to study BM organisation and composition in human adult islets. Isolated islet cells and function-blocking monoclonal antibodies and recombinant soluble Lutheran peptide were further used to study islet cell adhesion to laminin (Lm)-511. Short-term cultures of islets were used to study Lutheran and integrin distribution.

Results

Immunohistochemistry revealed a unique organisation for human Lm-511/521 as a peri-islet BM, which co-invaginated into islets with vessels, forming an outer endocrine BM of the intra-islet vascular channels, and was distinct from the vascular BM that additionally contained Lm-411/421. These findings were verified by electron microscopy. Lutheran glycoprotein, a receptor for the Lm α5 chain, was found prominently on endocrine cells, as identified by immunohistochemistry and RT-PCR, whereas α3 and β1 integrins were more diffusely distributed. High Lutheran content was also found on endocrine cell membranes in short-term culture of human islets. The adhesion of dispersed beta cells to Lm-511 was inhibited equally effectively by antibodies to integrin and α3 and β1 subunits, and by soluble Lutheran peptide.

Conclusions/interpretation

The present results disclose a hitherto unrecognised BM organisation and adhesion mechanisms in human pancreatic islets as distinct from mouse islets.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat Brivanlou AH, Darnell JE Jr (2002) Signal transduction and the control of gene expression. Science 295:813–818PubMedCrossRef Brivanlou AH, Darnell JE Jr (2002) Signal transduction and the control of gene expression. Science 295:813–818PubMedCrossRef
2.
Zurück zum Zitat Jiang FX, Harrison LC (2002) Extracellular signals and pancreatic β-cell development: a brief review. Mol Med 8:763–770PubMed Jiang FX, Harrison LC (2002) Extracellular signals and pancreatic β-cell development: a brief review. Mol Med 8:763–770PubMed
3.
Zurück zum Zitat Parnaud G, Hammar E, Rouiller DG, Armanet M, Halban PA, Bosco D (2006) Blockade of β1 integrin-laminin-5 interaction affects spreading and insulin secretion of rat β-cells attached on extracellular matrix. Diabetes 55:1413–1420PubMedCrossRef Parnaud G, Hammar E, Rouiller DG, Armanet M, Halban PA, Bosco D (2006) Blockade of β1 integrin-laminin-5 interaction affects spreading and insulin secretion of rat β-cells attached on extracellular matrix. Diabetes 55:1413–1420PubMedCrossRef
4.
Zurück zum Zitat Aumailley M, Bruckner-Tuderman L, Carter WG et al (2005) A simplified laminin nomenclature. Matrix Biol 24:326–332PubMedCrossRef Aumailley M, Bruckner-Tuderman L, Carter WG et al (2005) A simplified laminin nomenclature. Matrix Biol 24:326–332PubMedCrossRef
5.
Zurück zum Zitat Crisera CA, Kadison AS, Breslow GD, Maldonado TS, Longaker MT, Gittes GK (2000) Expression and role of laminin-1 in mouse pancreatic organogenesis. Diabetes 49:936–944PubMedCrossRef Crisera CA, Kadison AS, Breslow GD, Maldonado TS, Longaker MT, Gittes GK (2000) Expression and role of laminin-1 in mouse pancreatic organogenesis. Diabetes 49:936–944PubMedCrossRef
6.
Zurück zum Zitat Jiang FX, Cram DS, DeAizpurua HJ, Harrison LC (1999) Laminin-1 promotes differentiation of fetal mouse pancreatic β-cells. Diabetes 48:722–730PubMedCrossRef Jiang FX, Cram DS, DeAizpurua HJ, Harrison LC (1999) Laminin-1 promotes differentiation of fetal mouse pancreatic β-cells. Diabetes 48:722–730PubMedCrossRef
7.
Zurück zum Zitat Antinozzi PA, Garcia-Diaz A, Hu C, Rothman JE (2006) Functional mapping of disease susceptibility loci using cell biology. Proc Natl Acad Sci U S A 103:3698–3703PubMedCrossRef Antinozzi PA, Garcia-Diaz A, Hu C, Rothman JE (2006) Functional mapping of disease susceptibility loci using cell biology. Proc Natl Acad Sci U S A 103:3698–3703PubMedCrossRef
8.
