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Busting high-content imaging myths
High-content imaging has become a cornerstone of life science research, providing valuable insights into cellular function and drug responses. However, as with any advanced technology, misconceptions and myths can emerge. In this article, we’ll debunk some of the most common myths surrounding high-content imaging, shedding light on its true strengths and limitations.

Kinetic analysis of calcium flux activity in human iPSC-derived neurons using the Opera Phenix Plus system
Application note for fast kinetic imaging using HCS to visualize and evaluate spontaneous calcium flux activity in single human iPSC-derived neurons

Improving the throughput of a neuroprotection assay using the opera phenix high content screening system
Download the case study to learn how primary neuron morphology is analyzed in a straightforward approach using Harmony® software and careful assay optimization can increase throughput, and minimize the data burden, without compromising assay performance.

Re-tooling anti-microbial research for the 21st century
Case study describing the analysis of bacterial phenotypes to investigate adaptive mechanisms of antimicrobial resistance and screening for novel alternatives.

Opera Phenix Plus high-content screening system: crosstalk suppression
Technical note describing how fluorescent crosstalk is suppressed by the Opera Phenix Plus high-content screening system.

Morphological profiling of human T and NK lymphocytes by high-content imaging
The study in this publication review provides a foundation for the development of morphological profiling as a scalable approach to monitor the immune synapse (IS), primary lymphocyte responsiveness and microarchitecture.

Multifunctional mRNA-based CAR T-cells show promising anti-tumor activity against glioblastoma
Learn how researchers have evaluated the efficiency of mRNA-based multifunctional CAR T-cells against glioblastoma in vitro and in vivo.

Imaging and gene editing approaches highlight important role of autophagy in controlling Mtb infection
Learn how researchers used CRISPR-Cas9 gene editing and high-content imaging approaches to explore the role of autophagy in controlling Mtb infection.

A scalable method to monitor protein levels and localizations in cells
Pooled protein tagging, cellular imaging, and in-situ sequencing to identify cellular response to drug treatment.

Measuring FRET using the Opera™ Phenix™ high-content screening system
Here, we present a FRET-based high-content screening assay to study the interaction of the anti-apoptotic protein Bcl-XL with the pro-apoptotic protein Bad.

Imaging bile canaliculi in 3D liver microtissues
Here, we describe a 3D HCS assay to study hepatobiliary transporter function in InSphero human liver microtissues using the Opera Phenix™ HCS system.

Label-free analysis of cardiomyocyte beating using the Opera Phenix Plus System
Learn how to reliable quantify cardiomyocyte beating frequency using the Opera Phenix Plus high-content screening system in this application note.


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