4.7 Article

LbL Nano-Assemblies: A Versatile Tool for Biomedical and Healthcare Applications

Journal

NANOMATERIALS
Volume 12, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/nano12060949

Keywords

layer-by-layer; polyelectrolyte; nano-assembly; electrostatic interactions; polysaccharides; proteins; drug delivery; tissue engineering

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This review provides an overview of polyelectrolytes (PEs) research and applications. PE films prepared by layer-by-layer (LbL) approach offer precise control over properties and have wide biomedical applications. The review highlights the design and fabrication research of nanofilms and discusses their applications in the biomedical field.
Polyelectrolytes (PEs) have been the aim of many research studies over the past years. PE films are prepared by the simple and versatile layer-by-layer (LbL) approach using alternating assemblies of polymer pairs involving a polyanion and a polycation. The adsorption of the alternating PE multiple layers is driven by different forces (i.e., electrostatic interactions, H-bonding, charge transfer interactions, hydrophobic forces, etc.), which enable an accurate control over the physical properties of the film (i.e., thickness at the nanoscale and morphology). These PE nano-assemblies have a wide range of biomedical and healthcare applications, including drug delivery, protein delivery, tissue engineering, wound healing, and so forth. This review provides a concise overview of the most outstanding research on the design and fabrication of PE nanofilms. Their nanostructures, molecular interactions with biomolecules, and applications in the biomedical field are briefly discussed. Finally, the perspectives of further research directions in the development of LbL nano-assemblies for healthcare and medical applications are highlighted.

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