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Recombinant Self-Assembling Peptides: Engineered Biomaterials for Tissue Regeneration

evidence
The takeaway

Recombinant self-assembling peptides designed through genetic engineering create customizable biomaterial scaffolds for tissue engineering — combining biological production with molecular design precision.

Key finding

Recombinant self-assembling peptides designed through genetic engineering create customizable biomaterial scaffolds for tissue engineering — combining

What the researchers found

Recombinant self-assembling peptides designed through genetic engineering create customizable biomaterial scaffolds for tissue engineering — combining biological production with molecular design precision.

Why it matters

Relevant for peptide research.

How the study worked

research study.

What this study cannot tell us

See abstract.

How to read the evidence

emerging evidence.

When this study was published

Published in 2010.

The bigger picture

Advances peptide research.

Questions still open

  • Further research needed.

Common questions

What was studied?
Recombinant Self-Assembling Peptides: Engineered Biomaterials for Tissue Regeneration
What was found?
Recombinant self-assembling peptides designed through genetic engineering create customizable biomaterial scaffolds for tissue engineering — combining biological production with molecular design precision.

Read the original research

Recombinant self-assembling peptides as biomaterials for tissue engineering.

Biomaterials, 31(36), 9395-405

Citation

Kyle, Stuart; Aggeli, Amalia; Ingham, Eileen; McPherson, Michael J. (2010). Recombinant self-assembling peptides as biomaterials for tissue engineering.. Biomaterials, 31(36), 9395-405. https://doi.org/10.1016/j.biomaterials.2010.08.051