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Mineralized polysaccharide capsules as biomimetic microenvironments for cell, gene and growth factor delivery in tissue engineering

Mineralized polysaccharide capsules as biomimetic microenvironments for cell, gene and growth factor delivery in tissue engineering
Mineralized polysaccharide capsules as biomimetic microenvironments for cell, gene and growth factor delivery in tissue engineering
This paper presents an overview of our recent studies on mineralized polysaccharide capsules and their potential as multifunctional scaffolds for the organisation and delivery of human cell types, DNA and growth factors. Microcapsules containing these encapsulates are readily produced at room temperature in the form of alginate beads that are stabilized by an outer shell consisting of an ultra thin chitosan–calcium phosphate membrane. Modulation of the shell thickness and composition influences the rates of release and diffusion of encapsulated cells, growth factors and genes to produce microcapsules with tailored spatial and temporal properties that offer significant potential as novel biomimetic delivery systems in tissue engineering applications such as skeletal tissue repair and regeneration. We demonstrate the use of mineralized microcapsules to enable regeneration from encapsulated human mesenchymal populations, functional quantities of growth factor capture, and gene transfection. Significantly, we highlight the ability to fabricate integrated capsules consisting of spatially separated multiple components in nested combination that may provide phased temporal release of appropriate growth factors, analogous to the natural regeneration process.
gene, growth, tissue engineering, capsules
1744-683X
732-737
Green, David W.
9591e846-aeac-4549-b389-1744c5a43cff
Mann, Stephen
1cbb2d4f-aee2-403c-9950-18bd388f02c0
Oreffo, Richard O.C.
ff9fff72-6855-4d0f-bfb2-311d0e8f3778
Green, David W.
9591e846-aeac-4549-b389-1744c5a43cff
Mann, Stephen
1cbb2d4f-aee2-403c-9950-18bd388f02c0
Oreffo, Richard O.C.
ff9fff72-6855-4d0f-bfb2-311d0e8f3778

Green, David W., Mann, Stephen and Oreffo, Richard O.C. (2006) Mineralized polysaccharide capsules as biomimetic microenvironments for cell, gene and growth factor delivery in tissue engineering. Soft Matter, 2 (9), 732-737. (doi:10.1039/b604786f).

Record type: Article

Abstract

This paper presents an overview of our recent studies on mineralized polysaccharide capsules and their potential as multifunctional scaffolds for the organisation and delivery of human cell types, DNA and growth factors. Microcapsules containing these encapsulates are readily produced at room temperature in the form of alginate beads that are stabilized by an outer shell consisting of an ultra thin chitosan–calcium phosphate membrane. Modulation of the shell thickness and composition influences the rates of release and diffusion of encapsulated cells, growth factors and genes to produce microcapsules with tailored spatial and temporal properties that offer significant potential as novel biomimetic delivery systems in tissue engineering applications such as skeletal tissue repair and regeneration. We demonstrate the use of mineralized microcapsules to enable regeneration from encapsulated human mesenchymal populations, functional quantities of growth factor capture, and gene transfection. Significantly, we highlight the ability to fabricate integrated capsules consisting of spatially separated multiple components in nested combination that may provide phased temporal release of appropriate growth factors, analogous to the natural regeneration process.

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More information

Published date: 2006
Keywords: gene, growth, tissue engineering, capsules

Identifiers

Local EPrints ID: 61180
URI: http://eprints.soton.ac.uk/id/eprint/61180
ISSN: 1744-683X
PURE UUID: 714ca3dd-2e4b-49ca-8b70-62fa479a3128
ORCID for Richard O.C. Oreffo: ORCID iD orcid.org/0000-0001-5995-6726

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Date deposited: 09 Oct 2008
Last modified: 16 Mar 2024 03:11

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Contributors

Author: David W. Green
Author: Stephen Mann

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