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Ackermann, A.M., Gannon, M. (2007). Molecular regulation of pancreatic β-cell mass development, maintenance, and expansion. J. Mol. Endocrinol., 38(1-2), 193-206.10.1677/JME-06-0053Search in Google Scholar

Amiel, S.A., Rela, M. (2005). Live organ-donation for islet transplantation. Lancet, 365, 1603-1604.10.1016/S0140-6736(05)66382-9Search in Google Scholar

Bach, J.F. (1994). Insulin-dependent diabetes mellitus as an autoimmune disease. Endocr. Rev., 15(4), 516-542.10.1210/edrv-15-4-5167988484Search in Google Scholar

Beger, C., Cirulli, V., Vajkoczy, P., Halban, P.A., Menger M.D. (1998). Vascularization of purified pancreatic islet-like cell aggregates (pseudoislets) after syngeneic transplantation. Diabetes, 47(4), 559-565.10.2337/diabetes.47.4.5599568687Search in Google Scholar

Bertuzzi, F., Grohovaz, F., Maffi, P., Caumo, A., Aldrighetti, L., Nano, R., Hengster, P., Calori, G., Di Carlo, V., Bonifacio, E., Secchi, A. (2002). Successful transplantation of human islets in recipients bearing a kidney graft. Diabetologia, 45(1), 77-84.10.1007/s125-002-8247-211845226Search in Google Scholar

Bertuzzi, F., Ricordi, C. (2007). Prediction of clinical outcome in islet allotransplantation. Diabetes Care, 30(2), 410-417.10.2337/dc06-123317259521Search in Google Scholar

Bonner-Weir, S., Taneja, M., Weir, G.C., Tatarkiewicz, K., Song, K.-H., Sharma, A., O'Neil, J.J. (2000). In vitro cultivaton of human islets from expanded ductal tissue. Proc. Natl. Acad. Sci. USA, 97(14), 7999-8004.10.1073/pnas.97.14.79991665910884429Search in Google Scholar

Bouwens, L., Kloppel, G. (1996). Islet neogenesis in the pancreas. Virchows Arch., 427(6), 553-560.10.1007/BF002028858605565Search in Google Scholar

Bouwens L., Rooman I. (2005). Regulation of pancreatic beta-cell mass. Physiol. Rev., 85(4), 1255-1270.10.1152/physrev.00025.200416183912Search in Google Scholar

Brissova, M., Fowler, M., Wiebe, P., Shostak, A., Shiota, M., Radhika, A., Lin, P.C., Gannon, M., Powers, A.C. (2004). Intraislet endothelial cells contribute to revascularization of transplanted pancreatic islets. Diabetes, 53(5), 1318-1325.10.2337/diabetes.53.5.131815111502Search in Google Scholar

Bucher, P., Oberholzer, J., Bosco, D., Mathe, Z., Toso, C., Bühler, L.H., Berney, T., Morel, P. (2005). Microbial surveillance during human pancreatic islet isolation. Transpl. Int., 18(5), 584-589.10.1111/j.1432-2277.2005.00092.x15819808Search in Google Scholar

Burke, G.W., Ciancio, G., Sollinger, H.W. (2004). Advances in pancreas transplantation. Transplantation, 15(77), 7135-7142.10.1097/01.TP.0000126929.71923.77Search in Google Scholar

Cao, L.Z., Tang, D.Q., Horb, M.E., Li, S.W., Yang, L.J. (2004). High glucose is necessary for complete maturation of Pdx1-VP16-expressing hepatic cells into functional insulin-producing cells. Diabetes, 53(12), 3168-3178.10.2337/diabetes.53.12.3168342221515561947Search in Google Scholar

Caumo, A., Maffi, P., Nano, R., Bertuzzi, F., Luzi, L., Secchi, A., Bonifacio, E., Piemonti, L. (2008). Transplant estimated function (TEF): A simple index to evaluate beta-cell secretion after islet transplantation. Diabetes Care, 31(2), 301-305.10.2337/dc07-097517977937Search in Google Scholar

Chen, N.K., Sivalingam, J., Tan, S.Y., Kon, O.L. (2005). Plasmid-electroporated primary hepatocytes acquire quasi-physiological secretion of human insulin and restore euglycemia in diabetic mice. Gene Ther., 12(8), 655-667.10.1038/sj.gt.330244615703765Search in Google Scholar

Davalli, A.M., Scaglia, L., Zangen, D.H., Hollister, J., Bonner-Weir, S., Weir, G.C. (1996). Vulnerability of islets in the immediate posttransplantation period. Dynamic changes in structure and function. Diabetes, 45(9), 1161-1167.Search in Google Scholar

Desai, B.M., Oliver-Krasinski, J., De Leon, D.D., Farzad, C., Hong, N., Leach, S.D., Stoffers, D.A. (2007). Preexisting pancreatic acinar cells contribute to acinar cell, but not islet βcell, regeneration. J. Clin. Invest., 117(4), 971-977.10.1172/JCI29988183893617404620Search in Google Scholar

