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Intrinsically Disordered Synthetic Polymers in Biomedical Applications
by
Kasem, Haytam
, Uversky, Vladimir N.
, Coskuner-Weber, Orkid
, Domb, Abraham (Avi) J.
, Yuce-Erarslan, Elif
in
3-D printers
/ Amino acids
/ Artificial organs
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Chemical bonds
/ Chemical properties
/ Clinical outcomes
/ Design
/ Dimensional stability
/ Drug delivery systems
/ Drugs
/ Growth factors
/ Immune system
/ Immunosuppressive agents
/ Inflammation
/ Mechanical properties
/ Polymer industry
/ Polymers
/ Proteins
/ Review
/ Success
/ Technology application
/ Tissue engineering
/ Transplantation
/ Transplantation of organs, tissues, etc
/ Vehicles
2023
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Intrinsically Disordered Synthetic Polymers in Biomedical Applications
by
Kasem, Haytam
, Uversky, Vladimir N.
, Coskuner-Weber, Orkid
, Domb, Abraham (Avi) J.
, Yuce-Erarslan, Elif
in
3-D printers
/ Amino acids
/ Artificial organs
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Chemical bonds
/ Chemical properties
/ Clinical outcomes
/ Design
/ Dimensional stability
/ Drug delivery systems
/ Drugs
/ Growth factors
/ Immune system
/ Immunosuppressive agents
/ Inflammation
/ Mechanical properties
/ Polymer industry
/ Polymers
/ Proteins
/ Review
/ Success
/ Technology application
/ Tissue engineering
/ Transplantation
/ Transplantation of organs, tissues, etc
/ Vehicles
2023
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Intrinsically Disordered Synthetic Polymers in Biomedical Applications
by
Kasem, Haytam
, Uversky, Vladimir N.
, Coskuner-Weber, Orkid
, Domb, Abraham (Avi) J.
, Yuce-Erarslan, Elif
in
3-D printers
/ Amino acids
/ Artificial organs
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Chemical bonds
/ Chemical properties
/ Clinical outcomes
/ Design
/ Dimensional stability
/ Drug delivery systems
/ Drugs
/ Growth factors
/ Immune system
/ Immunosuppressive agents
/ Inflammation
/ Mechanical properties
/ Polymer industry
/ Polymers
/ Proteins
/ Review
/ Success
/ Technology application
/ Tissue engineering
/ Transplantation
/ Transplantation of organs, tissues, etc
/ Vehicles
2023
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Intrinsically Disordered Synthetic Polymers in Biomedical Applications
Journal Article
Intrinsically Disordered Synthetic Polymers in Biomedical Applications
2023
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Overview
In biology and medicine, intrinsically disordered synthetic polymers bio-mimicking intrinsically disordered proteins, which lack stable three-dimensional structures, possess high structural/conformational flexibility. They are prone to self-organization and can be extremely useful in various biomedical applications. Among such applications, intrinsically disordered synthetic polymers can have potential usage in drug delivery, organ transplantation, artificial organ design, and immune compatibility. The designing of new syntheses and characterization mechanisms is currently required to provide the lacking intrinsically disordered synthetic polymers for biomedical applications bio-mimicked using intrinsically disordered proteins. Here, we present our strategies for designing intrinsically disordered synthetic polymers for biomedical applications based on bio-mimicking intrinsically disordered proteins.
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