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- Publications
- Influence
Anchor peptides: A green and versatile method for polypropylene functionalization
- Kristin Rübsam, Benjamin Stomps, A. Böker, Felix Jakob, U. Schwaneberg, U. Schwaneberg
- Materials Science
- 5 May 2017
Abstract Polypropylene is one of the widest spread commodity polymers in plastic industry with an estimated global consumption of 62.4 million tons in 2020. Surface modification of polypropylene is… Expand
Water-Soluble Reactive Copolymers Based on Cyclic N-Vinylamides with Succinimide Side Groups for Bioconjugation with Proteins
- Huan Peng, M. Kather, Kristin Rübsam, Felix Jakob, U. Schwaneberg, A. Pich
- Chemistry
- 2 July 2015
Reversible addition–fragmentation chain transfer (RAFT) copolymerizations of methacrylic acid N-hydroxysuccinimide ester and cyclic N-vinylamide derivatives (N-vinylpyrrolidone, N-vinylpiperidone,… Expand
KnowVolution of the Polymer-Binding Peptide LCI for Improved Polypropylene Binding
- Kristin Rübsam, M. D. Davari, Felix Jakob, U. Schwaneberg
- Chemistry, Medicine
- Polymers
- 1 April 2018
The functionalization of polymer surfaces by polymer-binding peptides offers tremendous opportunities for directed immobilization of enzymes, bioactive peptides, and antigens. The application of… Expand
Tunable Enzymatic Activity and Enhanced Stability of Cellulase Immobilized in Biohybrid Nanogels.
- Huan Peng, Kristin Rübsam, Felix Jakob, U. Schwaneberg, A. Pich
- Chemistry, Medicine
- Biomacromolecules
- 30 September 2016
This paper reports a facile approach for encapsulation of enzymes in nanogels. Our approach is based on the use of reactive copolymers able to get conjugated with enzyme and build 3D colloidal… Expand
Sortase-Mediated High-Throughput Screening Platform for Directed Enzyme Evolution.
- Zhi Zou, D. Mate, Kristin Rübsam, Felix Jakob, U. Schwaneberg
- Chemistry, Medicine
- ACS combinatorial science
- 24 January 2018
Sortase-catalyzed ligations have emerged as powerful tools for the site-specific ligation of peptides and proteins in material science and biocatalysis. In this work, a directed sortase evolution… Expand
Directed evolution of polypropylene and polystyrene binding peptides
- Kristin Rübsam, L. Weber, Felix Jakob, U. Schwaneberg
- Chemistry, Medicine
- Biotechnology and bioengineering
- 1 February 2018
Surface functionalization of biological inert polymers (e.g., polypropylene PP; polystyrene PS) with material binding peptides facilitates an efficient immobilization of enzymes, bioactive peptides… Expand
Reversible Deactivation of Enzymes by Redox-Responsive Nanogel Carriers.
- Huan Peng, Kristin Rübsam, Felix Jakob, Patrizia Pazdzior, U. Schwaneberg, A. Pich
- Materials Science, Medicine
- Macromolecular rapid communications
- 1 November 2016
Novel redox-responsive polymeric nanogels that allow highly efficient enzyme encapsulation and reversible modulation of enzyme activity are developed. The nanogel synthesis and encapsulation of… Expand
Ultrahigh‐throughput screening system for directed polymer binding peptide evolution
- Lina Apitius, Kristin Rübsam, Christina Jakesch, Felix Jakob, U. Schwaneberg
- Chemistry, Medicine
- Biotechnology and bioengineering
- 1 August 2019
Accumulation of plastics in the environment became a geological indicator of the Anthropocene era. An effective reduction of long‐lasting plastics requires a treatment with micro‐organisms that… Expand
Stimuli-Responsive Poly( N-Vinyllactams) with Glycidyl Side Groups: Synthesis, Characterization, and Conjugation with Enzymes.
- Huan Peng, Kristin Rübsam, Chaolei Hu, Felix Jakob, U. Schwaneberg, A. Pich
- Chemistry, Medicine
- Biomacromolecules
- 4 January 2019
Herein we report the synthesis of new reactive stimuli-responsive polymers by RAFT copolymerization of glycidyl methacrylate and three cyclic N-vinyllactam derivatives. The copolymerization process… Expand
Reactive Copolymers Based on N-Vinyl Lactams with Pyridyl Disulfide Side Groups via RAFT Polymerization and Postmodification via Thiol–Disulfide Exchange Reaction
Herein, we report the synthesis of a series of novel pyridyl disulfide (PDS)-functionalized statistical reactive copolymers that enable facile access to complex polymeric architectures through highly… Expand