484. Adult Bone Marrow Contain Cells Capable of Differentiating into Functional Renal Tubular Epithelium

484. Adult Bone Marrow Contain Cells Capable of Differentiating into Functional Renal Tubular Epithelium

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482. Induction of Immune T olerance to a Secreted Tolerance ransfer Transfer Protein Antigen by Hepatic Gene T F. Mingozzi, V. R. Arruda, Y.-L. Liu, A. Kaufhold, Y. Q. Wang, J. H. Liu, E. Dobrynski, K. A. High, R. W. Herzog. (    ''."



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483. T ransient Blockade of Signal 2 + Signal 3 Leads Transient to Long T erm Expression of Immunogenic T ransgene Term Transgene Products Abraham Scaria, Johanne M. Kaplan, Sirkka Kyostio-Moore, Robin Ziegler, Scott Lonning, Richard J. Gregory, Samuel C. Wadsworth.        3            -' /       1                  3                       

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484. Adult Bone Marrow Contain Cells Capable of Differentiating into Functional Renal T ubular Epithelium Tubular Patrice K. Held,1 Muhsen Al-Dhalimy,1 Milton Finegold,2 Markus Grompe.1 1 Molecular and Medical Genetics, Oregon Health & Sciences University, Portland, Oregon, United States; 2Department of Pathology, Baylor College of Medicine, Houston, Texas, United States. '         -2# /       -C(/        C

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     "     '  3          Molecular Therapy Vol. 5, No. 5, May 2002, Part 2 of 2 Parts Copyright © The American Society of Gene Therapy

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485. Long-T erm Remission of Diabetes by a Single Long-Term Intravenous Injection of a Recombinant AdenoAssociated Virus Carrying a Modified Insulin Gene under a Glucose Regulatable Promoter Su-Jin Kim,1 Hee-Sook Jun,1 Seungjin Shin,1 Jaeseok Han,1 Ji-Won Yoon.1 1 Microbiology and Infectious Diseases, University of Calgary, Calgary, Alberta, Canada.   8          "                   

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Molecular Therapy Vol. 5, No. 5, May 2002, Part 2 of 2 Parts Copyright © The American Society of Gene Therapy

486. Sheep Chimeric Model for Analysis of Engraftment of Retrovirus T ransduced CD34+ Cells Used Transduced in Clinical Gene Therapy T rials Trials Shepherd H. Schurman,1 G. Jayashree Jagadeesh,1 Christopher D. Porada,2 Linda M. Muul,1 Esmail D. Zanjani,3 Fabio Candotti.1 1 Genetics and Molecular Biology Branch, NHGRI / NIH, Bethesda, MD, United States; 2Department of Animal Biotechnology, School of Veterinary Medicine, University of Nevada, Reno, Reno, NV, United States; 3Department of Internal Medicine, VA Medical Center, University of Nevada Reno School of Medicine, Reno, NV, United States. 

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487. Risk of Inadvertent Germline T ransmission of Transmission Vector DNA Following Intravascular Delivery of Recombinant AA VV ector AAV Vector V. R. Arruda,1 L. Couto,2 D. Leonard,3 K. Addya,3 J. Sommer,2 R. W. Herzog,1 M. A. Kay,4 B. Glader,4 C. Manno,1 A. Chew,1 K. A. High.1 1 Pediatrics, The Children′s Hospital of Philadelphia, University of Pennsylvania School of Medicine, Philadelphia, PA, United States; 2Avigen, Inc., Alameda, CA, United States; 3University of Pennsylvania School of Medicine, Philadelphia, PA, United States; 4Pediatrics and Genetics, Stanford Univeristy, Stanford, CA, United States.   " 3         ''.      ?F          

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