Department: Not specified
ROR ID: Not specified
Web page: https://www.wur.nl
Country:
Netherlands
City: Wageningen
Address:
DROEVENDAALSESTEEG 4
WAGENINGEN
6708 PB
Related items
Projects: Uncurated Protocols Library, Muconic Acid Production, An inventory of the Aspergillus niger secretome by combining in silico predictions with shotgun proteomics data, Template library, Coculture, IBISBA 1.0 deliverables, PREP-IBISBA deliverables, Industrial-scale penicillin simulation, Sandbox, Bioindustry4.0 Work Package 7: Tools for high-quality datasets, requisite for data-driven methods and services, IBISBA-DIALS WP3, STAMM: Soft sensor moniToring and mAintenance framework for Machine learning Models
Institutions: WUR - Wageningen University & Research, UNLOCK
https://orcid.org/0000-0001-8172-8981
Projects: Pseudomonas putida use case
Institutions: WUR - Wageningen University & Research
Head Chair of Systems & Synthetic Biology
Projects: Industrial-scale penicillin simulation, Sandbox, Bioindustry4.0 Work Package 7: Tools for high-quality datasets, requisite for data-driven methods and services, IBISBA-DIALS WP3, BIOREM, Hybrid Physics-Informed Neural Networks for Efficient Computational Modeling: A Workflow Framework Applied to Schwanniomyces occidentalis, IBISBA-ERIC, Pseudomonas putida use case, STAMM: Soft sensor moniToring and mAintenance framework for Machine learning Models
Institutions: WUR - Wageningen University & Research, INRAE
https://orcid.org/0000-0002-5873-9815
Expertise: Data Management, Metadata, Mathematical Modelling, Software Engineering, machine learning
Tools: Matlab, Python, Metadata, machine learning, Mass spectrometry, Microscopy
Postdoctoral Researcher Laboratory of Systems and Synthetic Biology at Wageningen University & Research (WUR) working on Digital Twins, Data Fabrics, and research data management.
URL
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IBISBA is designed to accelerate end-to-end bioprocess development, linking best-in-class R&D facilities to provide seamless multi-technology services.
Focusing on the different R&D phases in bioprocess development, IBISBA offers services related to computer-assisted design of biocomponents, construction of enzymes and microbial strains, the fermentation, downstream processing and project knowledge asset management.
Projects: Uncurated Protocols Library, Template library, Muconic Acid Production in Yeast, Public announcements and documents, IBISBA Library, Curated Protocols Library, DBTL-P, Sandbox, kHub_Test_2024, PREP-IBISBA, ITINERIS-IBBR-NA
Web page: http://www.ibisba.eu
Horizon Europe is the EU’s main funding program for research and innovation from 2021 to 2027. It tackles climate change, helps to achieve the UN’s Sustainable Development Goals and boosts the EU’s competitiveness and growth. The programme facilitates collaboration and strengthens the impact of research and innovation in developing, supporting and implementing EU policies while tackling global challenges. It supports creating and better dispersing of excellent knowledge and technologies. It creates ...
Projects: BIOREM
IBISBA-DIALS: IBISBA - Delivering the Infrastructure As a Legal Structure
A solution to industrial biotechnology's barriers
In the quest for sustainable, circular economies, industrial biotechnology is a game-changer. However, unlocking its full potential hinges on addressing complex challenges and streamlining research and innovation (R&I). In this context, the EU-funded IBISBA-DIALS project aims to reshape the R&I landscape by establishing a European Research Infrastructure ...
Projects: IBISBA-DIALS WP3
Web page: https://ibisba.eu/dials/
Real-time online monitoring of bioprocesses
Industrial biotechnology (IB) has the potential to create new markets while protecting the environment. With this in mind, the EU-funded BIOINDUSTRY 4.0 project will pave the way for IB to become a major manufacturing technology. Supporting the digitalisation of IB, the project will create new services delivered by European research infrastructure. These will address several challenges, focusing on the acceleration of bioprocess development pipelines. ...
Projects: Industrial-scale penicillin simulation, Scorpion antivenom nanobody production in Escherichia coli (Recombinant bispecific VHH), Production of the monoclonal antibody Trastuzumab in Komagataella phaffii (Pichia pastoris) for breast cancer treatment, Bioindustry4.0 Work Package 7: Tools for high-quality datasets, requisite for data-driven methods and services, Hybrid Physics-Informed Neural Networks for Efficient Computational Modeling: A Workflow Framework Applied to Schwanniomyces occidentalis, Saccharomyces cerevisiae, Pseudomonas putida use case, STAMM: Soft sensor moniToring and mAintenance framework for Machine learning Models
Web page: https://www.bioindustry4.eu
This programme is for making IBISBA documents available to the public.
Projects: IBISBA 1.0 deliverables, PREP-IBISBA deliverables, Policy notes and public reports
Web page: Not specified
Artificial intelligence (AI) and machine learning (ML) models as well as Digital shadows and Digital twins as well as Digital shadows and Digital twins have been, and are being, developed for a variety of applications, including industrial process supervision, bioprocess optimization, energy management, and environmental monitoring. In cases where models have the aim to classify, predict, or forecast a variable of interest then these models must become deployable in real-time so that their ...
Programme: Bioindustry 4.0
Public web page: https://stamm.inrae.fr
Organisms: Not specified
Use case of Pseudomonas putida
Programme: Bioindustry 4.0
Public web page: https://www.bioindustry4.eu/
Start date: 1st Feb 2023
End date: 31st Dec 2026
Organisms: Pseudomonas putida
This project make available the deliverables of the PREP-IBISBA project
Programme: IBISBA public documents
Public web page: Not specified
Organisms: Not specified
This project collects together the IBISBA 1.0 deliverables
Programme: IBISBA public documents
Public web page: Not specified
Organisms: Not specified
Industrial-scale penicillin simulation
Industrial-scale penicillin simulation (IndPenSim) is a first principles mathematical model of a 100,000 Litre fermentation of an industrial strain of Penicillium chrysogenum validated using historical data collected from an industrial-scale penicillin fermentation process. Adapting a previously published structured model to describe penicillin fermentation and extending the model to include the main environmental effects of dissolved oxygen, ...
Programme: Bioindustry 4.0
Public web page: http://www.industrialpenicillinsimulation.com/
Start date: 1st Jan 2023
End date: 31st Dec 2026
Organisms: Penicillium chrysogenum