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Premixed rapid-setting calcium phosphate composites for bone repair

机译:预混合的速凝磷酸钙复合材料用于骨骼修复

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摘要

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<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.
机译:尽管磷酸钙骨水泥(CPC)有望用于骨修复,但其临床应用需要现场进行粉末-液体混合。为了缩短手术时间并改善移植物性能,需要开发预混合的CPC,其中糊剂在储存过程中保持稳定,仅在置入缺陷后才变硬。这项研究的目的是开发一种浸泡在生理溶液中时能快速凝固的预混合CPC。使用以下方法配制预混合的CPC:预混合的CPC = CPC粉末+非水液体+胶凝剂+硬化促进剂。开发了三种预混合的CPC:CPC-一水合磷酸一钙(MCPM),CPC-壳聚糖和CPC-酒石酸。这些新的预混合每次点击费用的设置时间为5.3至7.9分钟,明显快于先前报告的预混合对照每次点击费用的61.7分钟(p <05)。扫描电镜显示浸入1 d后形成纳米级针状羟基磷灰石晶体,结晶7 d后生长。预混CPC在7 d时的径向拉伸强度范围为2.8到6.4 MPa,与报道的松质骨和烧结多孔羟基磷灰石植入物的强度相当。成骨细胞在CPC-MCPM和CPC-壳聚糖上达到正常的多边形形态,其胞质延伸附着在纳米羟基磷灰石晶体上。总之,开发了快速设置的预混合CPC来避免手术中的粉末-液体混合。一旦浸入生理溶液并形成羟基磷灰石,糊状物便迅速硬化。该水泥具有与松质骨和多孔羟基磷灰石烧结相匹配的强度,并且无细胞毒性,类似于常规的非预混合CPC。

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