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Sandy Schmidt

Enzymatic synthesis of polymer building blocks


Biocatalytic access to chiral and non-chiral polyesters by an artificial enzyme cascade
2016. 148 S. 220 mm
Verlag/Jahr: SÜDWESTDEUTSCHER VERLAG FÜR HOCHSCHULSCHRIFTEN 2016
ISBN: 3-8381-5204-2 (3838152042)
Neue ISBN: 978-3-8381-5204-2 (9783838152042)

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Polyesters such as poly- -caprolactone are important polymers due to their special properties and thus allow versatile applications. Moreover, these polymers have the potential to be made out of monomers derived from renewable sources which is in terms of sustainability and the utilization of environmentally benign resources an important advantage. Nevertheless, there is still a need to find new ways to produce the desired polyesters from variable monomers and to simplify the chemical/enzymatic syntheses of the respective building blocks as well as the polymers itself. Especially the access to the lactone precursors can be achieved by the use of enzymes as alternative approach to the chemical synthesis. Thus, this work aims on the establishment of a sustainable biocatalytic production process of -caprolactone for industrial purposes by the development and optimization of an artificial enzymatic cascade consisting of 3 different enzymes. The major challenge for this specific biocatalytic route is the instability of one enzyme of this cascade as well as the substrate and product inhibition. These limitations were addressed by protein engineering and process design strategies.
Dr. rer. nat. Sandy Schmidt is a biochemist with specialization on biocatalysis and enzyme engineering. She received summa cum laude (excellent) for her PhD in biochemistry from the University of Greifswald in 2015. Since December 2015 holds she a position as Postdoctoral Researcher at the University of Technology Delft (Delft, The Netherlands).