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Bone Regeneration with Wharton's Jelly-Bioceramic-Bioglass Composite

机译:用沃顿果冻 - 生物陶瓷 - 生物胶复合材料进行骨再生

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The aim of this development is to optimize a bone substitute (BS) for use in tissue engineering. This is achieved through the combination of three phases in a biocomposite (BCO), in which each is reabsorbed in the site of implantation and replaced by autologous bone (patient's own). The inorganic phases are composed of irregular particles (150-300 microns) obtained by milling and sieving of a biphasic bioceramic (BC) of hydroxyapatite (HA of bovine origin) with 40 % (wt.) β-tricalcium phosphate (β-TCP, obtained by chemical synthesis) and Bioglass type 45S5 (45SiO2-24,5CaO -24,5Na2O -6P2O5, in % wt.). Instead, the organic phase consists of collagen extracted from Wharton's jelly (part of the human embryonic tissue) from physical and chemical self-developed process. The BC is produced by mixture of HA and P-TCP (< 45μm) and molding by gelcasting with albumin in aqueous solutions, drying and sintering at 1200°C for 2 hours. The BG is obtained from the mixture of the oxides, melting at 1350°C and cast onto metal. Each phase and BCO is subjected to studies by electron microscopy (SEM and EDS), X-ray diffraction (DRX) and infrared spectrometry (FT-IR). The biocompatibility is evaluated by in vivo studies using the laminar implant model in Wistar rats (n=40). Histological samples show high biocompatibility and ability to integrate with the bone tissue. 30 days after implantation, the material is completely reabsorbed and the bone regeneration process starts, the primary objective. The process developed allows the synthesis of a new BS with excellent biological properties for clinical use.
机译:该开发的目的是优化用于组织工程的骨替代(BS)。这是通过在生物复合材料(BCO)中的三个阶段的组合来实现的,其中每种阶段在植入部位中重新吸收并被自体骨(患者自己)替换。无机阶段由通过铣削和筛分羟基磷灰石(牛来源的HA)的双相杀菌(BC)而获得的不规则颗粒(150-300微米)与40%(wt。)β-三核磷酸钙(β-TCP,通过化学合成获得)和Beoglass型45S5(45SiO 2-24,5caO -24,5Na 2 O -6P2O5,在%wt中)。相反,有机阶段由从沃顿果冻(人胚组织的一部分)中提取的胶原蛋白从物理和化学自我开发过程中组成。该BC通过HA和P-TCP(<45μm)的混合物制备,并通过用白蛋白在水溶液中凝胶化,在​​1200℃下干燥和烧结2小时。将Bg从氧化物的混合物中获得,在1350℃下熔化并浇铸金属。通过电子显微镜(SEM和EDS),X射线衍射(DRX)和红外光谱法(FT-IR)进行每个阶段和BCO。通过使用Wistar大鼠的层状植入模型(n = 40),通过体内研究评估生物相容性(n = 40)。组织学样品显示出高生物相容性和与骨组织整合的能力。植入后30天,材料完全重新吸收,骨再生过程开始,主要目的。该过程开发允许合成具有出色的生物学性质的新BS,用于临床用途。

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