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Dicalcium Phosphate Anhydrous: An Appropriate Bioceramic in Regeneration of Critical-Sized Radial Bone Defects in Rats

机译:无水磷酸二钙:一种适当的生物陶瓷在大鼠临界大小的桡骨缺陷的再生中

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摘要

The present study aimed to evaluate and compare the effectiveness of composites of calcium phosphates including beta-tri calcium phosphate (beta-TCP), dicalcium phosphate anhydrous (DCPA, monetite), mono-calcium phosphate monohydrate (MCPM), and hydroxyapatite (HA) with the chitosan-gelatin-platelet gel (CGP) on the healing of experimentally induced critical size radial bone defects in rats after 8 weeks of injury. Eighty bilateral bone defects were created in the radial bones of 40 adult male Sprague-Dawley rats. The defects were either left empty (untreated or defect group), or treated with autograft, CGP, CGP-DCP, CGP-TCP, CGP/beta-TCP/DCPA (CGP-TD), CGP-TD/MCPM (CGP-TDM), and CGP-TDM/HA (CGP-TDMH) scaffolds. The injured forelimbs were evaluated by radiography, gross morphology, three-dimensional computed tomography scanning, histopathology, histomorphometry, scanning electron microscopy, and biomechanical testing. The materials were analyzed using X-ray diffraction to verify the crystalline nature of their structures, and their crystallinity was revealed based on the diffraction peaks achieved from the XRD analysis. The best results were achieved by the CGP-DCP scaffold and the autograft. The CGP-TCP and CGP-TDMH scaffolds were not degraded, while the CGP-DCP, CGP-TDM, CGP-TD, and CGP scaffolds were biodegraded and enhanced bone formation compared with the CGP-TCP and CGP-TDMH groups (P < 0.05). Overall, the CGP-DCP treated defects showed significant improvement in bone formation and union, bone volume, maximum load, and stiffness compared to the CGP group (P < 0.05). It could be concluded that the CGP-DCP scaffold can be considered as a suitable substitute to autograft. In fact, this study demonstrated that DCPA or monetite has high healing potential due to its biocompatibility, biodegradability and biomechanical, osteoconductive and osteoinductive properties of this bioceramic.
机译:本研究旨在评估和比较磷酸钙复合物的有效性,包括β-三磷酸钙(β-TCP)、无水磷酸二钙(DCPA、莫奈酸盐)、一水磷酸钙(MCPM),羟基磷灰石(HA)和壳聚糖-明胶-血小板凝胶(CGP)对8周后实验性诱导的大鼠临界尺寸桡骨缺损的愈合作用。在40只成年雄性Sprague-Dawley大鼠的桡骨上制造了80个双侧骨缺损。这些缺损要么空白(未治疗组或缺损组),要么用自体移植、CGP、CGP-DCP、CGP-TCP、CGP/β-TCP/DCPA(CGP-TD)、CGP-TD/MCPM(CGP-TDM)和CGP-TDM/HA(CGP-TDMH)支架治疗。通过放射照相、大体形态学、三维计算机断层扫描、组织病理学、组织形态计量学、扫描电镜和生物力学测试对受伤的前肢进行评估。使用X射线衍射对材料进行分析,以验证其结构的结晶性质,并根据XRD分析获得的衍射峰揭示其结晶度。CGP-DCP支架和自体移植的效果最好。与CGP-TCP和CGP-TDMH组相比,CGP-TCP和CGP-TDMH支架没有降解,而CGP-DCP、CGP-TDM、CGP-TD和CGP支架生物降解并促进骨形成(P<0.05)。总的来说,与CGP组相比,CGP-DCP治疗的骨缺损在骨形成和愈合、骨体积、最大载荷和刚度方面有显著改善(P<0.05)。可以得出结论,CGP-DCP支架可以作为自体移植的合适替代物。事实上,这项研究表明,DCPA或莫奈泰由于其生物相容性、生物降解性以及这种生物陶瓷的生物力学、骨传导性和骨诱导性,具有很高的愈合潜力。

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