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Progenitor-derived human endothelial cells evade alloimmunity by CRISPR/Cas9-mediated complete ablation of MHC expression
Jonathan Merola, Melanie Reschke, Richard W. Pierce, Lingfeng Qin, Susann Spindler, Tania Baltazar, Thomas D. Manes, Francesc Lopez-Giraldez, Guangxin Li, Laura G. Bracaglia, Catherine Xie, Nancy Kirkiles-Smith, W. Mark Saltzman, Gregory T. Tietjen, George Tellides, Jordan S. Pober
Jonathan Merola, Melanie Reschke, Richard W. Pierce, Lingfeng Qin, Susann Spindler, Tania Baltazar, Thomas D. Manes, Francesc Lopez-Giraldez, Guangxin Li, Laura G. Bracaglia, Catherine Xie, Nancy Kirkiles-Smith, W. Mark Saltzman, Gregory T. Tietjen, George Tellides, Jordan S. Pober
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Research Article Immunology Transplantation

Progenitor-derived human endothelial cells evade alloimmunity by CRISPR/Cas9-mediated complete ablation of MHC expression

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Abstract

Tissue engineering may address organ shortages currently limiting clinical transplantation. Off-the-shelf engineered vascularized organs will likely use allogeneic endothelial cells (ECs) to construct microvessels required for graft perfusion. Vasculogenic ECs can be differentiated from committed progenitors (human endothelial colony-forming cells or HECFCs) without risk of mutation or teratoma formation associated with reprogrammed stem cells. Like other ECs, these cells can express both class I and class II major histocompatibility complex (MHC) molecules, bind donor-specific antibody (DSA), activate alloreactive T effector memory cells, and initiate rejection in the absence of donor leukocytes. CRISPR/Cas9-mediated dual ablation of β2-microglobulin and class II transactivator (CIITA) in HECFC-derived ECs eliminates both class I and II MHC expression while retaining EC functions and vasculogenic potential. Importantly, dually ablated ECs no longer bind human DSA or activate allogeneic CD4+ effector memory T cells and are resistant to killing by CD8+ alloreactive cytotoxic T lymphocytes in vitro and in vivo. Despite absent class I MHC molecules, these ECs do not activate or elicit cytotoxic activity from allogeneic natural killer cells. These data suggest that HECFC-derived ECs lacking MHC molecule expression can be utilized for engineering vascularized grafts that evade allorejection.

Authors

Jonathan Merola, Melanie Reschke, Richard W. Pierce, Lingfeng Qin, Susann Spindler, Tania Baltazar, Thomas D. Manes, Francesc Lopez-Giraldez, Guangxin Li, Laura G. Bracaglia, Catherine Xie, Nancy Kirkiles-Smith, W. Mark Saltzman, Gregory T. Tietjen, George Tellides, Jordan S. Pober

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Figure 5

Absence of class I MHC on human endothelium does not enhance NK cell activation or cytotoxicity.

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Absence of class I MHC on human endothelium does not enhance NK cell act...
(A) IFN-γ and TNF-α ELISA of supernatant in cocultures of human NK cells with MHC-absent ECs. No enhancement of cytokine release was observed in β2-microglobulinnull cells compared with control ECs. (B) Cytotoxicity measured by calcein AM release, with human alloantibody–bound ECs included as a positive control. Representative of 4 independent donor pairs (mean ± SEM). (C) Expression of NK cell ligands in human cord blood–derived ECs (ECFCs), adult human dermal microvascular endothelial cells (HDMECs), and leukemic K562 NK cell targets under resting conditions and 48 hours of IFN-γ or TNF-α. VCAM-1 and PD-L1 expression are included as control antigens known to be upregulated in ECs in the presence of TNF-α or IFN-γ, respectively. Representative of 2 independent donors. (D) NK cell release of IFN-γ on secondary exposure of K562 cells following 6 hours of primary coculture with control (sgAAVS1), β2-microglobulinnull, or no-target cells. Absence of IFN-γ release on exposure to K562 cells following β2-microglobulinnull EC coculture suggests β2-microglobulinnull ECs induce NK cell anergy. Representative of 2 independent donors.

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