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Gelatin Microsphere for Cartilage Tissue Engineering: Current and Future Strategies
by
Idrus, Ruszymah Binti Haji
, Sulaiman, Shamsul Bin
, Hwei, Ng Min
in
Amino acids
/ Antibodies
/ Biodegradation
/ Biological products
/ Biomedical materials
/ Biopolymers
/ Cartilage
/ Collagen
/ Drug delivery systems
/ Gelatin
/ Growth factors
/ Humidity
/ Review
/ Stem cells
/ Tissue engineering
2020
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Gelatin Microsphere for Cartilage Tissue Engineering: Current and Future Strategies
by
Idrus, Ruszymah Binti Haji
, Sulaiman, Shamsul Bin
, Hwei, Ng Min
in
Amino acids
/ Antibodies
/ Biodegradation
/ Biological products
/ Biomedical materials
/ Biopolymers
/ Cartilage
/ Collagen
/ Drug delivery systems
/ Gelatin
/ Growth factors
/ Humidity
/ Review
/ Stem cells
/ Tissue engineering
2020
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Do you wish to request the book?
Gelatin Microsphere for Cartilage Tissue Engineering: Current and Future Strategies
by
Idrus, Ruszymah Binti Haji
, Sulaiman, Shamsul Bin
, Hwei, Ng Min
in
Amino acids
/ Antibodies
/ Biodegradation
/ Biological products
/ Biomedical materials
/ Biopolymers
/ Cartilage
/ Collagen
/ Drug delivery systems
/ Gelatin
/ Growth factors
/ Humidity
/ Review
/ Stem cells
/ Tissue engineering
2020
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Gelatin Microsphere for Cartilage Tissue Engineering: Current and Future Strategies
Journal Article
Gelatin Microsphere for Cartilage Tissue Engineering: Current and Future Strategies
2020
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Overview
The gelatin microsphere (GM) provides an attractive option for tissue engineering due to its versatility, as reported by various studies. This review presents the history, characteristics of, and the multiple approaches to, the production of GM, and in particular, the water in oil emulsification technique. Thereafter, the application of GM as a drug delivery system for cartilage diseases is introduced. The review then focusses on the emerging application of GM as a carrier for cells and biologics, and biologics delivery within a cartilage construct. The influence of GM on chondrocytes in terms of promoting chondrocyte proliferation and chondrogenic differentiation is highlighted. Furthermore, GM seeded with cells has been shown to have a high tendency to form aggregates; hence the concept of using GM seeded with cells as the building block for the formation of a complex tissue construct. Despite the advancement in GM research, some issues must still be addressed, particularly the improvement of GM’s ability to home to defect sites. As such, the strategy of intraarticular injection of GM seeded with antibody-coated cells is proposed. By addressing this in future studies, a better-targeted delivery system, that would result in more effective intervention, can be achieved.
Publisher
MDPI AG,MDPI
Subject
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