Dor, Y., Brown, J., Martinez, O.I., Melton, D.A. (2004). Adult pancreatic beta-cells are formed by self-duplication rather than stem-cell differentiation. Nature, 429, 41-46.10.1038/nature0252015129273Search in Google Scholar

Dudek, R.W., Lawrence, I.E. Jr., Hill, R.S., Johnson, R.C. (1991). Induction of islet cytodifferentiation by fetal mesenchyme in adult pancreatic ductal epithelium. Diabetes, 40(8), 1041-1048.10.2337/diab.40.8.10411860556Search in Google Scholar

Duvillie, B., Attali, M., Aiello, V., Quemeneur, E., Scharfmann, R. (2003). Label-containing cells in the rat pancreas. Location and differentiation potential in vitro. Diabetes, 52(8), 2035-2042.Search in Google Scholar

Eberhardt, M.S.P., von Mach, M.A., Hengstler, J.G., Brulport, M., Linscheid, P., Seboek, D., Oberholzer, J., Barbero, A., Martin, I., Müller, B., Trono, D., Zulewski, H. (2006). Multipotential nestin and Isl-1 positive mesenchymal stem cells isolated from human pancreatic islets. Biochem. Biophys. Res. Commun., 345(3), 1167-1176.10.1016/j.bbrc.2006.05.01616713999Search in Google Scholar

Elliott, R.B., Escobar, L., Tan, P.L., Muzina, M., Zwain, S., Buchanan, C. (2007). Live encapsulated porcine islets from a type 1 diabetic patient 9.5 yr after xenotransplantation. Xenotransplantation, 14(2), 157-161.10.1111/j.1399-3089.2007.00384.x17381690Search in Google Scholar

Farney, A.C., Najarian, J.S., Nakhleh, R.E., Lloveras, G., Field, M.J., Gores, P.F., Sutherland, D.E. (1991). Autotransplantation of dispersed pancreatic islet tissue combined with total or near-total pancreatectomy for treatment of chronic pancreatitis. Surgery, 110(2), 427-437.Search in Google Scholar

Finegood, D.T., Scaglia, L., Bonner-Weir, S. (1995). Dynamics of beta-cell mass in the growing rat pancreas. Estimation with a simple mathematical model. Diabetes, 44(3), 249-256.Search in Google Scholar

Foster, J.L., Williams, G., Williams, L.J., Tuch, B.E. (2007). Differentiation of transplanted microencapsulated fetal pancreatic cells. Transplantation, 83(11), 1440-1448.10.1097/01.tp.0000264555.46417.7d17565317Search in Google Scholar

Foulis, A.K., McGill, M., Farquharson, M.A. (1991). Insulitis in type 1 (insulin-dependent) diabetes mellitus in man—macrophages, lymphocytes, and interferon-gamma containing cells. J. Pathol., 165(2), 97-103.10.1002/path.17116502031744803Search in Google Scholar

Frank, A., Deng, S., Huang, X., Velidedeoglu, E., Bae, Y.-S., Liu, C., Abt, P., Stephenson, R., Mohiuddin, M., Thambipillai, T., Markmann, E., Palanjian, M., Sellers, M., Naji, A., Barker, C.F., Markmann, J.F. (2004). Transplantation for type 1 diabetes. Comparison of vascularized whole-organ pancreas with isolated pancreatic islets. Ann. Surg., 240(4), 631-643.Search in Google Scholar

Fraud, T., Ricordi, C., Baidal, D.A., Hafiz, M.M., Ponte, G., Cure, P., Pileggi, A., Poggioli, R., Ichii, H., Khan, A., Ferreira, J.V., Pugliese, A., Esquenazi, V.V., Kenyon, N.S., Alejandro, R. (2005). Islet transplantation in type 1 diabetes mellitus using cultured islets and steroid-free immunosuppression: Miami experience. Amer. J. Transplant., 5(8), 2037-2046.10.1111/j.1600-6143.2005.00957.x15996257Search in Google Scholar

Gasa, R., Mrejen, C., Leachman, N., Otten, M., Barnes, M., Wang, J., Chakrabarti, S., Mirmira, R., German, M. (2004). Proendocrine genes co-ordinate the pancreatic islet differentiation program in vitro. Proc. Natl. Acad. Sci. USA, 101(36), 13245-13250.10.1073/pnas.040530110151655515340143Search in Google Scholar

Gatto, C., Callegari, M., Folin, M., Conconi, M., Paolin, A., Di Falco, G., Bredariol, S., Spinazzi, R., Parnigotto, P.P., Nussdorfer, G.G. (2003). Effects of cryopreservation and coculture with pancreatic ductal epithelial cells on insulin secretion from human pancreatic islets. Int. J. Mol. Med., 12(6), 851-854.10.3892/ijmm.12.6.851Search in Google Scholar

