CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation

Porcine xenografts transplanted into primates are rejected in spite of immunosuppression. Identification of the triggering mechanisms and the strategies to overcome them is crucial to achieve long-term graft survival. We hypothesized that porcine CD86 (pCD86) contributes to xenograft rejection by di...

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Main Authors: Cristina Costa, Maryellen C. Pizzolato, Yamin Shen, Yi Wang, William L. Fodor
Format: Article
Language:English
Published: SAGE Publishing 2004-01-01
Series:Cell Transplantation
Online Access:https://doi.org/10.3727/000000004772664923
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spelling doaj-8b2c2ffd10a74a119b91cdb1e9f5545e2020-11-25T03:33:14ZengSAGE PublishingCell Transplantation0963-68971555-38922004-01-011310.3727/000000004772664923CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell ActivationCristina Costa0Maryellen C. Pizzolato1Yamin Shen2Yi Wang3William L. Fodor4Departments of Molecular and Preclinical Sciences, Alexion Pharmaceuticals Inc., 352 Knotter Drive, Cheshire, CT 06410Departments of Molecular and Preclinical Sciences, Alexion Pharmaceuticals Inc., 352 Knotter Drive, Cheshire, CT 06410Departments of Molecular and Preclinical Sciences, Alexion Pharmaceuticals Inc., 352 Knotter Drive, Cheshire, CT 06410Departments of Molecular and Preclinical Sciences, Alexion Pharmaceuticals Inc., 352 Knotter Drive, Cheshire, CT 06410Department of Molecular and Cellular Biology, CT Center for Regenerative Biology, University of Connecticut, Storrs, CT 06269Porcine xenografts transplanted into primates are rejected in spite of immunosuppression. Identification of the triggering mechanisms and the strategies to overcome them is crucial to achieve long-term graft survival. We hypothesized that porcine CD86 (pCD86) contributes to xenograft rejection by direct activation of host T cells and NK cells. Formerly, we designed the human chimeric molecule hCD152-hCD59 to block pCD86 in cis. To test the efficacy in vivo, we have utilized a pig-to-mouse xenotransplant model. First, we showed that hCD152-hCD59 expression prevents the binding of murine CD28Ig to pCD86 on porcine aortic endothelial cells (PAEC) and dramatically reduces IL-2 secretion by Con A-stimulated mouse splenocytes in coculture. Moreover, IFN-γ secretion by IL-12-stimulated mouse NK cells was averted after coculture with hCD152-hCD59 PAEC. In vivo, control PAEC implanted under the kidney capsule were rapidly rejected (2–4 weeks) in BALB/c and BALB/c SCID mice. Rejection of hCD152-hCD59 PAEC was significantly delayed in both cases. Signs of immune modulation in the hCD152-hCD59-PAEC BALB/c recipients were identified such as early hyporesponsiveness and diminished antibody response. Thus, simply modifying the donor xenogeneic cell can diminish both T cell and NK cell immune responses. We specifically demonstrate that pCD86 contributes to rejection of porcine xenografts.https://doi.org/10.3727/000000004772664923
collection DOAJ
language English
format Article
sources DOAJ
author Cristina Costa
Maryellen C. Pizzolato
Yamin Shen
Yi Wang
William L. Fodor
spellingShingle Cristina Costa
Maryellen C. Pizzolato
Yamin Shen
Yi Wang
William L. Fodor
CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
Cell Transplantation
author_facet Cristina Costa
Maryellen C. Pizzolato
Yamin Shen
Yi Wang
William L. Fodor
author_sort Cristina Costa
title CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
title_short CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
title_full CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
title_fullStr CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
title_full_unstemmed CD86 Blockade in Genetically Modified Porcine Cells Delays Xenograft Rejection by Inhibiting T-Cell and NK-Cell Activation
title_sort cd86 blockade in genetically modified porcine cells delays xenograft rejection by inhibiting t-cell and nk-cell activation
publisher SAGE Publishing
series Cell Transplantation
issn 0963-6897
1555-3892
publishDate 2004-01-01
description Porcine xenografts transplanted into primates are rejected in spite of immunosuppression. Identification of the triggering mechanisms and the strategies to overcome them is crucial to achieve long-term graft survival. We hypothesized that porcine CD86 (pCD86) contributes to xenograft rejection by direct activation of host T cells and NK cells. Formerly, we designed the human chimeric molecule hCD152-hCD59 to block pCD86 in cis. To test the efficacy in vivo, we have utilized a pig-to-mouse xenotransplant model. First, we showed that hCD152-hCD59 expression prevents the binding of murine CD28Ig to pCD86 on porcine aortic endothelial cells (PAEC) and dramatically reduces IL-2 secretion by Con A-stimulated mouse splenocytes in coculture. Moreover, IFN-γ secretion by IL-12-stimulated mouse NK cells was averted after coculture with hCD152-hCD59 PAEC. In vivo, control PAEC implanted under the kidney capsule were rapidly rejected (2–4 weeks) in BALB/c and BALB/c SCID mice. Rejection of hCD152-hCD59 PAEC was significantly delayed in both cases. Signs of immune modulation in the hCD152-hCD59-PAEC BALB/c recipients were identified such as early hyporesponsiveness and diminished antibody response. Thus, simply modifying the donor xenogeneic cell can diminish both T cell and NK cell immune responses. We specifically demonstrate that pCD86 contributes to rejection of porcine xenografts.
url https://doi.org/10.3727/000000004772664923
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