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Nanocomposite hydrogels for biomedical applications

Biotechnology and Bioengineering · 2013 · Vol. 111(3) · pp. 441–453
Akhilesh K. GaharwarNicholas A. PeppasAli Khademhosseini

Abstract

Hydrogels mimic native tissue microenvironment due to their porous and hydrated molecular structure. An emerging approach to reinforce polymeric hydrogels and to include multiple functionalities focuses on incorporating nanoparticles within the hydrogel network. A wide range of nanoparticles, such as carbon-based, polymeric, ceramic, and metallic nanomaterials can be integrated within the hydrogel networks to obtain nanocomposites with superior properties and tailored functionality. Nanocomposite hydrogels can be engineered to possess superior physical, chemical, electrical, and biological properties. This review focuses on the most recent developments in the field of nanocomposite hydrogels with emphasis on biomedical and pharmaceutical applications. In particular, we discuss synthesis and fabrication of nanocomposite hydrogels, examine their current limitations and conclude with future directions in designing more advanced nanocomposite hydrogels for biomedical and biotechnological applications.

Hydrogels: synthesis, properties, applicationsGraphene and Nanomaterials Applications3D Printing in Biomedical ResearchSelf-healing hydrogelsNanocompositeNanotechnologyMaterials scienceNanomaterialsNanoparticleFabricationPolymer chemistry

MeSH terms

Technology, PharmaceuticalHydrogelsBiomedical TechnologyNanotechnologyNanocomposites

Funding

  • National Science Foundation
  • National Institutes of Health
Citations
1,167
FWCI
18.28
field-weighted impact
References
63
Percentile
100%
vs. same field & year
Citations per year
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