Gershengorn, M.C., Hardikar, A.A., Wei, C., Geras-Raaka, E., Marcus-Samuels, B., Raaka, B.M. (2004). Epithelial to mesenchymal transition generates proliferative human islet precursor cells. Science, 306, 2261-2264.10.1126/science.110196815564314Search in Google Scholar

Gillespie, K.M. (2006). Type 1 diabetes: pathogenesis and prevention. CMAJ, 175(2), 165-170.10.1503/cmaj.060244148999816847277Search in Google Scholar

Gray, D.W.R. (1989). The role of exocrine tissue in pancreatic islet transplantation. Transplant Int., 2(1), 41-45.10.1111/j.1432-2277.1989.tb01836.xSearch in Google Scholar

Gruessner, A.C., Sutherland, D.E. (2004). Pancreas transplant outcomes for United States (US) and non-US cases as reported to the United Network for Organ Sharing (UNOS) and the International Pancreas Transplant Registry (IPTR) as of June 2004. Clin. Transplant., 19(4), 433-455.Search in Google Scholar

Halban, P.A. (2004). Cellular sources of new pancreatic—cells and therapeutic implications for regenerative medicine. Nat. Cell Biol., 6(11), 1021-1025.10.1038/ncb1104-102115516994Search in Google Scholar

Hao, E., Tyrberg, B., Itkin-Ansari, P., Lakey, J.R., Geron, I., Monosov, E.Z., Barcova, M., Mercola, M., Levine, F. (2006). Beta-cell differentiation from nonendocrine epithelial cells of the adult human pancreas. Nat. Med., 12(3), 310-316.10.1038/nm136716491084Search in Google Scholar

Heit, J.J., Karnik, S.K., Kim, S.K. (2006). Intrinsic regulators of pancreatic beta-cell proliferation. Annu. Rev. Cell Dev. Biol., 22, 311-338.10.1146/annurev.cellbio.22.010305.10442516824015Search in Google Scholar

Heremans, Y., Van De Casteele, M., In't Veld, P., Gradwohl, G., Serup, P., Madsen, O., Pipeleers, D., Heimberg, H. (2002). Recapitulation of embryonic neuroendocrine differentiation in adult human pancreatic duct cells expressing neurogenin 3. J. Cell Biol., 159(2), 303-312.10.1083/jcb.200203074217304712403815Search in Google Scholar

Hering, B.J., Kandaswamy, R., Ansite, J.D., Eckman, P.M., Nakano, M., Sawada, T., Matsumoto, I., Ihm, S.H., Zhang, H.J., Parkey, J., Hunter, D.W., Sutherland, D.E. (2005). Single-donor, marginal-dose islet transplantation in patients with type 1 diabetes. JAMA, 293(7), 830-835.10.1001/jama.293.7.83015713772Search in Google Scholar

Hohmeier, H.E., Tran, V.V., Chen, G., Gasa, R., Newgard, C.B. (2003). Inflammatory mechanisms in diabetes: Lessons from the beta-cell. Int. J. Obes. Relat. Metab. Disord., 27 (Suppl. 3), S12-S16.10.1038/sj.ijo.080249314704737Search in Google Scholar

Hori, Y., Gu, X., Xie, X., Kim, S.K. (2005). Differentiation of insulin-producing cells from human neural progenitor cells. PLoS Med., 2(4), e103.10.1371/journal.pmed.0020103108720815839736Search in Google Scholar

Ianus, A., Holz, G.G., Theise, N.D., Hussain, M.A. (2003). In vivo derivation of glucose-competent pancreatic endocrine cells from bone marrow without evidence of cell fusion. J. Clin. Invest., 111(6), 843-850.10.1172/JCI200316502Search in Google Scholar

Ihm, S.H., Matsumoto, I., Sawada, T., Nakano, M., Zhang, H.J., Ansite, J.D., Sutherland, D.E., Hering, B.J. (2006). Effect of donor age on function of isolated human islets. Diabetes, 55(5), 1361-1368.10.2337/db05-133316644693Search in Google Scholar

Johnson, J.D., Bernal-Mizrachi, E., Alejandro, E.U., Han, Z., Kalynyak, T.B., Li, H., Beith, J.L., Gross, J., Warnock, G.L., Townsend, R.R., Permutt, M.A., Polonsky, K.S. (2006). Insulin protects islets from apoptosis via Pdx1 and specific changes in the human islet proteome. Proc. Natl. Acad. Sci. USA, 103(51), 19575-19580.10.1073/pnas.0604208103174826717158802Search in Google Scholar

Johnson, P.R., White, S.A., London, N.J. (1996). Collagenase and human islet isolation. Cell Transplant., 5(4), 437-452.10.1177/096368979600500403Search in Google Scholar

Keymeulen, B., Gillard, P., Mathieu, C., Movahedi, B., Maleux, G., Delvaux, G., Ysebaert, D., Roep, B., Vandemeulebroucke, E., Marichal, M., In't Veld, P., Bogdani, M., Hendrieckx, C., Gorus, F., Ling, Z., van Rood, J., Pipeleers, D. (2006). Correlation between β cell mass and glycemic control in type 1 diabetic recipients of islet cell graft. Proc. Natl. Acad. Sci. USA, 103(46), 17444-17449.10.1073/pnas.0608141103185994817090674Search in Google Scholar

