Genetically Fusing Order‐Promoting and Thermoresponsive Building Blocks to Design Hybrid Biomaterials

Author:

Patkar Sai S.12ORCID,Wang Bin1,Mosquera Ana Maria1,Kiick Kristi L.13ORCID

Affiliation:

1. Department of Materials Science and Engineering University of Delaware Newark Delaware 19716 United States

2. Eli Lilly and Company 450 Kendall Street Cambridge MA 02142 United States

3. Department of Biomedical Engineering University of Delaware Newark Delaware 19716 United States

Abstract

AbstractThe unique biophysical and biochemical properties of intrinsically disordered proteins (IDPs) and their recombinant derivatives, intrinsically disordered protein polymers (IDPPs) offer opportunities for producing multistimuli‐responsive materials; their sequence‐encoded disorder and tendency for phase separation facilitate the development of multifunctional materials. This review highlights the strategies for enhancing the structural diversity of elastin‐like polypeptides (ELPs) and resilin‐like polypeptides (RLPs), and their self‐assembled structures via genetic fusion to ordered motifs such as helical or beta sheet domains. In particular, this review describes approaches that harness the synergistic interplay between order‐promoting and thermoresponsive building blocks to design hybrid biomaterials, resulting in well‐structured, stimuli‐responsive supramolecular materials ordered on the nanoscale.

Funder

Division of Materials Research

National Institutes of Health

Publisher

Wiley

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