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      Chimeric 2C10R4 anti-CD40 antibody therapy is critical for long-term survival of GTKO.hCD46.hTBM pig-to-primate cardiac xenograft

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          Abstract

          Preventing xenograft rejection is one of the greatest challenges of transplantation medicine. Here, we describe a reproducible, long-term survival of cardiac xenografts from alpha 1-3 galactosyltransferase gene knockout pigs, which express human complement regulatory protein CD46 and human thrombomodulin ( GTKO.hCD46.hTBM), that were transplanted into baboons. Our immunomodulatory drug regimen includes induction with anti-thymocyte globulin and αCD20 antibody, followed by maintenance with mycophenolate mofetil and an intensively dosed αCD40 (2C10R4) antibody. Median (298 days) and longest (945 days) graft survival in five consecutive recipients using this regimen is significantly prolonged over our recently established survival benchmarks (180 and 500 days, respectively). Remarkably, the reduction of αCD40 antibody dose on day 100 or after 1 year resulted in recrudescence of anti-pig antibody and graft failure. In conclusion, genetic modifications ( GTKO.hCD46.hTBM) combined with the treatment regimen tested here consistently prevent humoral rejection and systemic coagulation pathway dysregulation, sustaining long-term cardiac xenograft survival beyond 900 days.

          Abstract

          Tweaking immune characteristics of donors and recipients could allow for successful cross-species organ transplantation. Here, the authors show that an anti-CD40 antibody therapy of baboons that received heart transplants from genetically modified pigs is key to their long-term survival.

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          Most cited references18

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          A comparative anatomic and physiologic overview of the porcine heart.

          Despite advances during the last 2 decades in every aspect of cardiovascular research (interventional cardiology, cardiopulmonary resuscitation, and so forth), Western societies still are plagued by the consequences of cardiovascular disease. Consequently the discovery of new regimens and therapeutic interventions is of utmost importance. Research using human subjects is associated with substantial methodologic and ethical considerations, and the quest for an appropriate animal model for the human cardiovascular system has led to swine. The porcine heart bears a close resemblance to the human heart in terms of its coronary circulation and hemodynamic similarities and offers ease of implementation of methods and devices from human healthcare facilities. A thorough comprehension of the anatomy and physiology of the porcine cardiovascular system should focus on differences between swine and humans as well as similarities. Understanding these differences and similarities is essential to extrapolating data appropriately and to addressing the social demand for the ethical use of animals in biomedical research.
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            Acute rejection is associated with antibodies to non-Gal antigens in baboons using Gal-knockout pig kidneys.

            We transplanted kidneys from alpha1,3-galactosyltransferase knockout (GalT-KO) pigs into six baboons using two different immunosuppressive regimens, but most of the baboons died from severe acute humoral xenograft rejection. Circulating induced antibodies to non-Gal antigens were markedly elevated at rejection, which mediated strong complement-dependent cytotoxicity against GalT-KO porcine target cells. These data suggest that antibodies to non-Gal antigens will present an additional barrier to transplantation of organs from GalT-KO pigs to humans.
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              Selected physiologic compatibilities and incompatibilities between human and porcine organ systems.

              The shortage of donor organs is a major barrier to clinical organ transplantation. Although xenotransplantation is considered one of the alternatives to human organ transplantation, there are immunologic and physiologic incompatibilities between humans and pigs. With the exception of coagulation, the major potential physiologic incompatibilities relating to function of the kidney, heart, liver, lungs, pancreatic islets, and hormones are reviewed. Some of these physiologic differences can be overcome by producing genetically altered pigs to improve compatibility with humans. The possibility of producing such pigs for organ transplantation is considered.
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                Author and article information

                Journal
                Nat Commun
                Nat Commun
                Nature Communications
                Nature Publishing Group
                2041-1723
                05 April 2016
                2016
                : 7
                : 11138
                Affiliations
                [1 ]Cardiothoracic Surgery Research Program, NHLBI, NIH , Bethesda, Maryland 20892, USA
                [2 ]Division of Veterinary Resources, ORS, NIH , Bethesda, Maryland 20892, USA
                [3 ]NICHD/NIH , Bethesda, Maryland 20892, USA
                [4 ]Leidos Biomedical Research, Inc. , Bethesda, Maryland 20892, USA
                [5 ]University of Maryland Medical Center , Baltimore, Maryland 20201, USA
                [6 ]MassBiologics, University of Massachusetts Medical School , Boston, Massachusetts 02126, USA
                [7 ]Ludwig Maximilian University , Munich 81377, Germany
                [8 ]Revivicor Inc. , Blacksburg, Virginia 24060, USA
                Author notes
                Article
                ncomms11138
                10.1038/ncomms11138
                4822024
                27045379
                1f565ee2-8266-422a-9b09-483d0c67c575
                Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.

                This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/

                History
                : 20 January 2016
                : 23 February 2016
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