Tumor-reactive T Cells

Tumor-reactive T cells are immune cells that recognize and respond to antigens displayed by cancer cells, making them important mediators of antitumor immunity. Through T-cell receptors, they identify peptide–major histocompatibility complex combinations and can release cytotoxic molecules, produce cytokines, or recruit other immune cells to eliminate malignant targets. In cancer research, investigators isolate, measure, and expand these cells to study immune recognition, tumor escape, and treatment response. Their activity supports the development of adoptive cell therapies, including tumor-infiltrating lymphocyte and engineered T-cell approaches, while also providing biomarkers for evaluating the immune landscape and improving personalized cancer treatment.

Tumor-reactive T Cells - Related Videos

Research

JoVE Journal - Immunology and Infection

Ex vivo Expansion of Tumor-reactive T Cells by Means of Bryostatin 1/Ionomycin and the Common Gamma Chain Cytokines Formulation

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Cited by 6 •

2011

An efficient protocol for the ex vivo expansion of tumor-reactive T cells from tumor-draining lymph nodes or other secondary lymphoid tissues of tumor-bearing hosts is described. This protocol selectively expands tumor-specific T cells for use in adoptive immunotherapy of breast cancer.

Research

JoVE Journal - Cancer Research
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Tractable In Vivo Reprogramming of Tumor Cells to Type 1 Conventional Dendritic Cell-like Cells

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2025

This protocol describes the in vivo reprogramming of mouse cancer cells into type 1 dendritic-like cells within the tumor microenvironment through enforced expression of the transcription factors PU.1, IRF8, and BATF3.

Lung Tumor Cell Recruitment Assay

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2019

This manuscript describes a method to quantify tumor cell accumulation in the lungs in an animal model of tumor metastasis.

Education

JoVE Science Education - Advanced Biology

Detecting Reactive Oxygen Species

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2023

Reactive oxygen species are chemically active, oxygen-derived molecules capable of oxidizing other molecules. Because of their reactive nature, there are many deleterious effects associated with unchecked ROS production, including structural damage to DNA and other biological molecules. However, ROS can also be mediators of physiological signaling. There is accumulating evidence that ROS play significant roles in everything from activation of transcription factors to the mediation of...

Analyzing Neural Stem Cell Reactivation in Cultured Drosophila Brain Explants

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2025

This video demonstrates a protocol to identify exogenous factors that initiate the reactivation of Drosophila brain neural stem cells from their quiescent state. Freshly hatched larvae are dissected to isolate their brains, which are then cultured in media with or without a test hormone to evaluate the hormone's potential to induce neural stem cell reactivation and proliferation.

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