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Evaluation of Natural Calcium Carbonate with Surface Modification as a Bone Graft Substitute

机译:用骨移植替代品评价用表面改性的天然碳酸钙

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The objective of this study was to evaluate the biocompatibility and effects of the particulated and surface modified Ostrich eggshell (OES) as bone graft substitutes in healing of calvarial defects in rats. Additionally we compared the bone forming ability of the surface modified OES to that of BioCoral (Inoteb, France), which has the same chemical compositions as OES, calcium carbonate (CaCO3). Surface modified OES particles were fabricated by alkaline etching (microroughened-OES) and biomimetic calcium phosphate coating (CaP coated-OES). 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay was performed to evaluate cell viability at 1, 4, and 7days using ROS 17/2.8 cells, a rat osteosarcoma cell line. To evaluate the bone forming ability, surface modified OES and BioCoral were filled in the calvarial defects of fourteen adult male Sprague-Dawley rats. After 4 weeks of healing, animals were sacrificed and evaluated histologically and histomorphometrically. The MTT assay indicated the increases in viable cell numbers of all groups according to the time, and significantly increased cell numbers were observed on CaP coated-OES and BioCoral at 7 day (P<0.01). The histomorphometric results showed that significantly increased amount of new bone formation in the microroughened-OES, CaP coated-OES, and BioCoral grafted defects compared with unfilled defects (P<0.0001). The degree of ossification was most prominent in CaP coated-OES grafted defects. The results of this study suggest that surface modified OES particles are biocompatible and yield favorable bone formation in rat calvarial defects. In conclusion, surface modified OES grafts may be considered as effective osteoconductive grafting materials, but further studies are needed to produce more optimal surface modification and confirm long-term results.
机译:本研究的目的是评估在大鼠颅盖缺损愈合的生物相容性和颗粒状和表面改性的鸵鸟蛋壳(OES)的作用效果的骨移植替代品。此外,我们比较了表面改性的OES到​​骨形成能力的是BioCoral(Inoteb,法国),其具有相同的化学组合物中作为OES,碳酸钙(CaCO 3)的。表面改性OES颗粒通过碱性蚀刻制造(microroughened-OES)和仿生磷酸钙涂层(CAP包衣-OES)。 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基溴化四唑进行(MTT)测定法中以1,4,以及使用ROS 17 / 2.8细胞,大鼠骨肉瘤细胞系7天来评估细胞生存力。为了评估骨形成能力,表面改性OES和BioCoral填充到十四成年雄性SD大鼠颅骨缺损。 4周愈合后,动物处死,组织学和组织形态计量学评价。 MTT测定根据时间指示各组的存活细胞数的增加,并且未观察到对涂覆的CaP-OES和BioCoral在第7天(P <0.01)显著增加的细胞数量。的组织形态计量学结果表明,增加显著的新骨形成在microroughened-OES量,涂覆的CaP-OES和BioCoral接枝缺损未填充的缺陷(P <0.0001)相比。骨化程度是嫁接缺陷的CaP涂层-OES最为突出。这项研究的结果表明,表面改性的粒子OES是生物相容的,并产生在大鼠颅盖缺损有利的骨形成。总之,表面改性的接枝物OES可被认为是有效的骨传导性移植材料,但还需要进一步研究,以产生更优化的表面改性和确认长期结果。

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