Salt leaching using powder (SLUP) process for glass/chitosan scaffold elaboration for biomaterial applications

被引:0
作者
Jihen Refifi
Hassane Oudadesse
O. Merdrignac-Conanec
Hafed El Feki
Bertrand Lefeuvre
机构
[1] University Rennes,CNRS, ISCR
[2] University of Sfax,UMR 6226
来源
Journal of the Australian Ceramic Society | 2020年 / 56卷
关键词
Bioactive glass; Chitosan; Biomaterial; Salt leaching using powder; Porosity;
D O I
暂无
中图分类号
学科分类号
摘要
Tissue engineering has emerged as an alternative approach to create bone tissue by growing cells on 3D scaffolding. The aim of this study was to synthesize a composite glass/chitosan (BG-CH) by using new salt leaching using powder (SLUP) process in order to control the porosity rate and then the chemical reactivity of the final product. SLUP process consists on the cavity creation with desired pore sizes. It does not require heat treatment. This process is based on washing out the NaCl particles used for that. It is due to its high solubility in aqueous media. This work focuses on the elaboration, physicochemical, and chemical reactivity studies of pure bioactive glass and bioactive glass associated with chitosan. A range of composite scaffolds with different bioactive glass/chitosan contents has been synthesized. NaCl with a distinct range size was used with the aim of optimizing the pore network. Obtained results show that the specific surface area and pore volume increase with increasing of chitosan and porogen content. The same observations for pore volume were registered. The obtained scaffolds had high porosity (90%) with good pore connectivity. SEM images revealed strong dependence of sizes and shapes of pores on the salt/composite ratios.
引用
收藏
页码:1167 / 1178
页数:11
相关论文
共 132 条
  • [1] Mezahi F(2008)Dissolution kinetic and structural behavior of natural hydroxyapatite J. Therm. Anal. Calorim. 95 546-555
  • [2] Oudadesse H(2014) thermal treatment, Comparison to synthetic hydroxyapatite Microporous Mesoporous Mater. 195 102-111
  • [3] Harabi A(2006)Investigation of the surfactant type effect on characteristics and bioactivity of new mesoporous bioactive glass in the ternary system SiO Expert Rev. Med. Dev. 3 49-57
  • [4] Lucas-Girot A(1999) – CaO – P Biomaterials 20 2287-2303
  • [5] Le Gal Y(1996)O J. Chromatogr. A 725 225-235
  • [6] Chaair H(2014): structural, textural and reactivity studies Carbohydr. Polym. 108 232-238
  • [7] Cathelineau G(2012)Bone graft substitutes Int. J. Biol. Macromol. 50 658-663
  • [8] Letaïef N(2000)Bioactive ceramics: the effect of surface reactivity on bone formation and bone cell function Biomaterials 21 2529-2543
  • [9] Lucas-Girot A(2013)Multipoint binding in metal-affinity chromatography II. Effect of pH and imidazole on chromatographic retention of engineered histidine-containing cytochromes c J. Mech. Behav. Biomed. Mater. 18 37-46
  • [10] Oudadesse H(2008)Porous starch/cellulose nanofibers composite prepared by salt leaching technique for tissue engineering Acta Biomater. 6 1611-1619