ubrata Deb Nath SBUEVA CELINE Awapan Kumar Sarkar S병택 이
In this study, we fabricated a novel micro porous hybrid scaffold of biphasic calcium phosphate (BCP) and a polylectrolyte complex (PEC) of chitosan (CS) and hyaluronic acid (HA). The fabrication process included loading of CS-HA PEC in a bare BCP scaffold followed by lypophilization. SEM observation and porosimetry revealed that the scaffold was full of micro and macro pores with total porosity of more than 60 % and pore size in the range of 20~200μm. The composite scaffold was mechanically stronger than the bare BCP scaffold and was significantly stronger than the CS-HA PEC polymer scaffold. Bone morphogenetic growth factor (BMP-2) was immobilized in CS-HA PEC in order to integrate the osteoinductive potentiality required for osteogenesis. The BCP frame, prepared by sponge replica, worked as a physical barrier that prolonged the BMP-2 release significantly. The preliminary biocompatibility data show improved biological performance of the BMP-2 immobilized hybrid scaffold in the presence of rabbit bone marrow stem cells (rBMSC).
Jing JingRammal HassanMarie DubusRachid RahouadjPauthe EmmanuelVelard FredericJulien BrauxGangloff SophieLarbi SiadKerdjoudj Halima
Valérie BrunC. GuillaumeSaad Mechiche AlamiJérôme JosseJunjun JingFlorence DrauxSylvie BouthorsD. Laurent‐MaquinSophie C. GangloffHalima KerdjoudjFrédéric Velard
Diego Garcia MirandaSônia Maria MalmongeDoris M. CamposNina AttikBrigitte GrosgogeatKerstin Gritsch
Aijun ZuoDongchun LiangPei SunRui ZhangRonglan ZhaoBaoli WangGang GuoJingyu Zhang
Norimasa IwasakiYasuhiko KasaharaShintarou YamaneTatsuya IgarashiAkio MinamiShin-ichiro Nisimura