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8. Bioluminescence Imaging In Vivo Confirms the Viability of Pancreatic Islets Transplanted into the Greater Omentum. Hladíková Z; Voglová B; Pátíková A; Berková Z; Kříž J; Vojtíšková A; Leontovyč I; Jirák D; Saudek F Mol Imaging Biol; 2021 Oct; 23(5):639-649. PubMed ID: 33599904 [TBL] [Abstract][Full Text] [Related]
9. Modified subcutaneous tissue with neovascularization is useful as the site for pancreatic islet transplantation. Kawakami Y; Iwata H; Gu Y; Miyamoto M; Murakami Y; Yamasaki T; Cui W; Ikada Y; Imamura M; Inoue K Cell Transplant; 2000; 9(5):729-32. PubMed ID: 11144974 [TBL] [Abstract][Full Text] [Related]
10. Reversal of diabetes by pancreatic islet transplantation into a subcutaneous, neovascularized device. Pileggi A; Molano RD; Ricordi C; Zahr E; Collins J; Valdes R; Inverardi L Transplantation; 2006 May; 81(9):1318-24. PubMed ID: 16699461 [TBL] [Abstract][Full Text] [Related]
11. In situ type I oligomeric collagen macroencapsulation promotes islet longevity and function in vitro and in vivo. Stephens CH; Orr KS; Acton AJ; Tersey SA; Mirmira RG; Considine RV; Voytik-Harbin SL Am J Physiol Endocrinol Metab; 2018 Oct; 315(4):E650-E661. PubMed ID: 29894201 [TBL] [Abstract][Full Text] [Related]
12. Engineering a macroporous oxygen-generating scaffold for enhancing islet cell transplantation within an extrahepatic site. Liang JP; Accolla RP; Soundirarajan M; Emerson A; Coronel MM; Stabler CL Acta Biomater; 2021 Aug; 130():268-280. PubMed ID: 34087442 [TBL] [Abstract][Full Text] [Related]
13. Fibrin supports subcutaneous neonatal porcine islet transplantation without the need for pre-vascularization. Salama BF; Seeberger KL; Korbutt GS Xenotransplantation; 2020 Jul; 27(4):e12575. PubMed ID: 31814191 [TBL] [Abstract][Full Text] [Related]
14. The Efficacy of a Prevascularized, Retrievable Poly(D,L,-lactide-co-ε-caprolactone) Subcutaneous Scaffold as Transplantation Site for Pancreatic Islets. Smink AM; Li S; Hertsig DT; de Haan BJ; Schwab L; van Apeldoorn AA; de Koning E; Faas MM; Lakey JR; de Vos P Transplantation; 2017 Apr; 101(4):e112-e119. PubMed ID: 28207637 [TBL] [Abstract][Full Text] [Related]
15. Micro-fabricated scaffolds lead to efficient remission of diabetes in mice. Buitinga M; Assen F; Hanegraaf M; Wieringa P; Hilderink J; Moroni L; Truckenmüller R; van Blitterswijk C; Römer GW; Carlotti F; de Koning E; Karperien M; van Apeldoorn A Biomaterials; 2017 Aug; 135():10-22. PubMed ID: 28478326 [TBL] [Abstract][Full Text] [Related]
16. A Novel Subcutaneous Site of Islet Transplantation Superior to the Liver. Yasunami Y; Nakafusa Y; Nitta N; Nakamura M; Goto M; Ono J; Taniguchi M Transplantation; 2018 Jun; 102(6):945-952. PubMed ID: 29521877 [TBL] [Abstract][Full Text] [Related]
17. Development of an ectopic site for islet transplantation, using biodegradable scaffolds. Dufour JM; Rajotte RV; Zimmerman M; Rezania A; Kin T; Dixon DE; Korbutt GS Tissue Eng; 2005; 11(9-10):1323-31. PubMed ID: 16259588 [TBL] [Abstract][Full Text] [Related]
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20. Long-term function and optimization of mouse and human islet transplantation in the subcutaneous device-less site. Pepper AR; Bruni A; Pawlick RL; Gala-Lopez B; Rafiei Y; Wink J; Kin T; Shapiro AM Islets; 2016 Nov; 8(6):186-194. PubMed ID: 27820660 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]