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Updated: Mar 27, 2026

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Phenotypic Screening Approaches to Develop Aurora Kinase Inhibitors: Drug Discovery Perspectives
Carlos Marugán1, Raquel Torres1, María José Lallena1
1Discovery Chemistry Research and Technology, Lilly Research Laboratories, Eli Lilly and Company , Alcobendas , Spain.
Abstract:
Targeting mitotic regulators as a strategy to fight cancer implies the development of drugs against key proteins, such as Aurora-A and -B. Current drugs, which target mitosis through a general mechanism of action (stabilization/destabilization of microtubules), have several side effects (neutropenia, alopecia, and emesis). Pharmaceutical companies aim at avoiding these unwanted effects by generating improved and selective drugs that increase the quality of life of the patients. However, the development of these drugs is an ambitious task that involves testing thousands of compounds through biochemical and cell-based assays. In addition, molecules usually target complex biological processes, involving several proteins and different molecular pathways, further emphasizing the need for high-throughput screening techniques and multiplexing technologies in order to identify drugs with the desired phenotype. We will briefly describe two multiplexing technologies [high-content imaging (HCI) and flow cytometry] and two key processes for drug discovery research (assay development and validation) following our own published industry quality standards. We will further focus on HCI as a useful tool for phenotypic screening and will provide a concrete example of HCI assay to detect Aurora-A or -B selective inhibitors discriminating the off-target effects related to the inhibition of other cell cycle or non-cell cycle key regulators. Finally, we will describe other assays that can help to characterize the in vitro pharmacology of the inhibitors.
Insights
Developing targeted cancer drugs requires advanced screening. High-content imaging (HCI) and other multiplexing technologies help identify selective mitotic inhibitors, improving patient quality of life by reducing side effects.
Area of Science:
- Cancer drug discovery
- Mitotic regulation
- Pharmacology
Background:
- Targeting mitotic regulators like Aurora-A and -B is a key cancer therapy strategy.
- Existing microtubule-targeting drugs cause significant side effects (neutropenia, alopecia, emesis).
- Pharmaceutical companies seek selective drugs to improve patient quality of life.
Purpose of the Study:
- To describe multiplexing technologies for drug discovery.
- To detail assay development and validation processes.
- To showcase high-content imaging (HCI) for phenotypic screening of selective mitotic inhibitors.
Main Methods:
- Description of two multiplexing technologies: high-content imaging (HCI) and flow cytometry.
- Focus on HCI for phenotypic screening in drug discovery.
- Development and validation of assays adhering to industry quality standards.
Main Results:
- HCI enables effective phenotypic screening for drug candidates.
- A concrete HCI assay example is provided for detecting selective Aurora-A/B inhibitors.
- The method distinguishes off-target effects from desired inhibition.
Conclusions:
- HCI is a valuable tool for identifying selective cancer drug candidates.
- Multiplexing technologies are crucial for efficient drug discovery.
- Characterization of in vitro pharmacology is essential for improved drug development.
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