Metastatic Progression

Metastatic progression is the multistep process by which cancer cells leave a primary tumor, travel to distant sites, and establish secondary tumors, making cancer more difficult to treat. It involves local invasion, entry into blood or lymphatic vessels, survival during circulation, exit into new tissue, and colonization, with each stage influenced by tumor cell signaling and the surrounding microenvironment. In cancer research, studying these mechanisms supports the development of disease models, biomarkers, and therapies that target dissemination. Understanding metastatic progression can improve risk assessment, treatment selection, and strategies for limiting cancer spread.

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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.

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.

Bioluminescent Orthotopic Model of Pancreatic Cancer Progression

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Cited by 34 •

2013

Improved understanding of pancreatic cancer biology is critically needed to enable the development of better therapeutic options to treat pancreatic cancer. To address this need, we demonstrate an orthotopic model of pancreatic cancer that permits non-invasive monitoring of cancer progression using in vivo bioluminescence imaging.

Bioluminescent Imaging of Breast Tumor Progression in a Female Mouse Model

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2025

Source: Marina Arantes Radicchi1, Victor Carlos Mello1, Victória Paz Machado1, Márcia Cristina Oliveira da Rocha1, Jaqueline Vaz de Oliveira1, Luana Cristina Camargo1,2, Luís Alexandre Muehlmann1, Ricardo Bentes Azevedo1, Sônia Nair Bao1, João Paulo Figueiró Longo11Institute of Biological Sciences, University of Brasília, 2Department of Basic Psychological Processes, Institute of Psychology, University of BrasíliaThis video demonstrates the procedure for tracking tumor progression in vivo by...

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