Tumor Suppression

Tumor suppression is the collection of cellular mechanisms that prevent abnormal cells from developing into cancer, making it a central concept in cancer research. Tumor suppressor genes encode proteins that monitor DNA damage, regulate cell-cycle progression, initiate apoptosis, or promote cellular senescence when growth becomes unsafe. Mutations, deletions, or reduced activity in these genes can remove critical controls and allow uncontrolled proliferation, genomic instability, and tumor development. Studying tumor suppression helps researchers identify cancer-driving changes, develop biomarkers for disease risk and prognosis, and design therapies that restore or exploit disrupted growth-control pathways.

Tumor Suppression - Related Videos

Research

JoVE Journal - Medicine
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The Measurement and Treatment of Suppression in Amblyopia

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Cited by 54 •

2012

Amblyopia is a developmental disorder of the visual cortex that is often accompanied by strong suppression of one eye. We present a new technique for measuring and treating interocular suppression in patients with amblyopia that can be deployed using virtual reality goggles or a portable iPod Touch device.

Research

JoVE EoE - Immunotherapy

Tumor Implantation and Injection of a Tumor Vaccine in a Mouse Model

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2025

This video demonstrates a cell-based tumor vaccination assay. A mouse, intradermally injected with B16-F10 melanoma cells for tumor formation, is vaccinated with B16-F10 cells secreting Flt3L cytokine near the developed tumor. The secreted Flt3L from the vaccine promotes the maturation and proliferation of dendritic cells that then present tumor antigens to T cells in lymph nodes, triggering a targeted anti-tumor immune response.

Visualizing Transcriptional Suppression in Virus-Infected Cells

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2026

Source: Kalveram, B. et al. Using Click Chemistry to Measure the Effect of Viral Infection on Host-Cell RNA Synthesis. J. Vis. Exp. (2013)This video demonstrates the use of click chemistry and fluorescence microscopy to visualize nascent RNA transcription in mammalian cells. It highlights how viral infection suppresses host transcription by comparing fluorescent signals between infected and control cells.

Evaluation of Tumor-infiltrating Leukocyte Subsets in a Subcutaneous Tumor Model

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Cited by 15 •

2015

This protocol describes a method for the detailed evaluation of leukocyte subsets within the tumor microenvironment in a mouse tumor model. Chemerin-expressing B16 melanoma cells were implanted subcutaneously into syngeneic mice. Cells from the tumor microenvironment were then stained and analyzed by flow cytometry, allowing for detailed leukocyte subset analyses.

Human In Vitro Suppression as Screening Tool for the Recognition of an Early State of Immune Imbalance

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2011

Tregs are potent suppressors of the immune system. There is a lack of unique surface markers to define them, hence, definitions of Tregs are primarily functional. Here we describe an optimized in vitro assay capable of identifying immune imbalance in subjects at risk to develop T1D.

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