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A novel frequency distribution selection method for efficient plate layout of a diverse combinatorial library
E T Graham1, S P Jacober, M G Cardozo
1Department of Information Technology and Department of Medicinal Chemistry, Boehringer Ingelheim Pharmaceuticals, R&D, 175 Briar Ridge Road, Ridgefield, Connecticut, USA. egraham@rdg.boehringer-ingelheim.com
Summary
A new frequency distribution method efficiently selects compounds from virtual libraries for synthesis. This approach minimizes compounds synthesized and reagents used, saving time and costs.
Area of Science:
- Computational chemistry
- Synthetic chemistry
- Drug discovery
Background:
- Virtual combinatorial libraries offer vast chemical diversity but pose synthesis challenges.
- Efficient compound selection is crucial for cost-effective drug discovery and development.
- Current methods may not optimize for both diversity and reagent minimization.
Purpose of the Study:
- To introduce a deterministic frequency distribution method for selecting compounds from virtual libraries.
- To enable efficient synthesis by minimizing the number of compounds and reagents.
- To provide a practical solution for plate layout configuration in automated synthesis.
Main Methods:
- Utilizing reagent frequency analysis within a partitioned chemical space.
- Applying the method to diverse molecular libraries regardless of partitioning strategy (e.g., clusters, cell-based).
- Identifying computationally 'expensive' regions for targeted synthesis to achieve desired diversity or similarity.
Main Results:
- The frequency distribution method generates a unique and diverse set of representative molecules.
- It significantly reduces the number of compounds requiring synthesis and the variety of reagents needed.
- The method offers a discrete, adaptable solution for various library sizes and reagent combinations.
Conclusions:
- The frequency distribution method optimizes compound selection for efficient and cost-effective synthesis.
- It facilitates practical solutions for automated synthesis, including plate layout.
- This approach aids in strategic decision-making regarding compound synthesis for drug discovery programs.