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C. Ricordi, P. Lacy, D. Scharp (1989)
Automated Islet Isolation From Human PancreasDiabetes, 38
W. Ward (2008)
A review of the foreign-body response to subcutaneously-implanted devices: the role of macrophages and cytokines in biofouling and fibrosis.Journal of diabetes science and technology, 2 5
R. Tamarat, J. Silvestre, Sophie ricousse-Roussanne, V. Barateau, L. Lecomte-Raclet, M. Clergue, M. Duriez, G. Tobelem, B. Lévy (2004)
Impairment in ischemia-induced neovascularization in diabetes: bone marrow mononuclear cell dysfunction and therapeutic potential of placenta growth factor treatment.The American journal of pathology, 164 2
R. Brekken, J. Overholser, V. Stastny, J. Waltenberger, J. Minna, P. Thorpe (2000)
Selective inhibition of vascular endothelial growth factor (VEGF) receptor 2 (KDR/Flk-1) activity by a monoclonal anti-VEGF antibody blocks tumor growth in mice.Cancer research, 60 18
C Ricordi, TB Strom (2004)
Clinical islet transplantation: advances and immunological challengesNat. Rev. Immunol., 4
D. Harlan, N. Kenyon, O. Korsgren, B. Roep (2009)
Current Advances and Travails in Islet TransplantationDiabetes, 58
Takahiro Saito, K. Ohashi, R. Utoh, H. Shimizu, K. Ise, Hiroyuki Suzuki, M. Yamato, T. Okano, M. Gotoh (2011)
Reversal of Diabetes by the Creation of Neo-Islet Tissues Into a Subcutaneous Site Using Islet Cell SheetsTransplantation, 92
Hao Zhang, K. Maslov, G. Stoica, Lihong Wang (2006)
Functional photoacoustic microscopy for high-resolution and noninvasive in vivo imagingNature Biotechnology, 24
M. Amerongen, G. Molema, J. Plantinga, H. Moorlag, M. Luyn (2004)
Neovascularization and vascular markers in a foreign body reaction to subcutaneously implanted degradable biomaterial in miceAngiogenesis, 5
A. Pileggi, R. Molano, C. Ricordi, E. Zahr, J. Collins, R. Valdes, L. Inverardi (2006)
Reversal of Diabetes by Pancreatic Islet Transplantation into a Subcutaneous, Neovascularized DeviceTransplantation, 81
C. Ricordi, T. Strom (2004)
ISLET TRANSPLANTATION : ADVANCES AND IMMUNOLOGICAL CHALLENGES
James Anderson (2001)
Biological Responses to MaterialsAnnual Review of Materials Research, 31
A. Plesner, C. Verchere (2011)
Advances and Challenges in Islet Transplantation: Islet Procurement Rates and Lessons Learned from Suboptimal Islet TransplantationJournal of Transplantation, 2011
R. Olsson, J. Olerud, U. Pettersson, P. Carlsson (2011)
Increased Numbers of Low-Oxygenated Pancreatic Islets After Intraportal Islet TransplantationDiabetes, 60
A. Pileggi, A. Pileggi, Camillo Ricordi, Mario Alessiani, L. Inverardi (2001)
Factors influencing Islet of Langerhans graft function and monitoring.Clinica chimica acta; international journal of clinical chemistry, 310 1
C. Hellerström, A. Andersson, O. Korsgren, L. Jansson, S. Sandler (1989)
Aspects of pancreatic islet transplantation in diabetes mellitus.Bailliere's clinical gastroenterology, 3 4
P. Costa, R. Soares (2013)
Neovascularization in diabetes and its complications. Unraveling the angiogenic paradox.Life sciences, 92 22
D. Grainger (2013)
All charged up about implanted biomaterialsNature Biotechnology, 31
N. Fujiwara, Kazuo Kobayashi (2005)
Macrophages in inflammation.Current drug targets. Inflammation and allergy, 4 3
J. A.M., Ames, Hapiro, Onathan, L. R.T, Akey, Dmond, R. A., Yan, regory, K. S, Orbutt, Arth, W. L., Arnock, Orman, K. M., Neteman, Ay, R. V, Ajotte (2000)
