In Vivo Xenograft

In vivo xenograft is transplantation of cells, tissues, or organs between different species within a living organism, and in cancer research it commonly refers to growing human tumor cells or tissue in an animal model. Typically, researchers implant tumor material into immunodeficient mice, whose reduced immune rejection permits human cells to engraft, proliferate, and form measurable tumors that can be monitored over time. These models help evaluate tumor growth, invasion, treatment response, and biomarker activity in a whole-body context, supporting preclinical drug testing and comparison of patient-derived tumors, while also revealing biological and therapeutic differences that may not appear in cell culture.

In Vivo Xenograft - Related Videos

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JoVE EoE - Antibody-Based Technologies

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.

Research

JoVE Journal - Medicine
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Validation of Nanobody and Antibody Based In Vivo Tumor Xenograft NIRF-imaging Experiments in Mice Using Ex Vivo Flow Cytometry and Microscopy

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Cited by 24 •

2015

This protocol outlines the steps required to perform ex vivo validation of in vivo near-infrared fluorescence xenograft imaging experiments in mice using fluorophore labelled nanobodies and conventional antibodies.

Research

JoVE Journal - Medicine
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Depletion of Mouse Cells from Human Tumor Xenografts Significantly Improves Downstream Analysis of Target Cells

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Cited by 9 •

2016

Human tumor xenografts are vascularized and infiltrated by cells of mouse origin during the growth phase in vivo. To circumvent the bias caused by these contaminating cells during downstream analysis, we developed a method allowing for comprehensive depletion of all mouse cells by magnetic cell sorting.

Stereotactic Intracranial Implantation and In vivo Bioluminescent Imaging of Tumor Xenografts in a Mouse Model System of Glioblastoma Multiforme

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Cited by 42 •

2012

We describe an integrated method for the precise, stereotactic implantation of human glioblastoma multiforme cells into the brains of nude mice and subsequent serial in vivo imaging to monitor growth and response to treatment of the resultant xenografts.

Fluorescence Molecular Tomography for In Vivo Imaging of Glioblastoma Xenografts

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Cited by 5 •

2018

Orthotopic intracranial injection of tumor cells has been used in cancer research to study brain tumor biology, progression, evolution, and therapeutic response. Here we present fluorescence molecular tomography of tumor xenografts, which provides real-time intravital imaging and quantification of a tumor mass in preclinical glioblastoma models.

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