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Development of 3D breast cancer models with human T cells expressing engineered MAIT cell receptors

Madhuri Dey, Myong Hwan Kim, Momoka Nagamine, Ece Karhan, Lina Kozhaya, Mikail Dogan, Derya Unutmaz, Ibrahim T. Ozbolat
doi: https://doi.org/10.1101/2022.01.29.478309
Madhuri Dey
1Department of Chemistry, Penn State University; University Park, PA, 16802, USA
2The Huck Institutes of the Life Sciences, Penn State University; University Park, PA 16802, USA
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Myong Hwan Kim
2The Huck Institutes of the Life Sciences, Penn State University; University Park, PA 16802, USA
3Biomedical Engineering Department, Penn State University; University Park, PA 16802, USA
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Momoka Nagamine
1Department of Chemistry, Penn State University; University Park, PA, 16802, USA
2The Huck Institutes of the Life Sciences, Penn State University; University Park, PA 16802, USA
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Ece Karhan
4The Jackson Laboratory for Genomic Medicine; Farmington, CT 06032, USA
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Lina Kozhaya
4The Jackson Laboratory for Genomic Medicine; Farmington, CT 06032, USA
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Mikail Dogan
4The Jackson Laboratory for Genomic Medicine; Farmington, CT 06032, USA
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Derya Unutmaz
4The Jackson Laboratory for Genomic Medicine; Farmington, CT 06032, USA
5University of Connecticut Health Center; Farmington, CT 06032, USA
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Ibrahim T. Ozbolat
2The Huck Institutes of the Life Sciences, Penn State University; University Park, PA 16802, USA
3Biomedical Engineering Department, Penn State University; University Park, PA 16802, USA
6Engineering Science and Mechanics Department, Penn State University; University Park, PA 16802, USA
7Materials Research Institute, Penn State University; University Park, PA 16802, USA
8Department of Neurosurgery, Penn State College of Medicine, Hershey, PA 17033, USA
9Penn State Cancer Institute, Penn State University, Hershey, PA 17033, USA
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  • For correspondence: ito1@psu.edu
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ABSTRACT

Immunotherapy has revolutionized cancer treatment with the advent of advanced cell engineering techniques aimed at targeted therapy with reduced systemic toxicity. However, understanding the underlying immune-cancer interactions require development of advanced three-dimensional (3D) models of human tissues. In this study, we developed proof-of-concept 3D tumor models with increasing complexity to study the cytotoxic responses of CD8+ T cells, genetically engineered to express mucosal-associated invariant T (MAIT) cell receptors, towards MDA-MB-231 breast cancer cells. Homotypic MDA-MB-231 and heterotypic MDA-MB-231/human dermal fibroblast (HDF) tumor spheroids were primed with precursor MAIT cell ligand 5-amino-6-D-ribitylaminouracil (5-ARU). Engineered T cells effectively eliminated tumors after a 3-day culture period, demonstrating that the engineered TCR recognized MR1 expressing tumor cells in the presence of 5-ARU. Tumor cell killing efficiency of engineered T cells were also assessed by encapsulating these cells in fibrin, mimicking a tumor extracellular matrix microenvironment. Expression of proinflammatory cytokines such as IFNγ, IL-13, CCL-3 indicated immune cell activation in all tumor models, post immunotherapy. Further, in corroborating the cytotoxic activity, we found that granzymes A and B were also upregulated, in homotypic as well as heterotypic tumors. Finally, a 3D bioprinted tumor model was employed to study the effect of localization of T cells with respect to tumors. T cells bioprinted proximal to the tumor had reduced invasion index and increased cytokine secretion, which indicated a paracrine mode of immune-cancer interaction. Development of 3D tumor-T cell platforms may enable studying the complex immune-cancer interactions and engineering MAIT cells for cell-based cancer immunotherapies.

Competing Interest Statement

The authors have declared no competing interest.

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Posted January 30, 2022.
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Development of 3D breast cancer models with human T cells expressing engineered MAIT cell receptors
Madhuri Dey, Myong Hwan Kim, Momoka Nagamine, Ece Karhan, Lina Kozhaya, Mikail Dogan, Derya Unutmaz, Ibrahim T. Ozbolat
bioRxiv 2022.01.29.478309; doi: https://doi.org/10.1101/2022.01.29.478309
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Development of 3D breast cancer models with human T cells expressing engineered MAIT cell receptors
Madhuri Dey, Myong Hwan Kim, Momoka Nagamine, Ece Karhan, Lina Kozhaya, Mikail Dogan, Derya Unutmaz, Ibrahim T. Ozbolat
bioRxiv 2022.01.29.478309; doi: https://doi.org/10.1101/2022.01.29.478309

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