Kin, T., Rosichuk, S., Shapiro, A.M., Lakey, J.R. (2007a). Detection of microbial contamination during human islet isolation. Cell Transplant., 16(1), 9-13.10.3727/000000007783464498Search in Google Scholar

Kin, T., Zhai, X., Murdoch, T.B., Salam, A., Shapiro, A.M., Lakey, J.R. (2007b). Enhancing the success of human islet isolation through optimization and characterization of pancreas dissociation enzyme. Amer. J. Transplant., 7(5), 1233-1241.10.1111/j.1600-6143.2007.01760.xSearch in Google Scholar

King, A.J.F., Fernandes, J.R., Hollister-Lock, J., Nienaber, C.E., Bonner-Weir, S., Weir, G.C. (2007). Normal relationship of β-and non-β-cells not needed for successful islet transplantation. Diabetes, 56(9), 2312-2318.10.2337/db07-0191Search in Google Scholar

Kodama, S., Kuhtreiber, W., Fujimura, S., Dale, E.A., Faustman, D.L. (2003). Islet regeneration during the reversal of autoimmune diabetes in NOD mice. Science, 302, 1223-1227.10.1126/science.1088949Search in Google Scholar

Lakey, J.R., Kneteman, N.M., Rajotte, R.V., Wu, D.C., Bigam, D., Shapiro, A.M. (2002). Effect of core pancreas temperature during cadaveric procurement on human islet isolation and functional viability. Transplantation, 73(7), 1106-1110.10.1097/00007890-200204150-00016Search in Google Scholar

Lakey, J.R., Warnock, G.L., Rajotte, R.W., Suarez-Alamazor, M.E., Ao, Z., Shapiro, A.M., Kneteman, N.M. (1996). Variables in organ donors that affect the recovery of human islets of Langerhans. Transplantation, 61(7), 1047-1053.10.1097/00007890-199604150-00010Search in Google Scholar

Lendahl, U., Zimmerman, L.B., McKay, R.D. (1990). CNS stem cells express a new class of intermediate filament protein. Cell, 60(4), 585-595.10.1016/0092-8674(90)90662-XSearch in Google Scholar

Linetsky, E., Bottino, R., Lehmann, R., Alejandro, R., Inverardi, L., Ricordi, C. (1997). Improved human islet isolation using a new enzyme blend, liberase. Diabetes, 46(7), 1120-1123.10.2337/diab.46.7.1120Search in Google Scholar

Luzi, L., Perseghin, G., Brendel, M.D., Terruzzi, I., Battezzati, A., Eckhard, M., Brandhorst, D., Brandhorst, H., Friemann, S., Socci, C., Di Carlo, V., Piceni Sereni, L., Benedini, S., Secchi, A., Pozza, G., Bretzel, R.G. (2001). Metabolic effects of restoring partial β-cell function after islet allotransplantation in type 1 diabetic patients. Diabetes, 50(2), 277-282.10.2337/diabetes.50.2.277Search in Google Scholar

Matsumoto, S., Noguchi, H., Naziruddin, B., Onaca, N., Jackson, A., Nobuyo, H., Teru, O., Naoya, K., Klintmalm, G., Levy, M. (2007). Improvement of pancreatic islet cell isolation for transplantation. Proc. Bayl. Univ. Med. Cent., 20(4), 357-362.10.1080/08998280.2007.11928323Search in Google Scholar

Matsumoto, S., Okitsu, T., Iwanaga, Y., Noguchi, H., Nagata, H., Yonekawa, Y., Yamada, Y., Fukuda, K., Tsukiyama, K., Suzuki, H., Kawasaki, Y., Shimodaira, M., Matsuoka, K., Shibata, T., Kasai, Y., Maekawa, T., Shapiro, J., Tanaka, K. (2005). Insulin independence after living-donor distal pancreatectomy and islet allotransplantation. Lancet, 365, 1642-1644.10.1016/S0140-6736(05)66383-0Search in Google Scholar

Matsumoto, S., Tanaka, K., Strong, D.M., Reems, J.A. (2004). Efficacy of human islet isolation from the tail section of the pancreas for the possibility of living donor islet transplantation. Transplantation, 78(6), 839-843.10.1097/01.TP.0000130177.03326.D5Search in Google Scholar

Meier, J.J., Bhushan, A., Butler, P.C. (2006). The potential for stem cell therapy in diabetes. Pediatr. Res., 59(4, Pt. 2), 65R-73R.10.1203/01.pdr.0000206857.38581.4916549551Search in Google Scholar

Meier, J.J., Bhushan, A., Butler, A.E., Rizza, R.A., Butler, P.C. (2005). Sustained beta cell apoptosis in patients with long-standing type 1 diabetes: Indirect evidence for islet regeneration. Diabetologia, 48(11), 2221-2228.10.1007/s00125-005-1949-216205882Search in Google Scholar