Zurück zum Zitat Falk M, Ferletta M, Forsber E, Ekblom P (1999) Restricted distribution of laminin α1 chain in normal adult mouse tissues. Matrix Biol 18:557–568PubMedCrossRef Falk M, Ferletta M, Forsber E, Ekblom P (1999) Restricted distribution of laminin α1 chain in normal adult mouse tissues. Matrix Biol 18:557–568PubMedCrossRef
9.
Zurück zum Zitat Virtanen I, Gullberg D, Rissanen J et al (2000) Laminin α1 chain shows a restricted distribution in epithelial basement membranes of fetal and adult human tissues. Exp Cell Res 257:298–309PubMedCrossRef Virtanen I, Gullberg D, Rissanen J et al (2000) Laminin α1 chain shows a restricted distribution in epithelial basement membranes of fetal and adult human tissues. Exp Cell Res 257:298–309PubMedCrossRef
10.
Zurück zum Zitat Miner JH, Yurchenco PD (2004) Laminin functions in tissue morphogenesis. Annu Rev Cell Dev Biol 20:255–284PubMedCrossRef Miner JH, Yurchenco PD (2004) Laminin functions in tissue morphogenesis. Annu Rev Cell Dev Biol 20:255–284PubMedCrossRef
11.
Zurück zum Zitat Jiang FX, Naselli G, Harrison LC (2002) Distinct distribution of laminin and its integrin receptors in the pancreas. J Histochem Cytochem 50:1625–1632PubMed Jiang FX, Naselli G, Harrison LC (2002) Distinct distribution of laminin and its integrin receptors in the pancreas. J Histochem Cytochem 50:1625–1632PubMed
12.
Zurück zum Zitat Miner JH, Li C, Patton PL (2004) Laminins α2 and α4 in pancreatic acinar basement membranes are required for basal receptor localization. J Histochem Cytochem 52:153–156PubMed Miner JH, Li C, Patton PL (2004) Laminins α2 and α4 in pancreatic acinar basement membranes are required for basal receptor localization. J Histochem Cytochem 52:153–156PubMed
13.
Zurück zum Zitat Nikolova G, Jabs N, Konstantinova I et al (2006) The vascular basement membrane: a niche for insulin gene expression and beta cell proliferation. Dev Cell 10:397–405PubMedCrossRef Nikolova G, Jabs N, Konstantinova I et al (2006) The vascular basement membrane: a niche for insulin gene expression and beta cell proliferation. Dev Cell 10:397–405PubMedCrossRef
14.
Zurück zum Zitat Nikolova G, Strilic B, Lammert E (2007) The vascular niche and its basement membrane. Trends Cell Biol 17:19–25PubMedCrossRef Nikolova G, Strilic B, Lammert E (2007) The vascular niche and its basement membrane. Trends Cell Biol 17:19–25PubMedCrossRef
15.
Zurück zum Zitat Wang RN, Rosenberg L (1999) Maintenance of beta-cell function and survival following islet isolation requires re-establishment of the islet-matrix relationship. J Endocrinol 163:181–190PubMedCrossRef Wang RN, Rosenberg L (1999) Maintenance of beta-cell function and survival following islet isolation requires re-establishment of the islet-matrix relationship. J Endocrinol 163:181–190PubMedCrossRef
16.
Zurück zum Zitat van Deijnen JHM, Van Suylichem PTR, Wolters GHJ, Van Schilfgaarde R (1994) Distribution of collagens type I, type III and type V in the pancreas of rat, dog, pig and man. Cell Tissue Res 277:115–121PubMedCrossRef van Deijnen JHM, Van Suylichem PTR, Wolters GHJ, Van Schilfgaarde R (1994) Distribution of collagens type I, type III and type V in the pancreas of rat, dog, pig and man. Cell Tissue Res 277:115–121PubMedCrossRef
17.
Zurück zum Zitat Hughes SJ, Clark A, McShane P, Contractor HH, Gray DWR, Johnson PRV (2006) Characterisation of collagen VI within the islet-exocrine interface of the human pancreas: implications for clinical islet isolation? Transplantation 81:423–426PubMedCrossRef Hughes SJ, Clark A, McShane P, Contractor HH, Gray DWR, Johnson PRV (2006) Characterisation of collagen VI within the islet-exocrine interface of the human pancreas: implications for clinical islet isolation? Transplantation 81:423–426PubMedCrossRef
18.
