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178

Systems Biotechnology

Prof. Dr.-Ing.

Andreas

Kremling

Contact

www.biovt.mw.tum.de/

fg-systembiotechnologie

a.kremling@lrz.tu-muenchen.de

Phone +49.89.289.15761

Management

Prof. Dr.-Ing. Andreas Kremling, Director

Administrative Staff

Susanne Kuchenbaur

Research Scientists

Dr. Alberto Marin Sanguino

Dr. Katharina Pflüger-Grau

Sabine Wagner, M.Sc.

Hannes Löwe, M.Sc

Miguel Valderrama, M.Sc

Sayuri Hortsch, M.Sc

Kreitmayer, Diana, M.Sc.

Technical Staff

Stefan Darchinger

Research Focus

■■

Mathematical modeling of cellular

systems

■■

Model analysis

■■

Model-based metabolic engineering

■■

Experimental design

Competence

■■

Model library for different model

systems (metabolic modules, gene

expression modules, signaling

modules)

■■

Design space analysis

■■

Time hierarchy analysis

■■

Process design

Infrastructure

■■

S1-Laboratory (allows work with

genetically modified strains)

■■

Photo bio-reactor system

■■

Standard bio-reactor system

■■

Tecan reader

Courses

(for Master ‘Industrial Biotechnology’,

MSE)

■■

Applied Mathematics

■■

Modeling of Cellular Systems

■■

Analysis and Design of Cellular

Systems

■■

Optimization in Biotechnology

■■

Data Analysis and Statistical Models

■■

Exercises in Simulation Studies in

Biotechnology

Publications 2016-17

■■

Hahl, S. and Kremling, A.: A compa­

rison of deterministic and stochastic

modelling approaches for biochemical

reaction systems: on fixed points,

means, and modes. Frontiers in

Genetics (7), 157 ff (2016)

■■

Löwe, H, Kremling, A., and Marin-

Sanguino, A.: Time hierarchies and

model reduction in canonical non-linear

models. Frontiers in Genetics (7), 166 ff

(2016)

■■

Valderrama-Gomez, M.A., Kreitmayer,

D., Wolf, S. Marin-Sanguino, A. and

Kremling, A.: Application of theore­

tical methods to increase succinate

production in engineered strains.

Bioprocess and Biosystems Engin­

eering 40 (4), 479 ff (2017)

■■

Löwe, H., Schmauder, L., Hobmeier,

K., Kremling, A. and Pflüger-Grau, K.:

Metabolic engineering to expand the

substrate spectrum of

Pseudomonas

putida

toward sucrose. Microbiology­

Open, e00473 (2017)

■■

Löwe, H., Hobmeier, K., Moos, M.,

Kremling, A., and Pflüger-Grau, K.:

Photoautotrophic production of poly­

hydroxyalkanoates in a synthetic mixed

culture of

Synechococcus elongatus

cscB and

Pseudomonas putida

cscAB.

Biotechnology for Biofuels 10:190

(2017)

■■

Kindzierski, V., Raschke, S., Knabe, N.,

Siedler, F., Scheffer, B., Pflüger-Grau, K.

et al.: Osmoregulation in the Halophilic

Bacterium

Halomonas elongata

: A Case

Study for Integrative Systems Biology.

PLoS ONE12(1): e0168818 (2017)