Menger, M.D., Vajkoczy, P., Beger, C., Messmer, K. (1994). Orientation of microvascular blood flow in pancreatic islet isografts. J. Clin. Invest., 93(5), 2280-2285.10.1172/JCI1172282943888182162Search in Google Scholar

Merchant, F.A., Diller, K.R., Aggarwal, S.J., Bovik, A.C. (1997). Angiogenesis in cultured and cryopreserved pancreatic islet grafts. Transplantation, 63(11), 1652-1660.10.1097/00007890-199706150-000209197362Search in Google Scholar

Miettinen, P.J., Ustinov, J., Ormio, P., Gao, R., Palgi, J., Hakonen, E., Juntti-Berggren, L., Berggren, P.O., Otonkoski, T. (2006). Downregulation of EGF receptor signaling in pancreatic islets causes diabetes due to impaired postnatal beta-cell growth. Diabetes, 55(12), 3299-3308.10.2337/db06-041317130473Search in Google Scholar

Minami, K., Okuno, M., Miyawaki, K., Okumachi, A., Ishizaki, K., Oyama, K., Kawaguchi, M., Ishizuka, N., Iwanaga, T., Seino, S. (2005). Lineage tracing and characterization of insulin-secreting cells generated from adult pancreatic acinar cells. Proc. Natl. Acad. Sci. USA, 102(42), 15116-15121.10.1073/pnas.0507567102125773716210247Search in Google Scholar

Moriscot, C., de Fraipont, F., Richard, M.J., Marchand, M., Savatier, P., Bosco, D., Favrot, M., Benhamou, P.Y. (2005). Human bone marrow mesenchymal stem cells can express insulin and key transcription factors of the endocrine pancreas developmental pathway upon genetic and/or microenvironmental manipulation in vitro. Stem Cells, 23(4), 594-603.10.1634/stemcells.2004-012315790780Search in Google Scholar

Morris, P.J., Monaco, A.P. (2005). Pancreatic islet transplantation: Is the glass half-empty or half-full? Transplantation, 79(10), 1287-1288.10.1097/01.TP.0000161808.41676.3DSearch in Google Scholar

Morrow, C.E., Cohen, J.I., Sutherland, D.E., Najarian, J.S. (1984). Chronic pancreatitis: Long-term surgical results of pancreatic duct drainage, pancreatic resection, and near-total pancreatectomy and islet autotransplantation. Surgery, 96(4), 608-616.Search in Google Scholar

Murtaugh, L.C. (2007). Pancreas and beta-cell development: From the actual to the possible. Development, 134(3), 427-438.10.1242/dev.0277017185316Search in Google Scholar

Nakajima-Nagata, N., Sakurai, T., Mitaka, T., Katakai, T., Yamato, E., Miyazaki, J., Tabata, Y., Sugai, M., Shimizu, A. (2004). In vitro induction of adult hepatic progenitor cells into insulin-producing cells. Biochem. Biophys. Res. Commun., 318(3), 625-630.10.1016/j.bbrc.2004.04.05915144883Search in Google Scholar

Nano, R., Clissi, B., Melzi, R., Calori, G., Maffi, P., Antonioli, B., Marzorati, S., Aldrighetti, L., Freschi, M., Grochowiecki, T., Socci, C., Secchi, A., Di Carlo, V., Bonufacio, E., Bertuzzi, F. (2005). Islet isolation for allotransplantation: Variables associated with successful islet yield and graft function. Diabetologia, 48(5), 906-912.10.1007/s00125-005-1725-315830183Search in Google Scholar

Narang, A.S., Mahato, R.I. (2006). Biological and biomaterial approaches for improved islet transplantation. Pharmacol. Rev., 58(2), 194-243.10.1124/pr.58.2.616714486Search in Google Scholar

Nir, T., Melton, D.A., Dor, Y. (2007). Recovery from diabetes in mice by β cell regeneration. J. Clin. Invest., 117(9), 2553-2561.10.1172/JCI32959195754517786244Search in Google Scholar

O'Connell, P.J., Hawthorne, W.J., Holmes-Walker, D.J., Nankivell, B.J., Gunton, J.E., Patel, A.T., Walters, S.N., Pleass, H.C.C., Allen, R.D.M., Chapman, J.R. (2006). Clinical islet transplantation in type 1 diabetes mellitus: Results of Australia's first trial. MJA (Medical Journal of Australia), 184(5), 221-225.10.5694/j.1326-5377.2006.tb00206.x16515432Search in Google Scholar

Oh, S.H., Muzzonigro, T.M., Bae, S.H., LaPlante, J.M., Hatch, H.M., Petersen, B.E. (2004). Adult bone marrow-derived cells trans-differentiating into insulin-producing cells for the treatment of type I diabetes. Lab. Invest., 84(5), 607-617.10.1038/labinvest.370007415034596Search in Google Scholar

