RRC ID 61951
著者 Carey LE, Xu HH, Simon CG Jr, Takagi S, Chow LC.
タイトル Premixed rapid-setting calcium phosphate composites for bone repair.
ジャーナル Biomaterials
Abstract Although calcium phosphate cement (CPC) is promising for bone repair, its clinical use requires on site powder-liquid mixing. To shorten surgical time and improve graft properties, it is desirable to develop premixed CPC in which the paste remains stable during storage and hardens only after placement into the defect. The objective of this study was to develop premixed CPC with rapid setting when immersed in a physiological solution. Premixed CPCs were formulated using the following approach: Premixed CPC = CPC powder + nonaqueous liquid + gelling agent + hardening accelerator. Three premixed CPCs were developed: CPC-monocalcium phosphate monohydrate (MCPM), CPC-chitosan, and CPC-tartaric. Setting time for these new premixed CPCs ranged from 5.3 to 7.9 min, significantly faster than 61.7 min for a premixed control CPC reported previously (p < 0.05). SEM revealed the formation of nano-sized needle-like hydroxyapatite crystals after 1 d immersion and crystal growth after 7 d. Diametral tensile strength for premixed CPCs at 7 d ranged from 2.8 to 6.4 MPa, comparable to reported strengths for cancellous bone and sintered porous hydroxyapatite implants. Osteoblast cells attained a normal polygonal morphology on CPC-MCPM and CPC-chitosan with cytoplasmic extensions adhering to the nano-hydroxyapatite crystals. In summary, fast-setting premixed CPCs were developed to avoid the powder-liquid mixing in surgery. The pastes hardened rapidly once immersed in physiological solution and formed hydroxyapatite. The cements had strengths matching those of cancellous bone and sintered porous hydroxyapatite and non-cytotoxicity similar to conventional non-premixed CPC.
巻・号 26(24)
ページ 5002-14
公開日 2005-8-1
DOI 10.1016/j.biomaterials.2005.01.015
PII S0142-9612(05)00041-4
PMID 15769536
PMC PMC2645070
MeSH 3T3 Cells Adhesiveness Animals Biocompatible Materials / adverse effects* Biocompatible Materials / analysis Biocompatible Materials / chemistry* Biocompatible Materials / therapeutic use Bone Cements / adverse effects Bone Cements / analysis Bone Cements / chemistry* Bone Cements / therapeutic use Calcium Phosphates / adverse effects* Calcium Phosphates / analysis Calcium Phosphates / chemistry* Calcium Phosphates / therapeutic use Cell Survival / drug effects* Cementation / methods Elasticity Fractures, Bone / drug therapy Hardness Humans Manufactured Materials / analysis Materials Testing Mice Tensile Strength
IF 10.317
リソース情報
ヒト・動物細胞 MC3T3-E1(RCB1126)