• Home
  • Search
  • Abstract 3908: Exploring CAR-T cell killing dynamics through live-cell fluorescence microscopy
  • https://doi.org/10.1158/1538-7445.am2025-3908Copy DOI Icon

Abstract 3908: Exploring CAR-T cell killing dynamics through live-cell fluorescence microscopy

Show More
  • Abstract
  • Literature Map
  • Similar Papers
Abstract

Abstract Introduction: Harnessing the potent cytotoxicity of chimeric antigen receptor T (CAR-T) cells has revolutionized cancer immunotherapy. A key factor influencing CAR-T cell efficacy is target antigen density on cancer cells. Human epidermal growth factor receptor 2 (HER2), overexpressed in various cancers like ovarian and lung carcinomas, is a promising target for CAR-T cell therapy. Traditional cytotoxicity assays generally provide only static endpoint measurements and often rely on 2D cell culture models, which fail to capture the structural complexity of tumors in vivo—a factor crucial to CAR-T cell efficacy. Live-cell imaging offers a solution by enabling non-invasive, real-time monitoring of cytotoxicity. Therefore, this study aims to explore the dynamics of CAR-T cell-mediated cytotoxicity against cancer cells with varying HER2 expression levels, comparing outcomes between 2D and 3D cell culture models using the Omni platform. Methods: Monolayers and spheroids of SKOV3 (ovarian carcinoma) and A549 (lung adenocarcinoma) cells, tagged with GFP, were exposed to HER2 CAR-T cells at different Effector : Target (E:T) ratios. Using the Omni platform, hourly brightfield and fluorescent images were captured over 72 hours assess cancer cell growth and cytotoxicity and quantify the cytolysis of the fluorescent target cells. Percent cytolysis of the target cells was calculated by comparing the green fluorescent intensity of treated wells to no treatment control wells. Results: The study demonstrated a dose-dependent cytotoxic effect of HER2 CAR-T cells that correlated with increasing amounts of CAR-T cells. Comparing SKOV3 cells with A549 cells showed higher sensitivity and earlier response for all E:T ratios. At 72 hours post HER-2 CAR T-cell addition, the 5:1 group demonstrated approximately 82.4% cytolysis of SKOV3 cells, while it demonstrated 40.3% cytolysis of A549 cells. In comparing the cytotoxic effect of HER2 CAR-T cells on SKOV3 spheroids versus monolayers, the 3D spheroid model exhibited a more rapid and efficient dose-dependent response. At 72 hours post HER-2 CAR T-cell addition, the 5:1 group demonstrated approximately 82.4% cytolysis of SKOV3 cells in spheroid, while it demonstrated 61.1% cytolysis of SKOV3 cells in monolayer. Conclusion: This study underscores the importance of target antigen density in determining CAR-T cell efficacy, as SKOV3 cells, with higher HER2 expression, were more prone to CAR-T cell killing compared to A549 cells. Additionally, it also highlights the critical role of the assay model type, 2D versus 3D, in accurately assessing cytotoxicity. The Omni platform provided dynamic, real-time insights into cell viability and cytotoxicity, highlighting its potential to optimize immunotherapy strategies. Citation Format: Skylar Dewees, Nathalie Opdam - van de Laar, Stacie Chvatal, Danielle Califano, Ben Streeter. Exploring CAR-T cell killing dynamics through live-cell fluorescence microscopy [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2025; Part 1 (Regular Abstracts); 2025 Apr 25-30; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2025;85(8_Suppl_1):Abstract nr 3908.

Similar Papers
  • Research Article
  • Citations6

Preliminary study of the fourth-generation CAR-T cells targeting CS1 in the treatment of refractory and recurrent multiple myeloma

  • Jun 23, 2021
  • Zhonghua zhong liu za zhi [Chinese journal of oncology]
  • Dudu Feng +5
  • Research Article
  • Citations21

The FDA's Regulatory Framework for Chimeric Antigen Receptor-TCell Therapies.

  • Jul 22, 2019
  • Clinical and Translational Science
  • Peter Marks
  • PDF
  • Supplementary Content
  • Citations11

Chimeric Antigen Receptor-T Cell Therapy for Lymphoma: New Settings and Future Directions

  • Dec 21, 2023
  • Cancers
  • Corrado Benevolo Savelli +10
  • Research Article
  • Citations57

Improving the anti-solid tumor efficacy of CAR-T cells by inhibiting adenosine signaling pathway

  • Jan 01, 2020
  • OncoImmunology
  • Na Li +6
  • Research Article
  • Citations9

Chimeric antigen receptor-T cells targeting AFP-GPC3 mediate increased antitumor efficacy in hepatocellular carcinoma.

  • Feb 01, 2025
  • Arab journal of gastroenterology : the official publication of the Pan-Arab Association of Gastroenterology
  • Mingxing Li +6
  • Research Article
  • Citations2

In vitro functional validation of anti-CD19 chimeric antigen receptor T cells expressing lysine-specific demethylase 1 short hairpin RNA for the treatment of diffuse large B cell lymphoma.

  • Jan 13, 2025
  • Frontiers in immunology
  • Zhi Guo +6
  • Research Article

Pre-infusion ADAMTS13 and VWF levels are associated with clinical outcomes of patients receiving CAR-T cell therapy

  • Nov 03, 2025
  • Blood
  • Amna Shoaib +4
  • Research Article
  • Citations13

Armed with IL-2 based fusion protein improves CAR-T cell fitness and efficacy against solid tumors

  • Apr 06, 2024
  • Biochimica et biophysica acta. Molecular basis of disease
  • Sijin Li +11
  • Research Article

Harnessing tumor acidity: innovative lactic acid-responsive promoter enables precision control of CAR-T cell activity in solid tumors.

  • Feb 10, 2026
  • Journal for immunotherapy of cancer
  • Meiqi Feng +13
  • Research Article
  • Citations32

Valproic acid increases CAR T cell cytotoxicity against acute myeloid leukemia

  • Jul 01, 2023
  • Journal for Immunotherapy of Cancer
  • Jingjing Wen +11
  • Research Article
  • Citations4

Cbl-b inhibition improves manufacturing efficiency and antitumoral efficacy of anti-CD19 CAR-T cells.

  • Feb 01, 2025
  • International immunopharmacology
  • Haoqi Wang +11
  • Research Article
  • Citations23

Cell surface GRP78-directed CAR-T cells are effective at treating human pancreatic cancer in preclinical models

  • Oct 26, 2023
  • Translational Oncology
  • Yuncang Yuan +8
  • Research Article

JNK knockdown enhances CAR-T cell cytotoxicity.

  • Aug 15, 2025
  • bioRxiv : the preprint server for biology
  • Charles J Kuhlmann +6
  • Research Article

Preventing trogocytosis by cathepsin B inhibition augments CAR T-cell function

  • Apr 22, 2026
  • Signal Transduction and Targeted Therapy
  • Kenneth A Dietze +18
  • Research Article
  • Citations4

Single-cell analysis of the survival mechanisms of fratricidal CAR-T targeting of T cell malignancies

  • May 20, 2024
  • Molecular Therapy - Nucleic Acids
  • Hui Hu +9
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.