[Application of silk fibroin scaffold in bone tissue engineering].
Shijun Lu, Baoqi Zuo, Hongchen Liu
Abstract
Shijun Lu, Baoqi Zuo, Hongchen Liu
Abstract
OBJECTIVE: To review the application of silk fibroin scaffold in bone tissue engineering. METHODS: The related literature about the application of silk fibroin scaffold in bone tissue engineering was reviewed, analyzed, and summarized. RESULTS: Silk fibroin can be manufactured into many types, such as hydrogel, film, nano-fiber, and three-dimensional scaffold, which have superior biocompatibility, slow biodegradability, nontoxic degradation products, and excellent mechanical strength. Meanwhile these silk fibroin biomaterials can be chemically modified and can be used to carry stem cells, growth factors, and compound inorganic matter. CONCLUSION: Silk fibroin scaffolds can be widely used in bone tissue engineering. But it still needs further study to prepare the scaffold in accordance with the requirement of tissue engineering.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
OBJECTIVE: To review the application of silk fibroin scaffold in bone tissue engineering. METHODS: The related literature about the application of silk fibroin scaffold in bone tissue engineering was reviewed, analyzed, and summarized. RESULTS: Silk fibroin can be manufactured into many types, such as hydrogel, film, nano-fiber, and three-dimensional scaffold, which have superior biocompatibility, slow biodegradability, nontoxic degradation products, and excellent mechanical strength. Meanwhile these silk fibroin biomaterials can be chemically modified and can be used to carry stem cells, growth factors, and compound inorganic matter. CONCLUSION: Silk fibroin scaffolds can be widely used in bone tissue engineering. But it still needs further study to prepare the scaffold in accordance with the requirement of tissue engineering.
Key concepts: Fibroin, Scaffold, Tissue engineering, Biocompatibility, SILK, Materials science, Bone tissue, Biomedical engineering