Okuno, M., Minami, K., Okumachi, A., Miyawaki, K., Yokoi, N., Toyokuni, S., Seino, S. (2007). Generation of insulin-secreting cells from pancreatic acinar cells of animal models of type 1 diabetes. Amer. J. Physiol. Endocrinol. Metab., 292(1), E158-E165.10.1152/ajpendo.00180.200616926384Search in Google Scholar

Paget, M., Murray, H., Bailey, C.J., Downing, R. (2007). Human islet isolation: Semi-automated and manual methods. Diabetes Vasc. Dis. Res., 4(1), 7-12.10.3132/dvdr.2007.01017469038Search in Google Scholar

Pierreux, C.E., Poll, A.V., Kemp, C.R., Clotman, F., Maestro, M.A., Cordi, S., Ferrer, J., Leyns, L., Rousseau, G.G., Lemaigre, F.P. (2006). The transcription factor hepatocyte nuclear factor-6 controls the development of pancreatic ducts in the mouse. Gastroenterology, 130(2), 532-541.10.1053/j.gastro.2005.12.00516472605Search in Google Scholar

Rickels, M.R., Naji, A., Teff, K.L. (2006). Insulin sensitivity, glucose effectiveness, and free fatty acid dynamics after human islet transplantation for type 1 diabetes. J. Clin. Endocrinol. Metab., 91(6), 2138-2144.10.1210/jc.2005-251916569741Search in Google Scholar

Rickels, M.R., Schutta, M.H., Markmann, J.F., Barker, C.F., Naji, A., Teff, K.L. (2005). β-Cell function following human islet transplantation for type 1 diabetes. Diabetes, 54(1), 100-106.10.2337/diabetes.54.1.10015616016Search in Google Scholar

Ricordi, C. (2003). Islet transplantation: A brave new world. Lilly lecture 2002. Diabetes, 52(7), 1595-1603.Search in Google Scholar

Ricordi, C., Gray, D.W., Hering, B.J., Kaufman, D.B., Warnock, G.L., Kneteman, N. M., Lake, S.P., London, N.J.M., Socci, C., Alejandro, R., Zeng, Y., Scharp, C., Viviani, G., Falqui, L., Tzakis, G., James, R.F.L., Rajotte, R.V., Di Carlo, V., Morris, P.J., Sutherland, D.E.R., Starzl, T.E., Mintz, D.H., Lacy, P.E. (1990). Islet isolation assessment in man and large animals. Acta Diabetol. Lat., 27(3), 185-195.10.1007/BF025813312075782Search in Google Scholar

Ricordi, C., Invetardi, L., Kenyon, N.S., Goss, J., Bertuzzi, F., Alejandro, R. (2005). Requirements for success in clinical islet transplantation. Transplantation, 79(10), 1298-1300.10.1097/01.TP.0000157275.64874.8415912093Search in Google Scholar

Ricordi, C., Lacy, P.E., Finke, E.H., Olack, B.J., Scharp, D.W. (1988). Automated method for isolation of human pancreatic islets. Diabetes, 37(4), 413-420.10.2337/diab.37.4.4133288530Search in Google Scholar

Robertson, R.P. (2004). Islet transplantation as a treatment for diabetes—a work in progress. N. Engl. J. Med., 350(7), 694-705.10.1056/NEJMra03242514960745Search in Google Scholar

Rossini, A.A., Greiner, D.L., Mordes, J.P. (1999). Induction of immunologic tolerance for transplantation. Physiological Reviews, 79(1), 99-141.10.1152/physrev.1999.79.1.999922369Search in Google Scholar

Rother, K., Harlan, D.M. (2004). Challenges facing islet transplantation for the treatment of type 1 diabetes mellitus. J. Clin. Invest., 114(7), 877-883.10.1172/JCI200423235Search in Google Scholar

Rozental R., Bicans J., Shevelev V. (1996). Organ and tissue transplantation in Latvia. Ann. Transplant., 1(3), 57-59.Search in Google Scholar

Ryan, E.A., Lakey, J.R., Rajotte, R.W., Korbutt, G.S., Kin, T., Imes, S., Rabinovitch, A., Elliott, J.F., Bigam, D., Kneteman, N.M., Warnock, G.L., Larsen, I., Shapiro, A.M. (2001). Clinical outcomes and insulin secretion after islet transplantation with the Edmonton protocol. Diabetes, 50(4), 710-719.10.2337/diabetes.50.4.71011289033Search in Google Scholar

Ryan, E.A., Paty, B.W., Senior, P.A., Bigam, D., Alfadhli, E., Kneteman, N.M., Lakey, J.R., Shapiro, A.M. (2005a). Five-year follow-up after clinical islet transplantation. Diabetes, 54(7), 2060-2069.10.2337/diabetes.54.7.206015983207Search in Google Scholar

Ryan, E.A., Paty, B.W., Senior, P.A., Lakey, J.R., Bigam, D., Shapiro, A.M. (2005b). β-Score: An assessment of β-cell function after islet transplantation. Diabetes Care, 28(4), 343-347.10.2337/diacare.28.2.34315677790Search in Google Scholar

