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首页> 外文期刊>Journal of biomaterials applications >In vivo comparison of a granular and putty form of a sintered and a non-sintered silica-enhanced hydroxyapatite bone substitute material
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In vivo comparison of a granular and putty form of a sintered and a non-sintered silica-enhanced hydroxyapatite bone substitute material

机译:体内比较烧结和非烧结二氧化硅增强羟基磷灰石骨替代材料的粒状和腻子形式

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摘要

Improved handling characteristics of bone substitute materials may facilitate surgical handling. However, the respective modifications should not alter the biological activity. For comparison of a granular and a putty form of two silica-enhanced bone substitute materials, in 30 rabbits, bilateral bone defects were created in the femoral condyle and randomly filled with (1) sintered, silica-enhanced (0.8 wt%) hydroxyapatite (ACg, n = 15); (2) ACg plus resorbable polymer (ACp, n = 15); (3) non-sintered silica-enhanced hydroxyapatite (hydroxyapatite/SiO2 ratio:61:39 wt%; NBg, n = 15); and (4) NBg plus matrix of resorbable polymer (NBp, n = 15). After 4, 8, and 12 weeks, respectively, new-formed bone, remaining bone substitute materials, and amount of soft tissue were quantified histomorphometrically. After four weeks, new-formed bone was increased for NBg/NBp in which NBp showed significantly less remaining bone substitute materials when compared to ACg. After two months, the highest amount of new-formed bone and the least remaining bone substitute materials were seen for NBg and NBp. ACp had less remaining bone substitute material when compared to ACg. In addition, amount of soft tissue was significantly enhanced in NBp when compared to ACg and NBg. After 12 weeks, NBp had significantly lower remaining bone substitute material when compared to ACg. Amount of soft tissue was significantly increased in NBp when compared to ACg and NBg. In accordance, based on an early increase of new-formed bone, a lower amount of remaining bone substitute material, and as well as a distinct degradation, superiority of the non-sintered bone substitute material to the sintered bone substitute material was seen. The effect of the resorbable polymer to each bone substitute material can be supposed to be rather marginal.
机译:改进的骨代替材料的处理特性可以促进手术处理。然而,各自的修饰不应改变生物活性。为了比较两种二氧化硅增强骨替代材料的粒状和腻子形式,在30只兔子中,在股骨髁上产生双侧骨缺损,随机填充(1)烧结,二氧化硅增强(0.8wt%)羟基磷灰石( acg,n = 15); (2)ACG加可再吸收性聚合物(ACP,N = 15); (3)非烧结二氧化硅增强羟基磷灰石(羟基磷灰石/ SiO 2比例:61:39wt%; NBG,N = 15); (4)NBG Plus可再吸收聚合物的基质(NBP,N = 15)。在4,8和12周之后,分别是新成形的骨,剩余的骨替代材料和软组织的量占组织素。在四周后,对于NBG / NBP,新成分的骨增加,其中NBP与ACG相比,NBP显示出明显较低的骨替代材料。两个月后,为NBG和NBP看到最多的新成立骨骼和最剩余的骨替代材料。与ACG相比,ACP含有较少的骨替代材料。此外,与ACG和NBG相比,NBP在NBP中显着增强了软组织的量。 12周后,与ACG相比,NBP在剩余的骨替代材料中显着降低。与ACG和NBG相比,NBP的软组织量显着增加。根据新型骨的早期增加,较低量的剩余骨替代材料,以及不同的降解,未烧结骨替代材料的优越性被观察到烧结骨替代材料。可再吸收性聚合物对每个骨代替材料的影响应该是相当边缘的。

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