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in the research of cartilage needed for tissue engineering airway construction...
Time of Update: 2021-09-12
Recently, the international authoritative journal Advanced Science published online the latest research results of the team of Li Fen and Zhang Hao from the National Children’s Medical Center (Shan
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Methodologies for Processing Biodegradable and Natural Origin Scaffolds for Bone and Cartilage Tissue-Engineering Applications
Time of Update: 2021-01-01
The ultimate goal of tissue engineering is to replace, repair or enhance the biological function of damaged, absent or dysfunctional elements of a tissue or an organ.
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Biochemical Methods for the Analysis of Tissue-Engineered Cartilage
Time of Update: 2020-12-26
To date, engineered cartilage studies have mostly relied on histochemical and immunohistochemical methods for the characterization of the engineered cartilage matrix.
In order for cartilage tissue engineering to progress to the clinic, quantitative methods for the analysis of different matrix components will be required to monitor and ensure the quality of engineered cartilage.
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Bioreactor Culture Techniques for Cartilage-Tissue Engineering
Time of Update: 2020-12-26
Tissue engineering is a major focus of biotechnological research today, with the expectation that this type of technique will ultimately transform medical practice ( 1 ).
The most ambitious tissue-engineering schemes assume that specific tissues and organs will be restored, in a multistage fabrication procedure.
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Synthesis and Characterization of Chitosan Scaffolds for Cartilage-Tissue Engineering
Time of Update: 2020-12-23
Chitosan , poly( N -acetyl-2-amino-2-deoxy- d -Gluco-pyranose), is formed through theN -deacetylation of chitin, usually by treatment with strong alkalis (e.g., 50% NaOH) at an elevated temperature.