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A humanized CD3?-knock-in mouse model for pre-clinical testing of anti-human CD3 therapy.


ABSTRACT: Pre-clinical murine models are critical for translating drug candidates from the bench to the bedside. There is interest in better understanding how anti-human CD3 therapy works based on recent longitudinal studies of short-term administration. Although several models have been created in this pursuit, each have their own advantages and disadvantages in Type-1 diabetes. In this study, we report a murine genetic knock-in model which expresses both a murine and a humanized-CD3?-exon, rendering it sensitive to manipulation with anti-human CD3. These huCD3?HET mice are viable and display no gross abnormalities. Specifically, thymocyte development and T cell peripheral homeostasis is unaffected. We tested immune functionality of these mice by immunizing them with T cell-dependent antigens and no differences in antibody titers compared to wild type mice were recorded. Finally, we performed a graft-vs-host disease model that is driven by effector T cell responses and observed a wasting disease upon transfer of huCD3?HET T cells. Our results show a viable humanized CD3 murine model that develops normally, is functionally engaged by anti-human CD3 and can instruct on pre-clinical tests of anti-human CD3 antibodies.

SUBMITTER: Crespo J 

PROVIDER: S-EPMC7888618 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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A humanized CD3ε-knock-in mouse model for pre-clinical testing of anti-human CD3 therapy.

Crespo Joel J   Koh Yi Ting YT   Hu Ningjie N   Moore Paul A PA   Bonvini Ezio E   Glasebrook Andrew L AL   Martin Andrea P AP   Benschop Robert J RJ  

PloS one 20210217 2


Pre-clinical murine models are critical for translating drug candidates from the bench to the bedside. There is interest in better understanding how anti-human CD3 therapy works based on recent longitudinal studies of short-term administration. Although several models have been created in this pursuit, each have their own advantages and disadvantages in Type-1 diabetes. In this study, we report a murine genetic knock-in model which expresses both a murine and a humanized-CD3ε-exon, rendering it  ...[more]

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