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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Increasing strut porosity in silicate-substituted calcium-phosphate bone graft substitutes enhances osteogenesis.
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Increasing strut porosity in silicate-substituted calcium-phosphate bone graft substitutes enhances osteogenesis.

机译:硅酸盐取代的磷酸钙骨移植替代物的撑杆孔隙率增加,可增强成骨作用。

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摘要

Synthetic, porous silicate-substituted calcium phosphate bone graft matrices (SiCaP; 0.8 wt % Si) with varying strut porosity were applied to ovine critical-sized defect sites as either 1-2 mm microgranules (SiCaP-23G, SiCaP-32G, and SiCaP-46G) or 1-2 mm microgranules in an aqueous poloxamer carrier (SiCaP-23P, SiCaP-32P, and SiCaP-46P). Defect sites treated with SiCaP-23G or SiCaP-23P showed evidence of bone formation at 8 and 12 weeks in central zones. More advanced neovascularization and increased bone contact was observed for graft materials with higher strut porosities. At 12 weeks, graft materials with higher strut porosities (32% and 46%) had statistically significantly higher absolute bone volumes (p < 0.05) versus those with a strut porosity of 23%. Absolute bone volume in defects treated with grafts of matched strut porosities as microgranules, or microgranules with poloxamer carrier, were similar at 12 weeks. Absolute graft volume for SiCaP-46 reduced over 12 weeks (not statistically significant). In conclusion, bone formation patterns in critically-sized defects confirm strut porosity to be a clinically relevant property of porous silicate-substituted calcium phosphate bone grafts in promoting osteogenesis. Increasing graft matrix strut porosity encouraged earlier neovascularization and increased the absolute equilibrium volume of bone growth within the graft without compromising graft stability.
机译:将具有不同支杆孔隙率的合成多孔硅酸盐取代的磷酸钙磷酸钙骨移植物基质(SiCaP; 0.8 wt%Si)作为1-2 mm微粒(SiCaP-23G,SiCaP-32G和SiCaP)应用于绵羊临界尺寸的缺损部位-46G)或1-2毫米的微粒在水性泊洛沙姆载体(SiCaP-23P,SiCaP-32P和SiCaP-46P)中。用SiCaP-23G或SiCaP-23P处理的缺损部位显示出在中部区域第8和12周出现骨形成的迹象。对于具有更高支柱孔隙率的移植材料,观察到更先进的新血管形成和增加的骨接触。在第12周时,具有较高孔隙率(32%和46%)的移植材料的绝对骨体积(p <0.05)在统计学上显着高于具有23%的孔隙率的移植物。在第12周时,用匹配的支撑孔隙率的移植物作为微粒或带有泊洛沙姆载体的微粒治疗的缺损中的绝对骨体积相似。 SiCaP-46的绝对移植物体积在12周内减少(无统计学意义)。总之,临界尺寸缺陷中的骨形成模式证实支杆孔隙率是多孔硅酸盐取代的磷酸钙骨移植物在促进成骨方面的临床相关特性。移植物基质支撑物孔隙率的增加鼓励了较早的新生血管形成,并在不损害移植物稳定性的情况下增加了移植物中骨生长的绝对平衡量。

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