New Catalog:
iMEAN Digital Biofoundry Products & Services
The biggest challenge in industrial biotechnology is no longer generating experimental data – it is turning that data into reliable R&D decisions. Despite major investments in automation and laboratory infrastructure, R&D teams still struggle with fragmented data, disconnected workflows, uncertain scale-up and costly trial-and-error throughout the Design-Build-Test-Learn (DBTL) cycle.
Since 2018, iMEAN has pioneered digital modelling of living organisms and complex biological systems to address these challenges. Our “Digital Biofoundry – Products & Services” catalog brings together the Smart Modelling Platform, In silico Bioanalysis and Digital Twin into one integrated ecosystem to unlock the full potential of your microbial manufacturing.
Inside the Smart Modelling Platform
At the core of iMEAN’s technology is the Smart Modelling Platform – a multi-layer mechanistic modelling framework that transforms expert biological knowledge and experimental data into predictive models tailored to each target organism and your project objectives.
You will find clear descriptions of our core model layers, including:
- Genome‑scale metabolic network models (GEMs)
- Regulatory network models
- Kinetic models of metabolic pathways and protein production
- Cellular resource allocation models
- Cellular membrane biophysical models
- Mixed‑culture fermentation
Each model is presented with a description, the problems it solves, data requirements and indicative timelines and pricing, so R&D teams can see where to start and how deep to go.
Digital Twin for Industrial Biotechnology
The catalog also introduces our Digital Twin, including two Digital Twin modules for Bioreactors and Strain Construction. By integrating mechanistic models with experimental and process data, these Digital Twins create continuously evolving virtual replicas of your strains, bioreactors and fermentation processes.
You will discover how Digital Twin evolves from process monitoring to autonomous decision support through three levels of capability:
Level 1 – Deviation Identification: detect deviations by comparing real-time process data with model predictions.
Level 2 – Troubleshooting Exploration: identify likely causes and evaluate alternative process scenarios through virtual simulations.
Level 3 – Process Control: enable automated, model-driven optimisation of bioprocess operations.
The catalog details deployment options and pricing modalities to help you evaluate how Digital Twin could plug into your existing automation and control systems.
Faster DBTL cycles with Our In silico Bioanalysis
For teams that lack time or in-house modelling capacity, the catalog presents the In silico Bioanalysis service: a flexible porfolio that brings our expertise in mechanistic modelling, simulation software and bioinformatics directly into your DBTL workflows. Two service options are available:
Digital Boost service: a continuous one-year support designed to help you continously LEARN from your data, DESIGN more effective experiments and progressively optimize your strains and bioprocesses.
Digital Sprint service: a one-shot service for your specific needs which offers a set of standalone services that help your team move from opportunity identification to feasibility assessment and solution design.
Each service includes clearly defined scopes, deliverables, timelines and pricing, helping your team reduce trial-and-error, accelerate R&D and make better-informed decisions.
What else is included ?
To help you assess collaboration framework, the catalog includes a clear licensing and intellectual property policy covering model and software licenses, usage rights, exclusivity options and success‑fees applicable to Design services.
Real‑world case studies illustrate how iMEAN’s models and services have helped clients increase titer, shorten R&D timelines and reduce costs, and develop high‑performing strains and robust bioprocesses. The catalog also highlights our clients and partners across the industrial biotech value chain, from strain design to scale‑up and industrial deployment.
Let us show you
how our Digital Biofoundry works