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Cartilage Tissue Engineering

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Cover of 'Cartilage Tissue Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Cartilage Tissue Engineering
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    Chapter 2 Cartilage Tissue Engineering
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    Chapter 3 Mesenchymal Stem Cells Derived from Human Bone Marrow
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    Chapter 4 Cartilage Tissue Engineering
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    Chapter 5 Derivation and Chondrogenic Commitment of Human Embryonic Stem Cell-Derived Mesenchymal Progenitors
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    Chapter 6 Differentiation of Human Induced Pluripotent Stem Cells to Chondrocytes
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    Chapter 7 Gene Transfer and Gene Silencing in Stem Cells to Promote Chondrogenesis
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    Chapter 8 Hydrogels with Tunable Properties
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    Chapter 9 Decellularized Extracellular Matrix Scaffolds for Cartilage Regeneration
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    Chapter 10 Use of Interim Scaffolding and Neotissue Development to Produce a Scaffold-Free Living Hyaline Cartilage Graft
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    Chapter 11 Bioprinted Scaffolds for Cartilage Tissue Engineering.
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    Chapter 12 Scaffolds for Controlled Release of Cartilage Growth Factors
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    Chapter 13 Nanostructured Capsules for Cartilage Tissue Engineering
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    Chapter 14 Stratified Scaffolds for Osteochondral Tissue Engineering
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    Chapter 15 Mechanobioreactors for Cartilage Tissue Engineering
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    Chapter 16 Cartilage Tissue Engineering
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    Chapter 17 Microbioreactors for Cartilage Tissue Engineering
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    Chapter 18 Transplantation of Tissue-Engineered Cartilage in an Animal Model (Xenograft and Autograft): Construct Validation.
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    Chapter 19 Cartilage Tissue Engineering
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    Chapter 20 Mechanical Testing of Cartilage Constructs
Attention for Chapter 12: Scaffolds for Controlled Release of Cartilage Growth Factors
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Chapter title
Scaffolds for Controlled Release of Cartilage Growth Factors
Chapter number 12
Book title
Cartilage Tissue Engineering
Published in
Methods in molecular biology, January 2015
DOI 10.1007/978-1-4939-2938-2_12
Pubmed ID
Book ISBNs
978-1-4939-2937-5, 978-1-4939-2938-2
Authors

Marie Morille, Marie-Claire Venier-Julienne, Claudia N. Montero-Menei

Abstract

In recent years, cell-based therapies using adult stem cells have attracted considerable interest in regenerative medicine. A tissue-engineered construct for cartilage repair should provide a support for the cell and allow sustained in situ delivery of bioactive factors capable of inducing cell differentiation into chondrocytes. Pharmacologically active microcarriers (PAMs), made of biodegradable and biocompatible poly (D,L-lactide-co-glycolide acid) (PLGA), are a unique system which combines these properties in an adaptable and simple microdevice. This device relies on nanoprecipitation of proteins encapsulated in polymeric microspheres with a solid in oil in water emulsion-solvent evaporation process, and their subsequent coating with extracellular matrix protein molecules. Here, we describe their preparation process, and some of their characterization methods for an application in cartilage tissue engineering.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 16 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 16 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 2 13%
Researcher 2 13%
Student > Ph. D. Student 2 13%
Unspecified 1 6%
Student > Bachelor 1 6%
Other 2 13%
Unknown 6 38%
Readers by discipline Count As %
Pharmacology, Toxicology and Pharmaceutical Science 2 13%
Biochemistry, Genetics and Molecular Biology 2 13%
Engineering 2 13%
Agricultural and Biological Sciences 1 6%
Unspecified 1 6%
Other 2 13%
Unknown 6 38%