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首页> 外文期刊>Journal of biomedical materials research, Part A >Injectable Nanocrystalline Hydroxyapatite Paste for Bone Substitution: In Vivo Analysis of Biocompatibility and Vascularization
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Injectable Nanocrystalline Hydroxyapatite Paste for Bone Substitution: In Vivo Analysis of Biocompatibility and Vascularization

机译:注射用纳米晶羟基磷灰石骨替代骨:生物相容性和血管化的体内分析。

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摘要

The nanocrystalline hydroxyapatite paste Ostim represents a fully degradable synthetic bone substitute for the filling of bone defects. Herein, we investigated in vivo the inflammatory and angiogenic host tissue response to this biomaterial after implantation. For this purpose, Ostim was implanted into the dorsal skinfold chambers of Syrian golden hamsters. The hydroxyapatite ceramic Cerabone and isogeneic transplanted cancellous bone served as controls. Angiogenesis, microhemodynamics, microvascular permeability, and leukocyte-endothelial cell interaction of the host tissue were analyzed over 2 weeks using intravital fluorescence microscopy. Ostim exhibited good biocompatibility comparable to that of Cerabone and cancellous bone, as indicated by a lack of venular leukocyte activation after implantation. Cancellous bone induced a more pronounced angiogenic response and an increased microvessel density when compared with the synthetic bone substitutes. In contrast to Cerabone, however, Ostim showed a guided neovascularization directed toward areas of degradation. Histology confirmed the ingrowth of proliferating vascularized tissue into the hydroxyapatite paste at sites of degradation, while the hydroxyapatite ceramic was not pierced by new microvessels. Thus, Ostim represents an injectable synthetic bone substitute, which may optimize the conditions for the formation of new bone at sites of bone defects by supporting a guided vascularization during biodegradation.
机译:纳米晶羟基磷灰石糊剂Ostim代表了一种完全可降解的合成骨替代品,用于填充骨缺损。在本文中,我们在体内研究了植入后对该生物材料的炎症和血管生成宿主组织反应。为此,将Ostim植入叙利亚金仓鼠的背部皮褶室。羟基磷灰石陶瓷Cerabone和同种异体移植的松质骨作为对照。使用活体荧光显微镜分析宿主组织的血管生成,微血流动力学,微血管通透性和宿主组织的白细胞-内皮细胞相互作用。 Ostim表现出与Cerabone和松质骨相当的良好生物相容性,植入后缺乏静脉白细胞活化表明。与合成的骨替代物相比,松质骨诱导更明显的血管生成反应和增加的微血管密度。与Cerabone相比,Ostim表现出针对降解区域的引导性新血管形成。组织学证实,在退化部位,血管组织向内生长到羟基磷灰石糊中,而羟基磷灰石陶瓷没有被新的微血管刺穿。因此,Ostim代表了一种可注射的合成骨替代物,可以通过在生物降解过程中支持引导的血管形成来优化在骨缺损部位形成新骨的条件。

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