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IVISense Sample Pack Fluorescent Imaging Panel

Not sure what reagents or probes work best for your in vivo imaging research studies? Try our IVISense Sample Pack which contains our most popular fluorescent probes and IVISbrite D-Luciferin Bioluminescent Substrate in RediJect Solution (XenoLIght).

For research use only. Not for use in diagnostic procedures.

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Overview

Both fluorescence and bioluminescence are important imaging modalities for a variety of disease or biological models. Find out which reagents will work best for your application with a convenient collection of our most popular and most published fluorescent probes in sample size, as well as ready-to-use luciferin for bioluminescent imaging. Discover the broad utility of our reagents in a number of applications, including cancer, angiogenesis, arthritis, cardiovascular disease, and acute inflammation.

The availability of probes at 680 nm and 750 nm wavelengths further offers the opportunity for multiplex imaging of appropriate probe combinations to maximize information gained from research animals.

The IVISense Sample Pack includes the following five reagents:

Part Number Fluorescent Probe Biological Target
770504 IVISbrite D-Luciferin in RediJect Solution** (XenoLight RediJect D-Luciferin) Pre-formulated bioluminescent substrate ready for use in in vivo imaging with Firefly Luciferase
NEV10723EX  IVISense Vascular 680* (AngioSense 680EX) Vascular probe:
Leaks into sites of edema/cancer
NEV10878 IVISense Integrin Receptor 750* (IntegriSense 750) αVβ3 integrin targeted probe:
Marker on tumors, neovasculature, and osteoclasts
NEV10932 IVISense MMP 750 FAST*  (MMPSense 750 FAST) Pan-MMP activatable probe:
Secreted marker of inflammatory cells, fibrosis, and tumor margins
NEV10972EX IVISense Pan Cathepsin 750* (ProSense 750) Pan-cathepsin activatable probe:
Lysosomal marker of inflammatory cells and tumor cells

*Sample size (each sample size vial contains 3 doses)
**Full size (RediJect D-Luciferin kit contains 10 vials, 5 doses per vial)

 

Specifications

Optical Imaging Classification Bioluminescence imaging, Fluorescence Imaging
Product Brand Name IVISense
Quantity in a Package Amount 5.0 Vials
Shipping Condition Blue Ice
Resources, Events & More
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Ebook

In Vivo Imaging Solutions eBook

Researchers trust our in vivo imaging solutions to give them reliable, calibrated data that reveals pathway characterization and therapeutic efficacies for a broad range of indications. Our reagents, instruments, and applications support have helped hundreds of research projects over the years. And our hard-earned expertise makes us a trusted provider of pre-clinical imaging solutions— with more than 9,000 peer reviewed articles as proof.

PDF 4 MB

Flyer

Best Practices for Designing An Effective In Vivo Fluorescence Imaging Study

Fluorescence molecular imaging is the visualization of cellular and biological function in vivo to gain deeper insights into disease processes and treatment effects. Designing an effective study from the beginning can help save time and resources.

Learn about several important best practices, from proper probe selection to study design to imaging technique tips and tricks needed to generate meaningful biological information from your in vivo fluorescence imaging studies.

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Fluorescent Panels Targeted for Your Research

Data sheet on PerkinElmer's Fluorescent Panels for In Vivo imaging

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Guide

Fluorescent Imaging Panels (User Guide)

User guide for fluorescent imaging probes

PDF 800 KB

White Paper

The Role of In Vivo Imaging in Drug Discovery and Development

The primary goal of preclinical imaging is to improve the odds of clinical success and reduce drug discovery and development time and costs. Advances in non-invasive in vivo imaging techniques have raised the use of animal models in drug discovery and development to a new level by enabling quick and efficient drug screening and evaluation. Read this White Paper to learn how preclinical in vivo imaging helps to ensure that smart choices are made by providing Go/No-Go decisions and de-risking drug candidates early on, significantly reducing time to the clinic and lowering costs all while maximizing biological understanding.

PDF 547 KB