Chemical Compound Library

Nowadays, identification of novel and robust chemical starting points is critical to drug discovery, and it has become a common practice over the past decade to screen out a large number of compounds that cover a large selection of the chemical space in high-throughput assays in the early stages of a project to identify chemicals that have the potential to modulate the target. A compound library is a collection of stored chemicals. Depending on their scope (specific target or diversity-oriented target) and design (chemical space or scaffold), our compound libraries can be divided into natural product libraries and peptide compound sets. These libraries have been extensively validated in our in-house bioassays.

BOC Sciences' chemical libraries are collections of stock chemicals used for high-throughput screening, medicinal chemistry, common drug design, and chemical studies.

Routes for heterologous biosynthesis of  natural products. Figure 1. Routes for heterologous biosynthesis of natural products. (Yunzi, L.; et al. 2015)

Features of our Chemical Compound Library

  • Our small-molecule libraries can increase the speed and ultimate success of your drug development
  • Superior chemical diversity
  • A good starting point for de novo discovery, great success in oncology therapeutics
  • Often used to assess regulation of difficult targets such as protein-protein interactions
  • Covers a broad and unique chemical space
  • Final compound designs are assessed virtually prior to synthesis

Our Chemical Compound Libraries

Natural Compound Library

Natural products are a unique source of chemical diversity, and an ideal starting point for many pharmacologically active small-molecule screening programs. Natural products have been the most successful source of new drugs. Natural products have been shown to be successful modulators of difficult targets, such as a range of antibacterial targets, particularly protein-protein interactions. BOC Sciences' natural product library is a unique collection of multiple natural products with known biological activity, broad sources and high cost effectiveness. Our natural compound library is a powerful tool for drug discovery, pharmacology studies, stem cell differentiation, fingerprinting studies, and quality studies, etc.

Peptide Library

Peptide libraries are systematic assemblies of a large number of different peptides that have been widely used for drug discovery, target validation, epitope mapping, vaccine development and structure-activity studies. Due to the expanding interest in peptide drugs, the demand for peptide libraries by pharmaceutical companies is increasing significantly. BOC Sciences' high-throughput synthesis platform offers a range of cost-effective peptide library services to meet your drug discovery needs.

BOC Sciences provides professional, rapid and high-quality services of Chemical Compound Library design at competitive prices for global customers. Personalized and customized services of Chemical Compound Library design can satisfy any innovative scientific study demands. Our clients have direct access to our staff and prompt feedback to their inquiries. If you are interested in our services, please contact us immediately!

Reference

  1. Yunzi, L.; et al. Engineered biosynthesis of natural products in heterologous hosts. Chemical Society Reviews. 2015. 46(37): 5265-5290.
Our mission is to provide clients with a professional chemical library design platform. Empowered by high-quality services and effective research solutions, we are committed to helping customers achieve effective and successful research goals.

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Services Based on the Chemical Library Design Platform

Services Based on the Chemical Library Design Platform

BOC Sciences has rich experience in working with global customers in custom library synthesis of compounds and generating small to medium-sized libraries of target compounds. Our knowledge in generating a large number of target molecules in a remarkably shorter time enables quick biological screenings for affinities. With the target properties in mind, we deliver target molecules, by applying our extensive knowledge in drug discovery.

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