• Small Molecules
    • Large Molecules
    • Other Drug Modalities
    • SynVent Integrated Drug Discovery
      • SynVent Integrated Drug Discovery

        SynVent is Syngene’s platform for fully integrated therapeutic discovery and development across large and small molecules. 

    • Industries
    • Dedicated Centers
      • Dedicated Centers

        Our Dedicated Centers offer dedicated multi-disciplinary scientific teams, support personnel, and a tailormade ring-fenced and fire-walled infrastructure as per client specifications to support their  R&D  goals

    • Center for Advanced Protein Studies (CAPS)
      • Center for Advanced Protein Studies (CAPS)

        Centre for Advanced Protein Studies [CAPS] is a state-of-the-art advanced national facility located in the Syngene campus, Bangalore.

  • Careers

Biomolecular Science

Syngene has vast experience in synthesizing biomolecules and developing various new chemical entities for clients. The biomolecules that our scientists and chemists have handled include lipids, carbohydrates, nucleobases, and peptides.


Capabilities

Our experts have worked with complex molecules, performing multistep synthesis of nucleosides, phosphoramidate prodrugs, glycolipids, phospholipids, and five to six-membered carbocyclic nucleosides. Their expertise also includes the design and synthesis of focused libraries to optimize the screening of compounds and the rapid generation of new nucleoside analogs.

With extensive knowledge of conjugation methods, we produce viable linkers to improve the efficiency of antibody-drug conjugates. Using a seven to nine-step synthesis process, our chemists modify sugar molecules to form carbohydrate derivates. The team also generates metabolites such as flavonoids, alkaloids, steroids, essential oils, and perfumes that are applicable across industries.

We use imaging components to analyze small molecules, causing the least amount of disturbance to their function. Through the use of a dedicated facility, our teams safely and expertly handle the synthesis of complex and highly potent compounds and toxins.

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