Advances in Biohybridized Planar Polymer Membranes and Membrane‐Like Matrices

Author:

Eggenberger Olivia M.1ORCID,Jaśko Piotr12,Tarvirdipour Shabnam1,Schoenenberger Cora‐Ann13ORCID,Palivan Cornelia G.123ORCID

Affiliation:

1. Department of Chemistry University of Basel BPR 1096, Mattenstrasse 24a CH-4058 Basel Switzerland

2. Swiss Nanoscience Institute University of Basel Klingelbergstrasse 82 CH-4056 Basel Switzerland

3. NCCR-Molecular Systems Engineering BPR 1095, Mattenstrasse 24a CH-4058 Basel Switzerland

Abstract

AbstractThe past few decades have seen increasing growth in the field of biomimetic membranes and thus also a rapid expansion of their biomedical and technological applications. Versatility, stability and scalability have moved biohybrid polymer membranes into the limelight. This review focuses on planar, soft polymer membranes and polymer‐based matrices and their role as a host for different types of biomolecules. Because biomimetic polymer platforms present an extensive, ever‐growing field, we limit ourselves mostly to the discussion of producing planar polymer membranes on solid supports that lend themselves to functionalization by biomolecules. We present an overview of the major highlights and challenges associated with the biohybridization of such polymer platforms. In particular, we elaborate on procedures developed to maintain optimal peptide and membrane protein performance in a customized polymer membrane or membrane‐like environment. Finally, we discuss a number of applications of such biohybridized polymer platforms and contemplate future developments to further exploit their potential.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Swiss Nanoscience Institute

Universität Basel

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Drug Discovery,Biochemistry,Catalysis

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