Bioinspired and biomimetic protein-based fibers and their applications

Биоинспирированные и биомиметические волокна на основе белков и их применение
Tim Schiller, Thomas Scheibel
2024-04-18

bioinspired materialsbiomimetic spinningprotein-based fiberssmart textilessustainable materials
Abstract Protein-based fibers combine unique mechanical properties with biocompatibility and biodegradability, and often outperform polymer-based fibers. Furthermore, a growing need for sustainable materials has triggered a revival in the study of protein fibers, including keratin, collagen, elastin, and silk, which do not require environmentally damaging petrochemicals for their synthesis. Nowadays, bioinspired research intends to mimic the underlying proteins as well as their natural assembly or spinning processes, to achieve fibers with properties equivalent to those of their natural counterparts. Protein-based fibers can also be used to mimic functions in nature, which can otherwise not be achieved with synthetic polymer-based fibers. Here, we review promising protein fibers, their synthesis, and applications, such as air and water filtration, energy conversion, smart textiles, and in biosensoring and biomedical fields.
1
Bioinspired approaches mimic both protein structures and natural assembly or spinning processes to reproduce properties of natural protein fibers.
2
Keratin, collagen, elastin, and silk provide more sustainable fiber materials because their synthesis does not require environmentally damaging petrochemicals.
3
Promising applications include air and water filtration, energy conversion, smart textiles, biosensing, and biomedical technologies.
4
Protein-based fibers can replicate biological functions that synthetic polymer-based fibers cannot readily achieve.
5
Protein-based fibers offer distinctive mechanical properties alongside biocompatibility and biodegradability, often surpassing polymer-based fibers.

Bioinspired and biomimetic protein-based fibers, including keratin-, collagen-, elastin-, and silk-based fibers

Their synthesis, biomimetic assembly or spinning, properties, and applications in filtration, energy conversion, smart textiles, biosensing, and biomedicine

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2024-04-18
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Tim Schiller
Thomas Scheibel
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