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Biodegradable composite scaffolds of bioactive glass/chitosan/carboxymethyl cellulose for hemostatic and bone regeneration.

Abstract
Hemostasis in orthopedic osteotomy or bone cutting requires different methods and materials. The bleeding of bone marrow can be mostly stopped by bone wax. However, the wax cannot be absorbed, which leads to artificial prosthesis loosening, foreign matter reaction, and infection. Here, a bioactive glass/chitosan/carboxymethyl cellulose (BG/CS/CMC) composite scaffold was designed to replace traditional wax. WST-1 assay indicated the BG/CS/CMC composite resulted in excellent biocompatibility with no cytotoxicity. In vivo osteogenesis assessment revealed that the BG/CS/CMC composite played a dominant role in bone regeneration and hemostasis. The BG/CS/CMC composite had the same hemostasis effect as bone wax; in addition its biodegradation also led to the functional reconstruction of bone defects. Thus, BG/CS/CMC scaffolds can serve as a potential material for bone repair and hemostasis in critical-sized bone defects.
AuthorsChen Chen, Hong Li, Jianfeng Pan, Zuoqin Yan, Zhenjun Yao, Wenshuai Fan, Changan Guo
JournalBiotechnology letters (Biotechnol Lett) Vol. 37 Issue 2 Pg. 457-65 (Feb 2015) ISSN: 1573-6776 [Electronic] Netherlands
PMID25326173 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Chemical References
  • Bone Substitutes
  • Hemostatics
  • Chitosan
  • Carboxymethylcellulose Sodium
Topics
  • Animals
  • Bone Regeneration
  • Bone Substitutes (chemistry)
  • Carboxymethylcellulose Sodium (chemistry, pharmacology)
  • Cell Survival
  • Cells, Cultured
  • Chitosan (chemistry, pharmacology)
  • Femur (drug effects, injuries, pathology, surgery)
  • Glass (chemistry)
  • Hemostatics (chemistry, pharmacology)
  • Mesenchymal Stem Cells
  • Rabbits
  • Tissue Engineering (methods)
  • Tissue Scaffolds (chemistry)

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