Cell Biology

Unlock the Complexities of Cellular Mechanisms with Arctoris’ Advanced Cell Biology Solutions.

Capabilities Overview 

Arctoris brings cell biology to the forefront of drug discovery by offering comprehensive solutions that bridge molecular targets and physiological relevance. Our state-of-the-art platforms and expert team enable you to validate target engagement and assess functional activity within complex cellular systems, including patient-derived models and 3D cultures. By integrating high-content imaging and AI-enabled analytics, we provide deep insights that drive confident decision-making in lead optimization.

Key Features and Value

Physiologically Relevant Models: Utilize advanced cellular systems that mimic in vivo conditions for predictive results.

Comprehensive Assay Suite: Access a wide range of cell-based assays, including target engagement and phenotypic screening.

Advanced Analytics: Leverage AI-enabled imaging and data analysis for high-resolution insights.

Customized Solutions: Tailor assays to your specific targets and therapeutic areas.

Accelerated Timelines: Rapidly generate high-quality data to inform your drug discovery decisions.

Key Capabilities

In-cell target engagement and kinetic studies

Functional assays using patient-derived cells and 3D models

High-content imaging and flow cytometry analyses

Molecular biology endpoints including genomics and proteomics

Quantitative assessment of drug efficacy and toxicity

Automation for high-throughput screening and data processing

Integration with biochemical and biophysical data for holistic insights

Validation Data

 High-Content Analysis: Conducted Cell Painting assays extracting over 5,700 cellular features.

Efficiency: Assessed functional activity of 50 compounds in one week with high precision.

Lead Identification: Enabled clients to identify candidates with superior cellular efficacy.

Timely Progression: Reduced lead optimization timelines by up to 30%.

Enhanced Predictivity: Delivered data improving computational model accuracy.