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  4. Ligand density on nanoparticles: A parameter with critical impact on nanomedicine
 
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2019
Journal Article
Title

Ligand density on nanoparticles: A parameter with critical impact on nanomedicine

Abstract
Nanoparticles modified with ligands for specific targeting towards receptors expressed on the surface of target cells are discussed in literature towards improved delivery strategies. In such concepts the ligand density on the surface of the nanoparticles plays an important role. How many ligands per nanoparticle are best for the most efficient delivery? Importantly, this number may be different for in vitro and in vivo scenarios. In this review first viruses as ""biological"" nanoparticles are analyzed towards their ligand density, which is then compared to the ligand density of engineered nanoparticles. Then, experiments are reviewed in which in vitro and in vivo nanoparticle delivery has been analyzed in terms of ligand density. These results help to understand which ligand densities should be attempted for better targeting. Finally synthetic methods for controlling the ligand density of nanoparticles are described.
Author(s)
Alkilany, Alaaldin M.
Fachbereich Physik and CHyN, Universität Hamburg, Hamburg, Germany Department of Pharmaceutics & Pharmaceutical Technology, School of Pharmacy, The University of Jordan, Amman 11942, Jordan
Zhu, Lin
Fachbereich Physik and CHyN, Universität Hamburg, Hamburg, Germany
Weller, Horst
Fachbereich Chemie, Universität Hamburg, Hamburg, Germany
Mews, Alf
Fachbereich Chemie, Universität Hamburg, Hamburg, Germany
Parak, Wolfgang J.
Fachbereich Physik and CHyN, Universität Hamburg, Hamburg, Germany Fachbereich Chemie, Universität Hamburg, Hamburg, Germany CIC Biomagune, San Sebastian, Spain
Barz, Matthias
Institut für Organische Chemie, Johannes Gutenberg-Universität Mainz, Mainz, Germany
Feliu, Neus
Fachbereich Physik and CHyN, Universität Hamburg, Hamburg, Germany
Journal
Advanced drug delivery reviews  
Project(s)
CUI: Advanced Imaging of Matter
Funder
Deutsche Forschungsgemeinschaft DFG  
DOI
10.1016/j.addr.2019.05.010
Language
English
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
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