Anti-tumor Immunity

Anti-tumor immunity is the capacity of the immune system to recognize and eliminate malignant cells, an essential component of host defense and cancer biology. It begins when tumor-associated antigens are captured and presented by antigen-presenting cells, activating T lymphocytes that can kill target cells through cytotoxic granules, while natural killer cells detect stressed cells with reduced normal recognition signals. Tumors may evade these responses by creating an immunosuppressive microenvironment or engaging inhibitory checkpoint pathways such as PD-1 and CTLA-4. Understanding these interactions supports cancer immunotherapies, including checkpoint inhibitors, adoptive cell therapies, and therapeutic vaccines, and helps identify biomarkers that predict treatment response.

Anti-tumor Immunity - Related Videos

Research

JoVE Journal - Biology
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Isolation of Immune Cells from Primary Tumors

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Cited by 18 •

2012

In this report, we describe a protocol for isolating highly purified populations of leukocytes that infiltrate tumors. This protocol is adapted from the Miltenyi Biotech protocol to enhance yield and purity for isolating cells from complex tumor tissue.

Research

JoVE EoE - Immunodiagnostics

A Technique to Assess the In Vivo Localization of Tumor-Specific Antibodies

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2025

This video demonstrates a technique to study the in vivo localization of tumor-specific antibodies in a mouse tumor xenograft model. Upon subcutaneously injecting cancer cells into mice for tumor formation, fluorescently-labeled antibodies are injected that bind to tumor-specific receptors, enabling in vivo assessment of antibody localization via imaging.

An In Vivo PET Imaging Technique to Detect Tumors in a Murine Model Using Radiolabeled Antibodies

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2025

This video demonstrates a technique involving a radioimmunoconjugate for the in vivo imaging of a tumor in a mouse model. Upon injection of the radioimmunoconjugate, the antibodies of the conjugate bind to a specific membrane antigen on the cancer cells. The radiotracer of the conjugate emits positrons that interact with neighboring electrons to produce energy, which is detected by a positron emission tomography (PET) scanner to create an image of the tumor.

Isolating Tumor-Infiltrating Immune Cells from a Murine Brain

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2025

The video demonstrates the isolation of tumor-infiltrating peripheral blood mononuclear cells from a mouse brain using mechanical dissociation and enzymatic digestion. This is followed by density gradient centrifugation to collect the immune cells for further analysis.

In Vivo Fluorescence Imaging to Localize Antibodies in a Mouse Tumor Xenograft Model

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2025

The video demonstrates a fluorescence imaging method for in vivo antibody localization in a mouse tumor xenograft model. It involves the injection of tumor cells in a mouse to generate solid xenografts beneath the skin. Subsequent injection of fluorescent antibodies confirms specific localization through enhanced fluorescence signals within the tumor xenograft.

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