Funding
Wichtige Forschungsprojekte, die mit Mitteln der Deutschen Forschungsgemeinschaft, des Bundesministeriums für Bildung und Forschung, des Bundesministeriums für Wirtschaft und Klimaschutz sowie der Europäischen Union gefördert sind und wurden:
DFG - Deutsche Forschungsgemeinschaft |
![]() |
|
Acronym | Name | Logo |
FOR 5538 |
Multistep Catalytic Production Systems for Fine Chemistry by Integrated Molecular, Material and Process Design |
![]() |
FOR 5730 |
Customized deep eutectic solvents for biocatalysis - a holistic approach from molecular interactions to process parameters – (DESMOL2PRO) |
![]() |
GRK 2297 |
Mathematical complexity reduction |
![]() |
GRK 2408 |
Maladaptive processes at physiological interfaces in chronic diseases |
![]() |
MaRDI |
Making optimal use of mathematical research data |
![]() |
NFDI4Cat | Shaping the digital future of catalysis | ![]() |
SFB/ TRR 287 |
BULK-REACTION - Gas flow, moving debris with chemical reaction |
![]() |
SPP 2080 |
Catalysts and reactors under dynamic operating conditions for energy storage and conversion: 2 Magdeburger Subprojects |
![]() |
SPP 2331 | "Machine Learning in Process Engineering": 5 Magdeburg Subprojects | ![]() |
SPP 2364 | Autonomous processes of particle technology: 5 Magdeburger Subprojects | ![]() |
SPP 2419 |
A contribution to the realization of the energy transition: Optimization of thermochemical energy conversion processes for the flexible utilization of hydrogen-based renewable fuels using additive manufacturing |
![]() |
SUPEC | A systems biotechnology approach for improving substrate uptake during succinic acid production in a two-phase cultivation process | ![]() |
Completed |
||
GRK 1167 | Cell-cell communication in the immune and nervous systems: topological organization of signaling pathways. | |
SPP 1679 |
8 Magdeburg subprojects |
|
SFB 854 | Molecular organization of cellular communication in the immune system. | |
SFB/TRR 63 | Integrated chemical processes in liquid multiphase systems | |
|
||
BMBFTR - Bundesministerium für Forschung, Technologie und
|
![]() |
|
Akronym | Name | Logo |
deNBI | Big Data Exploitation in Life Science | |
H2Mare | Offshore generation of green hydrogen and other power-to-X products | ![]() |
Abgeschlossen |
||
Biotechnologie 2020+ | Analysis and design of bacterial enzyme cascades for material recycling of CO2 | |
Biotech 2020 + 'CORENZ' |
Cofactor regeneration in cell-free enzyme systems | |
e:Bio | Cyanosys - Systems biology of cyanobacterial biofuel production | |
InTraSig - Development of a personalized anti-inflammatory therapy to inhibit interleukin-6 trans-signaling | ||
NoPain - The Nociceptor Pain Model | ||
SulfoSys - Applied Sulfolobus System Biology: Exploitation of the "hot" archeal metabolic potential for biotechnology | ||
Joint project: CellSys - Systems biology approach for the development of a production cell line for influenza vaccines | ||
Collaborative project: JAK-Sys - Elucidation of dysbalanced signal transduction by JAK2-V617F in myeloproliferative neoplasms using qualitative and quantitative modeling approaches | ||
Virosys - Dissecting the innate immune response to viral infection | ||
FORSYS - MaCS | One of the four national research centers for systems biology | |
GERONTOSYS2 |
Funding module: Systems biology for health in old age | |
HEPATOSYS | National competence network for research into the systems biology of liver cells. | |
MaxSynBio | Max Planck Research Network in Synthetic Biology | |
MEDSYS | Funding Module: Medical Systems Biology | |
Mikrobielle Biofabriken: 'ZIP' |
Development of Zymomonas mobils into an industrial platform microorganism for products beyond ethanol. | |
Modexa | Model-Based Methods for the Optimal Design of Stimulus Experiments and Dynamic Analysis of Signal Transduction Processes | |
MSC | Systems Biology for Tissue Engineering of Mesenchymal Stem Cells: Integrating Novel Experimental Methods and Mathematical Models | |
P2Chem | New mixed-integer optimization methods for efficient synthesis and flexible management of power-to-chemicals processes | |
ROBUTYEAST | Optimization of metabolic regulation in yeast production strains for dynamic conditions | |
SYSMO | Transnational competence network for research into the systems biology of microorganisms | |
SYSTEC | Funding Module: Using and shaping new methods in systems biology | |
Virtuelle Leber | National competence network for research into the systems biology of liver cells | |
|
||
BMWE - Bundesministerium für Wirtschaft und Energie |
![]() |
|
Akronym | Name | |
Abgeschlossen |
||
KI_embedded |
AI basic development for embedded systems with leading applications in virtual sensor technology and fuel cell control | |
|
||
EU - Europäische Union |
![]() |
|
Akronym | Name | |
ERC Starting Grant "3DPartForm" | 3D-printing of PARTiculate FORMulations utilizing polymer microparticle-based voxels | ![]() |
Abgeschlossen |
||
ADONET | Marie Curie Research Training Network | |
CELLCHECK | Marie Curie Research Training Network | |
ERC-2022-POC TRANSMETECH |
Translating a new metabolic engineering strategy to industrial biotech applications | |
ERC Grant Modest |
Mathematical Optimization for Clinical Decision Support and Training | |
ERC Grant Strainbooster | Enforced ATP Wasting as a General Design Principle to Rationally Engineer Microbial Cell Factories | |
ROBUTYEAST | Optimizing metabolic regulation in yeast production strains for dynamic conditions | |
T-CELL |
EU-Projekt SYBILLA |