Zurück zum Zitat Pinkse GGM, Bouwman WP, Jiawan-Lalai R, Terpstra OT, Bruijn JA, de Heer E (2006) Integrin signaling via RGD peptides and anti-β1 antibodies confers resistance to apoptosis in islets of Langerhans. Diabetes 55:312–317PubMedCrossRef Pinkse GGM, Bouwman WP, Jiawan-Lalai R, Terpstra OT, Bruijn JA, de Heer E (2006) Integrin signaling via RGD peptides and anti-β1 antibodies confers resistance to apoptosis in islets of Langerhans. Diabetes 55:312–317PubMedCrossRef
19.
Zurück zum Zitat van Deijnen JH, Hulstaert CE, Wolters GH, van Schilfgaarde R (1992) Significance of the peri-insular extracellular matrix for islet isolation from the pancreas of rat, dog. pig, and man. Cell Tissue Res 267:139–146PubMedCrossRef van Deijnen JH, Hulstaert CE, Wolters GH, van Schilfgaarde R (1992) Significance of the peri-insular extracellular matrix for islet isolation from the pancreas of rat, dog. pig, and man. Cell Tissue Res 267:139–146PubMedCrossRef
20.
Zurück zum Zitat Brissova M, Fowler MJ, Nicholson WE et al (2005) Assessment of human pancreatic islet architecture and composition by laser scanning confocal microscopy. J Histochem Cytochem 53:1087–1097PubMedCrossRef Brissova M, Fowler MJ, Nicholson WE et al (2005) Assessment of human pancreatic islet architecture and composition by laser scanning confocal microscopy. J Histochem Cytochem 53:1087–1097PubMedCrossRef
21.
Zurück zum Zitat Cabrera O, Berman DM, Kenyon NS, Ricordi C, Berggren PO, Caicedo A (2006) The unique cytoarchitecture of human pancreatic islets has implications for islet cell function. Proc Natl Acad Sci U S A 103:2334–2339PubMedCrossRef Cabrera O, Berman DM, Kenyon NS, Ricordi C, Berggren PO, Caicedo A (2006) The unique cytoarchitecture of human pancreatic islets has implications for islet cell function. Proc Natl Acad Sci U S A 103:2334–2339PubMedCrossRef
22.
Zurück zum Zitat Ozmen L, Ekdahl KN, Elgue G, Larsson R, Korsgren O, Nilsson B (2002) Inhibition of thrombin abrogates the instant blood-mediated inflammatory reaction triggered by isolated human islets: possible application of the thrombin inhibitor melagatran in clinical islet transplantation. Diabetes 51:1779–1784PubMedCrossRef Ozmen L, Ekdahl KN, Elgue G, Larsson R, Korsgren O, Nilsson B (2002) Inhibition of thrombin abrogates the instant blood-mediated inflammatory reaction triggered by isolated human islets: possible application of the thrombin inhibitor melagatran in clinical islet transplantation. Diabetes 51:1779–1784PubMedCrossRef
23.
Zurück zum Zitat Fujiwara H, Kikkawa Y, Sanzen N, Sekiguchi K (2001) Purification and characterization of human laminin-8. Laminin-8 stimulates cell adhesion and migration through α3β1 and α6β1 integrins.. J Biol Chem 276:17550–17558PubMedCrossRef Fujiwara H, Kikkawa Y, Sanzen N, Sekiguchi K (2001) Purification and characterization of human laminin-8. Laminin-8 stimulates cell adhesion and migration through α3β1 and α6β1 integrins.. J Biol Chem 276:17550–17558PubMedCrossRef
24.
Zurück zum Zitat Kikkawa Y, Moulson CL, Virtanen I, Miner JH (2002) Identification of the binding site for the Lutheran blood group glycoprotein on laminin α5 through expression of chimeric laminin chains in vivo. J Biol Chem 277:44864–44869PubMedCrossRef Kikkawa Y, Moulson CL, Virtanen I, Miner JH (2002) Identification of the binding site for the Lutheran blood group glycoprotein on laminin α5 through expression of chimeric laminin chains in vivo. J Biol Chem 277:44864–44869PubMedCrossRef
25.
