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Polymer nanoparticles for drug delivery – synthetic vs. biopolymers?
by
Heinze, Thomas
, Gericke, Martin
in
Biocompatibility
/ Biodegradation
/ Biopolymers
/ Cellulose
/ Drug delivery
/ interdisciplinary research
/ Medical equipment
/ Medical materials
/ Molecular structure
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Polymers
/ Polysaccharides
/ Quality standards
/ Saccharides
/ Surface chemistry
/ Therapeutic applications
2021
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Polymer nanoparticles for drug delivery – synthetic vs. biopolymers?
by
Heinze, Thomas
, Gericke, Martin
in
Biocompatibility
/ Biodegradation
/ Biopolymers
/ Cellulose
/ Drug delivery
/ interdisciplinary research
/ Medical equipment
/ Medical materials
/ Molecular structure
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Polymers
/ Polysaccharides
/ Quality standards
/ Saccharides
/ Surface chemistry
/ Therapeutic applications
2021
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Do you wish to request the book?
Polymer nanoparticles for drug delivery – synthetic vs. biopolymers?
by
Heinze, Thomas
, Gericke, Martin
in
Biocompatibility
/ Biodegradation
/ Biopolymers
/ Cellulose
/ Drug delivery
/ interdisciplinary research
/ Medical equipment
/ Medical materials
/ Molecular structure
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Polymers
/ Polysaccharides
/ Quality standards
/ Saccharides
/ Surface chemistry
/ Therapeutic applications
2021
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Polymer nanoparticles for drug delivery – synthetic vs. biopolymers?
Journal Article
Polymer nanoparticles for drug delivery – synthetic vs. biopolymers?
2021
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Overview
Nanoparticles have a great prospect for therapeutic applications. They can protect drugs under physiological conditions and act as a matrix for directed delivery of drugs, e.g., to a specific tissue or cell type. Polymer-based nanomaterials are considered as highly effective in this regard. Their properties can be tailored to meet specific demands for given therapeutic purposes. Considering the high-quality standards placed on medical products, the question arises: Which type of polymer material should be employed? One might select synthetic polymer compounds, which are highly diverse in terms of the molecular structures and supramolecular architectures that can be created, or biopolymers such as polysaccharides that are renowned for their native biocompatibility.
Publisher
North Carolina State University
Subject
/ Polymers
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