Human 3D Ovarian Cancer Models Reveal Malignant Cell–Intrinsic and –Extrinsic Factors That Influence CAR T-cell Activity

Author:

Joy Joash D.1ORCID,Malacrida Beatrice1ORCID,Laforêts Florian1ORCID,Kotantaki Panoraia1ORCID,Maniati Eleni1ORCID,Manchanda Ranjit234ORCID,Annibaldi Alessandro5ORCID,Hopkins Sarah6ORCID,Garrobo-Calleja Ianire6ORCID,Gautrot Julien7ORCID,Balkwill Frances R.1ORCID

Affiliation:

1. Barts Cancer Institute, Queen Mary University of London, London, United Kingdom. 1

2. Wolfson Institute of Population Health, Cancer Research UK, Barts Centre, Queen Mary University of London, London, United Kingdom. 2

3. Department of Gynaecological Oncology, Royal London Hospital, Barts Health NHS Trust, London, United Kingdom. 3

4. Department of Health Services Research and Policy, London School of Hygiene and Tropical Medicine, London, United Kingdom. 4

5. Centre for Molecular Medicine Cologne, University of Cologne, Cologne, Germany. 5

6. GlaxoSmithKline Medicines Research Centre, Stevenage, United Kingdom. 6

7. School of Engineering and Material Science, Centre for Bioengineering, Queen Mary University of London, London, United Kingdom. 7

Abstract

Abstract In vitro preclinical testing of chimeric antigen receptor (CAR) T cells is mostly carried out in monolayer cell cultures. However, alternative strategies are needed to take into account the complexity and the effects of the tumor microenvironment. Here, we describe the modulation of CAR T-cell activity by malignant cells and fibroblasts in human three-dimensional (3D) in vitro cell models of increasing complexity. In models combining mucin-1 (MUC1) and TnMUC1 CAR T cells with human high-grade serous ovarian cancer cell spheroids, malignant cell–intrinsic resistance to CAR T-cell killing was due to defective death receptor signaling involving TNFα. Adding primary human fibroblasts to spheroids unexpectedly increased the ability of CAR T cells to kill resistant malignant cells as CCL2 produced by fibroblasts activated CCR2/4+ CAR T cells. However, culturing malignant cells and fibroblasts in collagen gels engendered production of a dense extracellular matrix that impeded CAR T-cell activity in a TGFβ-dependent manner. A vascularized microfluidic device was developed that allowed CAR T cells to flow through the vessels and penetrate the gels in a more physiological way, killing malignant cells in a TNFα-dependent manner. Complex 3D human cell models may provide an efficient way of screening multiple cytotoxic human immune cell constructs while also enabling evaluation of mechanisms of resistance involving cell–cell and cell–matrix interactions, thus accelerating preclinical research on cytotoxic immune cell therapies in solid tumors. Significance: Three-dimensional in vitro models of increasing complexity uncover mechanisms of resistance to CAR T cells in solid tumors, which could help accelerate development of improved CAR T-cell constructs.

Funder

Biotechnology and Biological Sciences Research Council

Ovarian Cancer Research Alliance

Cancer Research UK

Barts Charity

UKRI

Publisher

American Association for Cancer Research (AACR)

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