Zurück zum Zitat Kikkawa Y, Virtanen I, Miner JH (2003) Mesangial cells organize the glomerular capillaries by adhering to the G domain of laminin α5 in the glomerular basement membrane. J Cell Biol 161:187–196PubMedCrossRef Kikkawa Y, Virtanen I, Miner JH (2003) Mesangial cells organize the glomerular capillaries by adhering to the G domain of laminin α5 in the glomerular basement membrane. J Cell Biol 161:187–196PubMedCrossRef
26.
Zurück zum Zitat Hasenson S, Määttä M, Rousselle P et al (2005) The immortalized human corneal epithelial cells adhere to laminin-10 by using Lutheran glycoproteins and integrin α3β1. Exp Eye Res 81:415–421PubMedCrossRef Hasenson S, Määttä M, Rousselle P et al (2005) The immortalized human corneal epithelial cells adhere to laminin-10 by using Lutheran glycoproteins and integrin α3β1. Exp Eye Res 81:415–421PubMedCrossRef
27.
Zurück zum Zitat Bosco D, Meda P, Halban PA, Rouiller DG (2000) Importance of cell-matrix interactions in rat islet β-cell secretion in vitro: role of α6β1 integrin. Diabetes 49:233–243PubMedCrossRef Bosco D, Meda P, Halban PA, Rouiller DG (2000) Importance of cell-matrix interactions in rat islet β-cell secretion in vitro: role of α6β1 integrin. Diabetes 49:233–243PubMedCrossRef
28.
Zurück zum Zitat Wang R, Li J, Lyte K, Yashpal NK, Fellows F, Goodyer CG (2005) Role for β1 integrin and its associated α3, α5, and α6 subunits in development of the human fetal pancreas. Diabetes 54:2080–2089PubMedCrossRef Wang R, Li J, Lyte K, Yashpal NK, Fellows F, Goodyer CG (2005) Role for β1 integrin and its associated α3, α5, and α6 subunits in development of the human fetal pancreas. Diabetes 54:2080–2089PubMedCrossRef
29.
Zurück zum Zitat Yashpal NK, Li J, Wheeler MB, Wang R (2005) Expression of β1 integrin receptors during rat pancreas development - sites and dynamics. Endocrinology 146:1798–1807PubMedCrossRef Yashpal NK, Li J, Wheeler MB, Wang R (2005) Expression of β1 integrin receptors during rat pancreas development - sites and dynamics. Endocrinology 146:1798–1807PubMedCrossRef
30.
Zurück zum Zitat Kikkawa Y, Miner JH (2005) Review: Lutheran/B-CAM: a laminin receptor on red blood cells and in various tissues. Conn Tissue Res 46:193–199CrossRef Kikkawa Y, Miner JH (2005) Review: Lutheran/B-CAM: a laminin receptor on red blood cells and in various tissues. Conn Tissue Res 46:193–199CrossRef
31.
Zurück zum Zitat Garbe JHO, Göhring W, Mann K, Timpl R, Sasaki T (2002) Complete sequence, recombinant analysis and binding to laminins and sulphated ligands of the N-terminal domains of laminin α3B and α5 chains. Biochem J 362:213–221PubMedCrossRef Garbe JHO, Göhring W, Mann K, Timpl R, Sasaki T (2002) Complete sequence, recombinant analysis and binding to laminins and sulphated ligands of the N-terminal domains of laminin α3B and α5 chains. Biochem J 362:213–221PubMedCrossRef
32.
Zurück zum Zitat Jiang FX, Georges-Labouesse E, Harrison LC (2001) Regulation of laminin 1-induced pancreatic β-cell differentiation by α6 integrin and α-dystroglycan. Mol Med 7:107–114PubMed Jiang FX, Georges-Labouesse E, Harrison LC (2001) Regulation of laminin 1-induced pancreatic β-cell differentiation by α6 integrin and α-dystroglycan. Mol Med 7:107–114PubMed
33.
