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Biofabrication with Chitosan

Biomacromolecules · 2005 · Vol. 6(6) · pp. 2881–2894
Hyunmin YiLiqun WuWilliam E. BentleyReza GhodssiGary W. RubloffJames N. CulverGregory F. Payne

Abstract

The traditional motivation for integrating biological components into microfabricated devices has been to create biosensors that meld the molecular recognition capabilities of biology with the signal processing capabilities of electronic devices. However, a different motivation is emerging; biological components are being explored to radically change how fabrication is achieved at the micro- and nanoscales. Here we review biofabrication, the use of biological materials for fabrication, and focus on three specific biofabrication approaches: directed assembly, where localized external stimuli are employed to guide assembly; enzymatic assembly, where selective biocatalysts are enlisted to build macromolecular structure; and self-assembly, where information internal to the biological material guides its own assembly. Also reviewed are recent results with the aminopolysaccharide chitosan, a material that offers a combination of properties uniquely suited for biofabrication. In particular, chitosan can be directed to assemble in response to locally applied electrical signals, and the chitosan backbone provides sites that can be employed for the assembly of proteins, nucleic acids, and virus particles.

Advanced biosensing and bioanalysis techniquesMolecular Junctions and NanostructuresSupramolecular Self-Assembly in MaterialsBiofabricationNanotechnologyChitosanBiosensorBiological materialsMaterials scienceChemistryTissue engineeringBiochemical engineeringEngineering

MeSH terms

AnimalsBiocompatible MaterialsCatalysisHumansHydrogen-Ion ConcentrationHydrolysisManufactured MaterialsModels, BiologicalModels, ChemicalNucleic Acid HybridizationNucleic AcidsTime FactorsBiosensing TechniquesComputational BiologyBiomimetics

Funding

  • Division of Materials Research
Citations
756
FWCI
8.95
field-weighted impact
References
207
Percentile
99%
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Citations per year
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References
Food applications of chitin and chitosans
Trends in Food Science & Technology · 1999 · 1,814 citations
Integrated Nanoparticle–Biomolecule Hybrid Systems: Synthesis, Properties, and Applications
Angewandte Chemie International Edition · 2004 · 2,425 citations
Fabrication of novel biomaterials through molecular self-assembly
Nature Biotechnology · 2003 · 3,314 citations
Nanoparticles, Proteins, and Nucleic Acids: Biotechnology Meets Materials Science
Angewandte Chemie International Edition · 2001 · 2,380 citations
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