Ryan, E.A., Shandro, T., Green, K., Paty, B.W., Senior, P.A., Bigam, D., Shapiro, A.M., Vantyghem, M.C. (2004). Assessment of the severity of hypoglycemia and glycemic lability in type 1 diabetic subjects undergoing islet transplantation. Diabetes, 53(4), 955-962.10.2337/diabetes.53.4.95515047610Search in Google Scholar

Sapir, T., Shternhall, K., Meivar-Levy, I., Blumenfeld, T., Cohen, H., Skutelsky, E., Eventov-Friedman, S., Barshack, I., Goldberg, I., Pri-Chen, S., Ben-Dor, L., Polak-Charcon, S., Karasik, A., Shimon, I., Mor, E., Ferber, S. (2005). Cell-replacement therapy for diabetes: Generating functional insulin-producing tissue from adult human liver cells. Proc. Natl. Acad. Sci. USA, 102(22), 7964-7969.10.1073/pnas.0405277102114235015899968Search in Google Scholar

Scharfmann, R. (2003). Alternative sources of beta cells for cell therapy of diabetes. Eur. J. Clin. Invest., 33(7), 595-600.10.1046/j.1365-2362.2003.01190.x12814397Search in Google Scholar

Serup, P., Madsen, O.D., Mandrup-Poulsen, T. (2001). Islet and stem cell transplantation for treating diabetes. BMJ (British Medical Journal), 322(1), 29-32.10.1136/bmj.322.7277.29111930311141151Search in Google Scholar

Shapiro, A.M., Lakey, J.R., Ryan, E.A., Korbutt, G.S., Toth, E., Warnock, G.L., Kneteman, N.M., Rajotte, R.V. (2000). Islet transplantation in seven patients with type 1 diabetes mellitus using a glucocorticoid-free immunosuppressive regimen. N. Engl. J. Med., 343(4), 230-238.10.1056/NEJM20000727343040110911004Search in Google Scholar

Shapiro, A.M., Ricordi, C., Hering, B.J., Auchincloss, H., Lindblad, R., Robertson, R.P., Secchi, A., Brendel, M.D., Berney, T., Brennan, D.C., Cagliero, M.D., Alejandro, R., Ryan, E.A., DiMercurio, B., Morel, P., Polonsky, K.S., Reems, J.A., Bretzel, R. G., Bertuzzi, F., Fround T., Kandaswamy, R., Sutherland, D.E., Eisenbarth, G., Segal, M., Preiksaitis, J., Korbutt, G.S., Barton F.B., Viviano, L., Seyfert-Margolis, V., Bluestone, J., Lakey, J.R. (2006). International trial of the Edmonton protocol for islet transplantation. N. Eng. J. Med., 355(13), 1318-1330.10.1056/NEJMoa06126717005949Search in Google Scholar

Soria, B., Bedoya, F.J., Martin, F. (2005). Gastrointestinal Stem Cells. I. Pancreatic stem cells. Amer. J. Physiol. Gastrointest. Liver Physiol., 289(2), G177-G180.Search in Google Scholar

Srinivasan, P., Huang, G.C., Amiel, S.A., Heaton, N.D. (2006). Islet cell transplantation. Postgrad. Med. J., 83(978), 224-229.10.1136/pgmj.2006.053447260002917403947Search in Google Scholar

Stagner, J.I., Rilo, H.L., White, K.K. (2007). The pancreas as an islet transplantation site. Confirmation in a syngeneic rodent and canine autotransplant model. JOP, J. Pancreas, 8(5), 628-636.Search in Google Scholar

Street, C.N., Lakey, J.R.T., Shapiro, A.M.J., Imes, S., Rajotte, R.V., Ryan, E.A., Lyon, J.G., Kin, T., Avila, J., Tsujimura, T., Korbutt, G.S. (2004). Islet graft assessment in the Edmonton protocol. Implications for predicting long-term clinical outcome. Diabetes, 53(12), 3107-3114.10.2337/diabetes.53.12.310715561940Search in Google Scholar

Suarez-Pinzon, W.L., Lakey, J.R.T., Brand, S.J., Rabinovitch, A. (2005). Combination therapy with epidermal growth factor and gastrin induces neogenesis of human islet β-cells from pancreatic duct cells and an increase in functional β-cell mass. J. Clin. Endocrinol. Metab., 90(6), 3401-3409.10.1210/jc.2004-076115769977Search in Google Scholar

Sun, Y., Chen, L., Hou, X.G., Hou, W.K., Dong, J.J., Sun, L., Tang, K.X., Wang, B., Song, J., Li, H., Wang, K.X. (2007a). Differentiation of bone marrow-derived mesenchymal stem cells from diabetic patients into insulin-producing cells in vitro.Chin. Med. J. (Engl.), 120(9), 771-776.10.1097/00029330-200705010-00007Search in Google Scholar