Zurück zum Zitat Gao R, Ustinov J, Pulkkinen MA, Lundin K, Korsgren O, Otonkoski T (2003) Characterization of endocrine progenitor cells and critical factors for their differentiation in human adult pancreatic cell culture. Diabetes 52:2007–2015PubMedCrossRef Gao R, Ustinov J, Pulkkinen MA, Lundin K, Korsgren O, Otonkoski T (2003) Characterization of endocrine progenitor cells and critical factors for their differentiation in human adult pancreatic cell culture. Diabetes 52:2007–2015PubMedCrossRef
34.
Zurück zum Zitat Cirulli V, Beattie GM, Klier G et al (2000) Expression and function of αvβ4 and αvβ5 integrins in the developing pancreas: roles in the adhesion and migration of putative endocrine progenitor cells. J Cell Biol 150:1445–1460PubMedCrossRef Cirulli V, Beattie GM, Klier G et al (2000) Expression and function of αvβ4 and αvβ5 integrins in the developing pancreas: roles in the adhesion and migration of putative endocrine progenitor cells. J Cell Biol 150:1445–1460PubMedCrossRef
35.
Zurück zum Zitat Hulinsky I, Harrington J, Cooney S, Silink M (1995) Insulin secretion and DNA synthesis of cultured islets of Langerhans are influenced by the matrix. Pancreas 11:309–314PubMedCrossRef Hulinsky I, Harrington J, Cooney S, Silink M (1995) Insulin secretion and DNA synthesis of cultured islets of Langerhans are influenced by the matrix. Pancreas 11:309–314PubMedCrossRef
36.
Zurück zum Zitat Perfetti R, Henderson TE, Wang Y, Montrose-Rafizadeh C, Egan JM (1996) Insulin release and insulin mRNA levels in rat islets of Langerhans cultured on extracellular matrix. Pancreas 13:47–54PubMedCrossRef Perfetti R, Henderson TE, Wang Y, Montrose-Rafizadeh C, Egan JM (1996) Insulin release and insulin mRNA levels in rat islets of Langerhans cultured on extracellular matrix. Pancreas 13:47–54PubMedCrossRef
37.
Zurück zum Zitat Wang RN, Paraskevas S, Rosenberg L (1999) Characterization of integrin expression in islets isolated from hamster, canine, porcine, and human pancreas. J Histochem Cytochem 47:499–506PubMed Wang RN, Paraskevas S, Rosenberg L (1999) Characterization of integrin expression in islets isolated from hamster, canine, porcine, and human pancreas. J Histochem Cytochem 47:499–506PubMed
38.
Zurück zum Zitat Vainionpää N, Kikkawa Y, Lounatmaa K, Miner JH, Rousselle P, Virtanen I (2006) Laminin-10 and Lutheran blood group glycoproteins in adhesion of human endothelial cells. Am J Physiol Cell Physiol 290:C764–C775PubMedCrossRef Vainionpää N, Kikkawa Y, Lounatmaa K, Miner JH, Rousselle P, Virtanen I (2006) Laminin-10 and Lutheran blood group glycoproteins in adhesion of human endothelial cells. Am J Physiol Cell Physiol 290:C764–C775PubMedCrossRef
40.
Zurück zum Zitat Foellmer HG, Madri JA, Furthmayr H (1983) Methods in laboratory investigation. Monoclonal antibodies to type IV collagen: probes for the study of structure and function of basement membranes. Lab Invest 48:639–649PubMed Foellmer HG, Madri JA, Furthmayr H (1983) Methods in laboratory investigation. Monoclonal antibodies to type IV collagen: probes for the study of structure and function of basement membranes. Lab Invest 48:639–649PubMed
Metadaten
Titel
Blood vessels of human islets of Langerhans are surrounded by a double basement membrane
verfasst von
I. Virtanen
M. Banerjee
J. Palgi
O. Korsgren
A. Lukinius
L.-E. Thornell
Y. Kikkawa
K. Sekiguchi
M. Hukkanen
Y. T. Konttinen
T. Otonkoski
Publikationsdatum
01.07.2008
Verlag
Springer-Verlag
Erschienen in
Diabetologia / Ausgabe 7/2008
Print ISSN: 0012-186X
Elektronische ISSN: 1432-0428
DOI
https://doi.org/10.1007/s00125-008-0997-9

Weitere Artikel der Ausgabe 7/2008

Diabetologia 7/2008 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.