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首页> 外文期刊>Biomaterials >Combination of BMP-2-releasing gelatin/beta-TCP sponges with autologous bone marrow for bone regeneration of X-ray-irradiated rabbit ulnar defects
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Combination of BMP-2-releasing gelatin/beta-TCP sponges with autologous bone marrow for bone regeneration of X-ray-irradiated rabbit ulnar defects

机译:BMP-2释放明胶/β-TCP海绵与自体骨髓的组合X射线辐照兔ULNAR缺陷的骨髓再生

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摘要

The objective of this study is to evaluate the feasibility of gelatin sponges incorporating beta-tricalcium phosphate (beta-TCP) granules (gelatin/beta-TCP sponges) to enhance bone regeneration at a segmental ulnar defect of rabbits with X-ray irradiation. After X-ray irradiation of the ulnar bone, segmental critical-sized defects of 20-mm length were created, and bone morphogenetic protein-2 (BMP-2)-releasing gelatin/beta-TCP sponges with or without autologous bone marrow were applied to the defects to evaluate bone regeneration. Both gelatin/beta-TCP sponges containing autologous bone marrow and BMP-2-releasing sponges enhanced bone regeneration at the ulna defect to a significantly greater extent than the empty sponges (control). However, in the X-ray-irradiated bone, the bone regeneration either by autologous bone marrow or BMP-2 was inhibited. When combined with autologous bone marrow, the BMP-2 exhibited significantly high osteoinductivity, irrespective of the X-ray irradiation. The bone mineral content at the ulna defect was similar to that of the intact bone. It is concluded that the combination of bone marrow with the BMP-2-releasing gelatin/beta-TCP sponge is a promising technique to induce bone regeneration at segmental bone defects after X-ray irradiation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究的目的是评估包含β-三磷酸钙(β-TCP)颗粒(明胶/β-TCP海绵)的明胶海绵的可行性,以增强具有X射线照射的兔的节段性尺侧缺陷处的骨再生。在尺骨骨X射线照射后,产生20毫米长度的节段性临界缺陷,并且骨骼形态发生蛋白-2(BMP-2) - 施加或不具有自体骨髓的明胶/β-TCP海绵。对评估骨再生的缺陷。含有自体骨髓和BMP-2释放海绵的明胶/β-TCP海绵都增强了ULNA缺陷的骨再生,比空穴线显着更大(对照)。然而,在X射线照射的骨中,抑制了通过自体骨髓或BMP-2的骨再生。与自体骨髓结合时,无论X射线照射如何,BMP-2都表现出显着高的骨诱导率。 ULNA缺陷处的骨矿物质含量与完整骨骼的骨质含量相似。结论是,骨髓与BMP-2释放明胶/β-TCP海绵的组合是诱导X射线照射后在节段性骨缺陷处诱导骨再生的有希望的技术。 (c)2015 Elsevier Ltd.保留所有权利。

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