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Phenotype discrimination using the PhenoVue cell painting and multi-organelle staining kits
In this study, we analyzed the phenotypes induced by a set of 15 reference compounds using both the PhenoVue cell painting kit and the PhenoVue multi-organelle staining kit to compare phenotypic discrimination results of the two assays.

Deciphering the role of neutrophils in virus-induced respiratory disease
Preclinical imaging of neutrophilic response in viral infection with IVISense™ Neutrophil Elastase fluorescent probes.

Expanding imaging multiplexing capabilities with PhenoVue Fluor 400LS - Phalloidin
This technical note offers tips and best practices relating to fluorescent signal quality using PhenoVue Fluor 400LS Phalloidin stain.

Orthogonal validation of CRISPRCas9 and siRNA generated phenotypes using cell painting
Investigate cell cycle regulation through AURKB, GMNN, and PLK1 proteins. Learn how CRISPR-Cas9 and siRNA techniques, combined with high-content imaging on the Opera Phenix™ Plus, reveal their roles in cell division and genomic stability.

Cell painting: from images to innovation
Learn everything you need to know about cell painting, including what it is, how it works, and what you need to get started.

Cell painting - a cellular imaging and machine learning approach to drug discovery
Cell painting solutions from Revvity offer powerful phenotypic high-content screening methods that help to accelerate drug discovery by delivering more predictive data.

Cell painting for phenotypic screening
Application note describing how to set-up a cell painting assay.

In vivo imaging reagents
IVISbrite™ bioluminescent reagents and IVISense™ fluorescent probes, dyes, and labels optimized for in vivo imaging.

Evaluation of drug selectivity and efficacy using PROTACs in a 3D co-culture spheroid model
The aim of this study was to evaluate the efficacy and selectivity of SJF1528, a pan-EGFR PROTAC, and MS39, a mutant-specific EGFR L858R PROTAC, while exploring the use of both high-content imaging and no-wash HTRF immunoassays in encapsulated 3D spheroid models.

Quantitative analysis of 3D microtissue growth and biomarker intensity
Quantitative analysis of 3D microtissue growth and biomarker intensity using the Operetta HCS system and IVISense NIR fluorescent probes.

Integrins as targets for immunotherapy
Better understand integrins role in immuno-oncology in vivo with IVISense Integrin Receptor NIR fluorescent probes designed for in vivo imaging studies.

Why 3D: stripping complexity out of multi-dimensional cell models
Bridging the gap between 2D Cell cultures and in vivo conditions.


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