Metastatic Ability

Metastatic ability is the capacity of cancer cells to leave a primary tumor, travel through the body, and establish secondary tumors, making it a central determinant of cancer progression and mortality. It depends on coordinated changes that allow cells to invade surrounding tissue, enter blood or lymphatic vessels, survive circulation, exit at distant sites, and adapt to a new tissue microenvironment. In medicine, assessing metastatic ability supports prognosis, staging, treatment selection, and research into therapies that block dissemination or colonization. Studying these steps also helps explain why some tumors recur after apparently successful local treatment.

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Research

JoVE EoE - Skin Cancer

Experimental Metastatic Melanoma Mouse Model: A Platform to Study the Metastatic Potential of Melanoma Cells in the Lungs

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2023

In this video, melanoma cells are intravenously injected through the tail vein in the mouse model. The melanoma cells further travel through the circulatory system, adapting to the distant microenvironment and causing metastasis in organs like lungs.

Modeling Spontaneous Metastatic Renal Cell Carcinoma (mRCC) in Mice Following Nephrectomy

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Cited by 23 •

2014

Models of spontaneous metastatic renal cell carcinoma (RCC) disease progression can be used for evaluating treatments in a clinically relevant setting. This protocol demonstrates different procedures for orthotopic kidney tumor cell implantation, proper nephrectomy, and finally outlines a necropsy guide for visual and bioluminescent scoring of metastatic burden and localization.

The Effect of Aspirin and Ibuprofen on the Phagocytic Ability of Macrophages

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2025

Source:Adepemi O. Ogundeji1, Nozethu Mjokane1, Maphori Maliehe1, Olihile M. Sebolai11Department of Microbiology and Biochemistry, University of the Free State.This video showcases a method to assess the impact of aspirin and ibuprofen, at their minimum inhibitory concentrations, on macrophage phagocytosis using pH-sensitive fluorescent dye-stained fungal cells. The drugs inhibit cyclooxygenase-2, decreasing prostaglandin formation and boosting macrophage phagocytosis, as observed through...

An In Vitro System to Study Tumor Dormancy and the Switch to Metastatic Growth

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Cited by 39 •

2011

A modified 3-D in vitro system is presented in which growth characteristics of several tumor cell lines in reconstituted basement membrane correlate with the dormant or proliferative behavior of the tumor cells at a metastatic secondary site in vivo.

Testing the Vascular Invasive Ability of Cancer Cells in Zebrafish (Danio Rerio)

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Cited by 19 •

2016

This method utilizes zebrafish embryos to efficiently test the vascular invasive ability of cancer cells. Fluorescent cancer cells are injected into the precardiac sinus or yolk sac of developing embryos. Cancer cell vascular invasion and extravasation is assessed via fluorescence microscopy of the tail region 24 to 96 hr later.

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