Ingenza is redefining drug substance development with its inGenius® platform

We deliver scalable, efficient and ICH-compliant bioprocesses for our customer IND applications. Built on a 20-year history delivering efficient regio- and enantio-selective biocatalysis, our inGenius® platform has been developed with a focus on improving efficiency and de-risking future processes by enhancing four key modules: Bio-chemical Route Design; Process Demonstration; Analytical Development and Manufacture of pre-clinical material. Our comprehensive platform provides solutions for all your biocatalysis challenges, including enzyme screening, enzyme evolution, fermentation, process development and production.

Our small-molecule-based pharmaceutical technology modules

Bio-chemical route design module

Retrosynthetic analysis of target. Definition of novel route(s) to target involving Bio-chemical transformations or (bio)catalytic augmentation of customer route. Biocatalysts identified, adapted as needed and prepared.

Process demonstration module

(Chemo)-enzymatic synthesis of chemical entities or natural products exemplified in shake flask and scalable fermentations. Bioprocesses engineered with over 70 parameters monitored and optimised (upstream & downstream). Process design for target preparation to customer specification.

Analytical development module

Full analytical (bio)chemistry suite supporting final product, purity, identity and potency characterisation, in process analysis and release testing. Documentation, materials and processes controlled through QMS, ensuring traceability and full regulatory compliance.

Non-GMP Manufacture module

Material for pre-clinical, pre-formulation and stability testing using optimised hosts and individually tailored manufacturing process.

Success stories

Examples of the tailored support that accelerates our customers along the path to commercial success.

Each stage of client product and process development delivered through a uniquely integrated portfolio of bio-manufacturing technologies.

Enantiopure biosynthesis of key chiral intermediate

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Exquisitely selective enzymatic glycosylation

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