Islet Transplantation in Seven Patients with Type 1 Diabetes Mellitus Using a Glucocorticoid-Free Immunosuppressive Regimen
A. Pepper, B. Gala-Lopez, O. Ziff, A. Shapiro (2013)
Revascularization of Transplanted Pancreatic Islets and Role of the Transplantation SiteClinical and Developmental Immunology, 2013
S. Merani, C. Toso, J. Emamaullee, A. Shapiro (2008)
Optimal implantation site for pancreatic islet transplantationBritish Journal of Surgery, 95
D. Nyqvist, M. Köhler, Helene Wahlstedt, P. Berggren (2005)
Donor islet endothelial cells participate in formation of functional vessels within pancreatic islet grafts.Diabetes, 54 8
A. Sharkawy, Bruce Klitzman, G. Truskey, W. Reichert (1998)
Engineering the tissue which encapsulates subcutaneous implants. III. Effective tissue response times.Journal of biomedical materials research, 40 4
S. Vériter, P. Gianello, D. Dufrane (2013)
Bioengineered Sites for Islet Cell TransplantationCurrent Diabetes Reports, 13
James Anderson, Analiz Rodriguez, David Chang (2008)
Foreign body reaction to biomaterials.Seminars in immunology, 20 2
E. Ryan, B. Paty, P. Senior, D. Bigam, E. Alfadhli, N. Kneteman, J. Lakey, A. Shapiro (2005)
Five-year follow-up after clinical islet transplantation.Diabetes, 54 7
M Brissova, AC Powers (2008)
Revascularization of transplanted islets: can it be improved?Diabetes, 57
C. Simeonovic, D Dhall, J Wilson, Kevin Lafferty (1986)
A comparative study of transplant sites for endocrine tissue transplantation in the pig.The Australian journal of experimental biology and medical science, 64 ( Pt 1)
Lei Zhang, Zhiqiang Cao, T. Bai, Louisa Carr, Jean-Rene Ella-Menye, C. Irvin, B. Ratner, Shaoyi Jiang (2013)
Zwitterionic hydrogels implanted in mice resist the foreign-body reactionNature Biotechnology, 31
N. Sakata, T. Aoki, G. Yoshimatsu, H. Tsuchiya, Tatsuo Hata, Y. Katayose, S. Egawa, M. Unno (2014)
Strategy for clinical setting in intramuscular and subcutaneous islet transplantationDiabetes/Metabolism Research and Reviews, 30
A. Sharkawy, B. Klitzman, G. Truskey, W. Reichert (1997)
Engineering the tissue which encapsulates subcutaneous implants. I. Diffusion properties.Journal of biomedical materials research, 37 3
A. Rajab (2010)
Islet Transplantation: Alternative SitesCurrent Diabetes Reports, 10
R. Nishimura, M. Goto, S. Sekiguchi, K. Fujimori, A. Ushiyama, S. Satomi (2011)
Assessment for revascularization of transplanted pancreatic islets at subcutaneous site in mice with a highly sensitive imaging system.Transplantation proceedings, 43 9
T. Kin, P. Senior, D. O’Gorman, B. Richer, A. Salam, A. Shapiro (2008)
Risk factors for islet loss during culture prior to transplantationTransplant International, 21
O. Korsgren, T. Lundgren, M. Felldin, A. Foss, B. Isaksson, J. Permert, Persson Nh, E. Rafael, Mikael Rydén, K. Salmela, A. Tibell, G. Tufveson, B. Nilsson (2008)
Optimising islet engraftment is critical for successful clinical islet transplantationDiabetologia, 51
A. Shapiro, J. Shaw (2007)
Islet Transplantation and Beta Cell Replacement Therapy
A. Sharkawy, B. Klitzman, G. Truskey, W. Reichert (1998)
Engineering the tissue which encapsulates subcutaneous implants. II. Plasma-tissue exchange properties.Journal of biomedical materials research, 40 4
Diabetes reversal in mice is achieved by transplanting islets into a prevascularized space under the skin.
Nature Biotechnology – Springer Journals
Published: Apr 20, 2015
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