Irdye 800cw-egf

IRDye 800CW-EGF is a near-infrared fluorescent conjugate that combines epidermal growth factor (EGF) with the IRDye 800CW fluorophore to visualize cells or tissues expressing the epidermal growth factor receptor (EGFR). The EGF component binds EGFR on the cell surface, while receptor-mediated uptake can concentrate the fluorescent signal within responsive cells, enabling detection with near-infrared imaging systems. In medicine, this probe supports studies of receptor distribution, tumor biology, targeted imaging, and treatment response. It can help connect molecular receptor activity with observable patterns in cultured cells, animal models, or clinical research workflows.

Irdye 800cw-egf - Related Videos

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.

Assessing Neural Stem Cell Motility Using an Agarose Gel-based Microfluidic Device

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Cited by 7 •

2008

We demonstrate that the over expression of epidermal growth factor receptors (EGFR) enhances the motility of neural stem cells(NSCs) using a novel agarose gel based microfluidic device. This technology can be readily adaptable to other mammalian cell systems where cell sources are scarce, such as human neural stem cells, and the turn around time is critical.

Mouse Mammary Epithelial Cells form Mammospheres During Lactogenic Differentiation

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Cited by 12 •

2009

HC11 lactogenic differentiation can be characterized by the formation of domed structures referred to as mammospheres. The structures can be enumerated by phase contrast microscopy to aid in quantifying lactogenic differentiation.

A Gradient-generating Microfluidic Device for Cell Biology

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Cited by 14 •

2007

We describe a protocol for the microfabrication of the gradient-generating microfluidic device that can generate spatial and temporal gradients in well-defined microenvironment. In this approach, the gradient-generating microfluidic device can be used to study directed cell migration, embryogenesis, wound healing, and cancer metastasis.

Generation of Organotypic Raft Cultures from Primary Human Keratinocytes

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Cited by 47 •

2012

An in vitro method to mimic in vivo epithelial differentiation is described. Many viruses target epithelial cells as part of their viral life cycle, and this method provides a means of examining virus:host interactions that more closely resembles that which occurs in vivo. This technique can be used with primary keratinocytes, established cell lines, as well as normal or diseased biopsy tissue.

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