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首页> 外文期刊>Tissue engineering, Part A >Pulsed Electromagnetic Fields Enhance Bone Morphogenetic Protein-2 Dependent-Bone Regeneration
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Pulsed Electromagnetic Fields Enhance Bone Morphogenetic Protein-2 Dependent-Bone Regeneration

机译:脉冲电磁场​​增强骨形态发生蛋白2依赖骨的再生。

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The use of recombinant human bone morphogenetic protein-2 (rhBMP-2) for the purpose of promoting bone regeneration is emerging; however, the high dose of rhBMP-2 required in humans is accompanied by several limitations, including bone resorption and swelling. To reduce the dose of rhBMP-2 required, the applicability of pulsed electromagnetic fields (PEMF) was evaluated using a rat calvarial defect model. After creating an 8-mm-diameter calvarial bone defect, a collagen sponge soaked in different concentrations (0, 2.5, 5, 10g) of rhBMP-2 was implanted at the defect area. One week after surgery, PEMF was applied for 8h/day over 5 days in an experimental group of animals (n = 28) using a width of 12s, a pulse frequency of 60Hz, and a magnetic intensity of 10 G. Animals were sacrificed 4 weeks after surgery and assessed by microcomputed tomography and histological and immunohistochemical analyses. In the absence of application of PEMF, bone volume, bone mineral density, trabecular thickness, trabecular number, and trabecular separation, all showed statistically significant differences, depending on the concentration of rhBMP-2 utilized (p < 0.001). PEMF accelerated bone regeneration in the groups that received 0, 2.5, and 5g rhBMP-2 (p < 0.05). In contrast, administration of 10g rhBMP-2 resulted in no additive effect on bone regeneration in combination with PEMF. Groups receiving no rhBMP-2 showed distinct bone regeneration in the central zone of the bone defect when treated with PEMF, whereas they failed to bridge the defect space without PEMF. Among the groups without PEMF, soft tissue infiltrations from the outer surface on the skin side were common. Among groups with PEMF, the groups receiving 5 and 10g rhBMP-2 displayed denser bone with significantly reduced dead spaces. The application of PEMF did not result in an accelerated effect on bone regeneration in groups treated with 10g rhBMP-2. Therefore, our data demonstrate that PEMF can promote bone regeneration in animals treated with a low concentration of rhBMP-2.
机译:重组人骨形态发生蛋白2(rhBMP-2)用于促进骨再生的用途正在出现。然而,人类所需的高剂量rhBMP-2伴随着一些局限性,包括骨吸收和肿胀。为了减少所需的rhBMP-2剂量,使用大鼠颅骨缺损模型评估了脉冲电磁场​​(PEMF)的适用性。在创建直径为8毫米的颅骨缺损后,将浸有不同浓度(0、2.5、5、10g)rhBMP-2的胶原海绵植入缺损区域。手术后一周,在12天的宽度,60Hz的脉冲频率和10G的磁场强度下,对实验组(n = 28)的动物(n = 28)进行5天每天8h的PEMF处理。处死动物4手术后几周,并通过微型计算机断层扫描以及组织学和免疫组化分析进行评估。在不使用PEMF的情况下,取决于所用rhBMP-2的浓度,骨体积,骨矿物质密度,小梁厚度,小梁数目和小梁分离均显示出统计学上的显着差异(p <0.001)。 PEMF在接受0、2.5和5g rhBMP-2的组中促进了骨再生(p <0.05)。相反,与PEMF联合使用10g rhBMP-2不会对骨再生产生累加作用。当接受PEMF处理时,未接受rhBMP-2的组在骨缺损的中心区域显示出明显的骨再生,而在没有PEMF的情况下,他们无法弥合缺损空间。在没有PEMF的组中,皮肤侧外表面的软组织浸润很常见。在患有PEMF的组中,接受5g和10g rhBMP-2的组显示出更致密的骨头,死腔明显减少。在用10g rhBMP-2治疗的组中,PEMF的使用并未导致对骨再生的加速作用。因此,我们的数据表明PEMF可以促进低浓度rhBMP-2处理动物的骨骼再生。

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