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Comparison of a xenogeneic and an alloplastic material used in dental implants in terms of physico-chemical characteristics and in vivo inflammatory response

机译:在物理化学特征和体内炎症反应方面比较牙种植体中使用的异种和异种材料

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摘要

Two commercial bone grafts used in dentistry (Osteobiol Gen-Os®, a xenograft of porcine origin, and Bonelike®, a hydroxyapatite based synthetic material), in the form of granules, were characterized and evaluated in vivo regarding the intensity of the tissue inflammatory response. These biomaterials were characterized in terms of morphology, particle size distribution, porosity and pore size, specific surface area and density. The chemical composition and structure of the materials were accessed by Fourier-Transform Infrared Spectroscopy (FTIR) and X-ray Diffraction (XRD). The graft materials were implanted in the gluteus maximus muscles of Wistar rats and the inflammatory response was evaluated through histological analysis, after one week of implantation.The results showed that the two grafts have quite different characteristics in practically all the evaluated properties. While Osteobiol® exhibits a structure and composition similar to the natural bone, Bonelike® is constituted by a main crystalline phase of hydroxyapatite and two secondary phases of α- and β-tricalcium phosphate. Osteobiol® granules, besides being larger, are irregular, and exhibit sharp-edged tips, while those of Bonelike® are approximately cylindrical, with round contours, and more uniform in size. The in vivo response evaluated from the inflammatory infiltrates revealed that although both implants did not cause severe inflammation, Bonelike® granules elicit a consistently more intense inflammatory reaction than that triggered by the granules of Osteobiol®, particularly in terms of collagen production and formation of fibrous capsule. This reaction was partly explained in terms of the characteristics evaluated for the granules of this material.
机译:以颗粒形式表征了两种用于牙科的商用骨移植物(猪源异种移植物OsteobiolGen-Os®和基于羟基磷灰石的合成材料Bonelike®),并在体内评估了组织炎症的强度响应。这些生物材料的特征在于形态,粒度分布,孔隙率和孔径,比表面积和密度。通过傅立叶变换红外光谱(FTIR)和X射线衍射(XRD)访问材料的化学成分和结构。将植入的材料植入Wistar大鼠的臀大肌中,并在植入1周后通过组织学分析评估其炎症反应,结果表明这两种移植物在几乎所有评估的特性上都有很大的不同。虽然Osteobiol®的结构和组成与天然骨骼相似,但Bonelike®由羟基磷灰石的主晶相和磷酸α-和β-三钙的两个第二相组成。 Osteobiol®颗粒除了较大之外,还不规则且具有锋利的尖端,而Bonelike®的颗粒近似呈圆柱形,具有圆形轮廓,并且尺寸更均匀。从炎症浸润物中评估的体内反应表明,尽管两种植入物均未引起严重的炎症,但Bonelike®颗粒引起的炎症反应始终比由Osteobiol®颗粒引发的炎症反应更为强烈,特别是在胶原蛋白生成和纤维形成方面胶囊。根据对该材料的颗粒评价的特性部分解释了该反应。

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