Literature DB >> 16186810

A human beta-cell line for transplantation therapy to control type 1 diabetes.

Michiki Narushima1, Naoya Kobayashi, Teru Okitsu, Yoshihito Tanaka, Shun-Ai Li, Yong Chen, Atsushi Miki, Kimiaki Tanaka, Shuhei Nakaji, Kohji Takei, Alejandro Soto Gutierrez, Jorge David Rivas-Carrillo, Nalu Navarro-Alvarez, Hee-Sook Jun, Karen A Westerman, Hirofumi Noguchi, Jonathan R T Lakey, Philippe Leboulch, Noriaki Tanaka, Ji-Won Yoon.   

Abstract

A human pancreatic beta-cell line that is functionally equivalent to primary beta-cells has not been available. We established a reversibly immortalized human beta-cell clone (NAKT-15) by transfection of primary human beta-cells with a retroviral vector containing simian virus 40 large T-antigen (SV40T) and human telomerase reverse transcriptase (hTERT) cDNAs flanked by paired loxP recombination targets, which allow deletion of SV40T and TERT by Cre recombinase. Reverted NAKT-15 cells expressed beta-cell transcription factors (Isl-1, Pax 6, Nkx 6.1, Pdx-1), prohormone convertases 1/3 and 2, and secretory granule proteins, and secreted insulin in response to glucose, similar to normal human islets. Transplantation of NAKT-15 cells into streptozotocin-induced diabetic severe combined immunodeficiency mice resulted in perfect control of blood glucose within 2 weeks; mice remained normoglycemic for longer than 30 weeks. The establishment of this cell line is one step toward a potential cure of diabetes by transplantation.

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Year:  2005        PMID: 16186810     DOI: 10.1038/nbt1145

Source DB:  PubMed          Journal:  Nat Biotechnol        ISSN: 1087-0156            Impact factor:   54.908


  38 in total

1.  Development and functional characterization of insulin-releasing human pancreatic beta cell lines produced by electrofusion.

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Review 2.  Tissue engineering and regenerative medicine research perspectives for pediatric surgery.

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Review 3.  The isolated pancreatic islet as a micro-organ and its transplantation to cure diabetes: celebrating the legacy of Paul Lacy.

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Journal:  Islets       Date:  2010 Jul-Aug       Impact factor: 2.694

4.  miR-25 and miR-92a regulate insulin I biosynthesis in rats.

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Journal:  RNA Biol       Date:  2013-08       Impact factor: 4.652

5.  Porcine hepatocyte isolation and reversible immortalization mediated by retroviral transfer and site-specific recombination.

Authors:  Fan Ying Meng; Zhi Shui Chen; Meng Han; Xin Peng Hu; Xing Xing He; Yong Liu; Wen Tao He; Wei Huang; Hui Guo; Ping Zhou
Journal:  World J Gastroenterol       Date:  2010-04-07       Impact factor: 5.742

6.  Human islet distribution programme for basic research: activity over the last 5 years.

Authors:  Rita Nano; Domenico Bosco; Julie A Kerr-Conte; Marie Karlsson; Solange Charvier; Raffaella Melzi; Rimed Ezzouaoui; Alessia Mercalli; Albert Hwa; François Pattou; Olle Korsgren; Thierry Berney; Lorenzo Piemonti
Journal:  Diabetologia       Date:  2015-02-21       Impact factor: 10.122

7.  [Enhanced control of proliferation in telomerized cells].

Authors:  E E Egorov; M V Moldaver; Kh S Vishniakova; S M Terekhov; E B Dashinimaev; I B Cheglakov; I Iu Toropygin; K N Iarygin; P M Chumakov; L I Korochkin; G A Antonova; E Iu Rybalkina; I N Saburina; N S Burnaevskiĭ; A V Zelenin
Journal:  Ontogenez       Date:  2007 Mar-Apr

8.  Research resource: nuclear hormone receptor expression in the endocrine pancreas.

Authors:  Jen-Chieh Chuang; Ji-Young Cha; James C Garmey; Raghavendra G Mirmira; Joyce J Repa
Journal:  Mol Endocrinol       Date:  2008-07-31

Review 9.  Progress and challenges in macroencapsulation approaches for type 1 diabetes (T1D) treatment: Cells, biomaterials, and devices.

Authors:  Shang Song; Shuvo Roy
Journal:  Biotechnol Bioeng       Date:  2016-01-04       Impact factor: 4.530

10.  Cell replacement and regeneration therapy for diabetes.

Authors:  Hee-Sook Jun
Journal:  Korean Diabetes J       Date:  2010-04-30
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