Sun, B., Roh, K.H., Lee, S.R., Lee, Y.S., Kang, K.S. (2007b). Induction of human umbilical cord blood-derived stem cells with embryonic stem cell phenotypes into insulin producing islet-like structure. Biochem. Biophys. Res. Commun., 354(4), 919-923.10.1016/j.bbrc.2007.01.069Search in Google Scholar

Tang, D.Q., Cao, L.Z., Chou, W., Shun, L., Farag, C., Atkinson, M.A., Li, S.W., Chang, L.J., Yang, L.J. (2006). Role of Pax4 in Pdx1-VP16-mediated liver-to-endocrine pancreas transdifferentiation. Lab. Invest., 86(8), 829-841.10.1038/labinvest.3700434Search in Google Scholar

Teta, M., Long, S.Y., Wartschow, L.M., Rankin, M.M., Kushner, J.A. (2005). Very slow turnover of beta-cells in aged adult mice. Diabetes, 54(9), 2557-2567.10.2337/diabetes.54.9.2557Search in Google Scholar

Truong, W., Lakey, J.R., Ryan, E.A., Shapiro, A.M. (2005). Clinical islet transplantation at the University of Alberta—the Edmonton experience. Clin. Transpl., 153-172.Search in Google Scholar

Tsang, W.G., Zheng, T., Wang, Y., Tang, J., Rind, H.B., Francki, A., Bufius, N. (2007). Generation of functional islet-like clusters after monolayer culture and intracapsular aggregation of adult human pancreatic islet tissue. Transplantation, 83(6), 685-693.10.1097/01.tp.0000256178.57359.4fSearch in Google Scholar

Wiseman, A.C., Gill, R.G. (2004). Current status of clinical islet transplantation: Advances and obstacles. Curr. Opin. Endocrinol. Diabetes, 11(2), 98-103.10.1097/01.med.0000129642.42263.66Search in Google Scholar

Wolters, G.H., Vos-Scheperkeuter, G.H., van Deijnen, J.H., van Schilfgaarde, R. (1992). An analysis of the role of collagenase and protease in the enzymatic dissociation of the rat pancreas for islet isolation. Diabetologia, 35(8), 735-742.10.1007/BF00429093Search in Google Scholar

Woodbury, D., Schwarz E.J., Prockop, D.J., Black, I.B. (2000). Adult rat and human bone marrow stromal cells differentiate into neurons. J. Neurosci. Res., 61(4), 364-370.10.1002/1097-4547(20000815)61:4<364::AID-JNR2>3.0.CO;2-CSearch in Google Scholar

Wu, X.H., Liu, C.P., Xu, K.F., Mao, X.D., Zhu, J., Jiang, J.J., Cui, D., Zhang, M., Xu Y., Liu, C. (2007). Reversal of hyperglycemia in diabetic rats by portal vein transplantation of islet-like cells generated from bone marrow mesenchymal stem cells. World J. Gastroenterol., 13(24), 3342-3349.10.3748/wjg.v13.i24.3342Search in Google Scholar

Yamaoka, T. (2002). Regeneration therapy of pancreatic beta cells: Towards a cure for diabetes? Biochem. Biophys. Res. Commun., 296(5), 1039-1043.10.1016/S0006-291X(02)02000-4Search in Google Scholar

Yatoh, S., Dodge, R., Akashi, T., Omer, A., Sharma, A., Weir, G.C., Bonner-Weir, S. (2007). Differentiation of affinity-purified human pancreatic duct cells to β-cells. Diabetes, 56(7), 1802-1809.10.2337/db06-167017473224Search in Google Scholar

Zalzman, M., Gupta, S., Giri, R.K., Berkovich, I., Sappal, B.S., Karnieli, O., Zern, M.A., Fleischer, N., Efrat, S. (2003). Reversal of hyperglycemia in mice by using human expandable insulin-producing cells differentiated from fetal liver progenitor cells. Proc. Natl. Acad. Sci. USA, 100(12), 7253-7258.10.1073/pnas.113685410016586212756298Search in Google Scholar

Zulewski, H., Abraham, E.J., Gerlach, M., Daniel, P.B., Moritz, W., Müller, B., Vallejo, M., Thomas, M.K., Habener, J.F. (2001). Multipotential nestin-positive stem cells isolated from adult pancreatic islets differentiate ex vivo into pancreatic endocrine, exocrine, and hepatic phenotypes. Diabetes, 50(3), 521-533.10.2337/diabetes.50.3.52111246871Search in Google Scholar

Лейниекс, А. (1989). Оценка эффективности трансплантации культуры островковых клеток поджелудочной железы у больных сахарным диабетом [Evaluation of efficiency of pancreatic islet cells transplantation in diabetic patients]. Автореф. дисс. Москва, НИИ трансплантологии и искусственных органов. 25 с. (in Russian).Search in Google Scholar

ISSN:
1407-009X
Langue:
Anglais
Périodicité:
6 fois par an
Sujets de la revue:
General Interest, Mathematics, General Mathematics