Polymer scaffolds as drug delivery systems
[Display omitted] •Polymer scaffolds (PS) as drug delivery systems (DDS) are reviewed.•Their fundamental points, polymer types, and common techniques are included.•Chemical modifications, triggers, and polymer blends can control the drug release.•PS are smart alternatives to traditional DDS to achie...
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Published in | European polymer journal Vol. 129; p. 109621 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
15.04.2020
Elsevier BV |
Subjects | |
Online Access | Get full text |
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Abstract | [Display omitted]
•Polymer scaffolds (PS) as drug delivery systems (DDS) are reviewed.•Their fundamental points, polymer types, and common techniques are included.•Chemical modifications, triggers, and polymer blends can control the drug release.•PS are smart alternatives to traditional DDS to achieve the site-specific release.
Drug delivery scaffolds are smart alternatives to conventional formulations and allow for controlled spatiotemporal releases of active compounds. In several fields of human health, various methods have emerged with natural and synthetic polymers that make the fabrication of new polymer scaffolds possible. This review provides an overview of all recently published studies on the development and application of polymer scaffolds targeting controlled drug delivery in medicinal fields, including regenerative medicine and cancer therapy. The review includes a summary of the most common types of polymers used in drug release scaffolds, polymer scaffold classes, and the most common fabrication methods employed to develop such scaffolds. A detailed overview is provided concerning the strategies used to load drugs into scaffolds and their effects on drug release. A discussion about the strategies applied to modulate drug delivery is introduced. This details polymer blends and responsive releases that target the control of the drug delivery rate. In addition, current examples of their applications are provided. These include anti-inflammatory drugs and growth factors, as well as more recent in vitro and in vivo assays. Finally, future perspectives of these biomedical devices in clinical applications are presented. |
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AbstractList | [Display omitted]
•Polymer scaffolds (PS) as drug delivery systems (DDS) are reviewed.•Their fundamental points, polymer types, and common techniques are included.•Chemical modifications, triggers, and polymer blends can control the drug release.•PS are smart alternatives to traditional DDS to achieve the site-specific release.
Drug delivery scaffolds are smart alternatives to conventional formulations and allow for controlled spatiotemporal releases of active compounds. In several fields of human health, various methods have emerged with natural and synthetic polymers that make the fabrication of new polymer scaffolds possible. This review provides an overview of all recently published studies on the development and application of polymer scaffolds targeting controlled drug delivery in medicinal fields, including regenerative medicine and cancer therapy. The review includes a summary of the most common types of polymers used in drug release scaffolds, polymer scaffold classes, and the most common fabrication methods employed to develop such scaffolds. A detailed overview is provided concerning the strategies used to load drugs into scaffolds and their effects on drug release. A discussion about the strategies applied to modulate drug delivery is introduced. This details polymer blends and responsive releases that target the control of the drug delivery rate. In addition, current examples of their applications are provided. These include anti-inflammatory drugs and growth factors, as well as more recent in vitro and in vivo assays. Finally, future perspectives of these biomedical devices in clinical applications are presented. Drug delivery scaffolds are smart alternatives to conventional formulations and allow for controlled spatiotemporal releases of active compounds. In several fields of human health, various methods have emerged with natural and synthetic polymers that make the fabrication of new polymer scaffolds possible. This review provides an overview of all recently published studies on the development and application of polymer scaffolds targeting controlled drug delivery in medicinal fields, including regenerative medicine and cancer therapy. The review includes a summary of the most common types of polymers used in drug release scaffolds, polymer scaffold classes, and the most common fabrication methods employed to develop such scaffolds. A detailed overview is provided concerning the strategies used to load drugs into scaffolds and their effects on drug release. A discussion about the strategies applied to modulate drug delivery is introduced. This details polymer blends and responsive releases that target the control of the drug delivery rate. In addition, current examples of their applications are provided. These include anti-inflammatory drugs and growth factors, as well as more recent in vitro and in vivo assays. Finally, future perspectives of these biomedical devices in clinical applications are presented. |
ArticleNumber | 109621 |
Author | Tedesco, Antonio Claudio de Jesus, Priscila da Costa Carvalho Bi, Hong Calori, Italo Rodrigo Braga, Gustavo |
Author_xml | – sequence: 1 givenname: Italo Rodrigo surname: Calori fullname: Calori, Italo Rodrigo organization: Department of Chemistry, Research Nucleus in Photodynamic Systems, State University of Maringá, Av. Colombo 5790, Maringá, Paraná 97020-900, Brazil – sequence: 2 givenname: Gustavo surname: Braga fullname: Braga, Gustavo organization: Department of Chemistry, Research Nucleus in Photodynamic Systems, State University of Maringá, Av. Colombo 5790, Maringá, Paraná 97020-900, Brazil – sequence: 3 givenname: Priscila da Costa Carvalho surname: de Jesus fullname: de Jesus, Priscila da Costa Carvalho organization: University of São Paulo, Polytechnic School. Av. Prof. Lineu Prestes, 580, Building Semi-Industrial University City, 05434070 São Paulo, SP, Brazil – sequence: 4 givenname: Hong surname: Bi fullname: Bi, Hong organization: School of Chemistry and Chemical Engineering, Anhui Key Laboratory of Modern Biomanufacturing, Anhui University, Hefei 230601, China – sequence: 5 givenname: Antonio Claudio surname: Tedesco fullname: Tedesco, Antonio Claudio email: atedesco@usp.br organization: School of Chemistry and Chemical Engineering, Anhui Key Laboratory of Modern Biomanufacturing, Anhui University, Hefei 230601, China |
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•Polymer scaffolds (PS) as drug delivery systems (DDS) are reviewed.•Their fundamental points, polymer types, and common techniques are... Drug delivery scaffolds are smart alternatives to conventional formulations and allow for controlled spatiotemporal releases of active compounds. In several... |
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SubjectTerms | Active control Biomaterials Biomedical materials Bone regeneration Cancer therapies Drug delivery systems Electrospinning Formulations Growth factors Injectables Polymer blends Polymeric implants Polymers Scaffolds |
Title | Polymer scaffolds as drug delivery systems |
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