首页> 美国卫生研究院文献>Springer Open Choice >Parathyroid Hormone Treatment Increases Fixation of Orthopedic Implants with Gap Healing: A Biomechanical and Histomorphometric Canine Study of Porous Coated Titanium Alloy Implants in Cancellous Bone
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Parathyroid Hormone Treatment Increases Fixation of Orthopedic Implants with Gap Healing: A Biomechanical and Histomorphometric Canine Study of Porous Coated Titanium Alloy Implants in Cancellous Bone

机译:甲状旁腺激素治疗可通过间隙愈合增加骨科植入物的固定:松质骨中多孔涂层钛合金植入物的生物力学和组织形态学犬学研究

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摘要

Parathyroid hormone (PTH) administered intermittently is a bone-building peptide. In joint replacements, implants are unavoidably surrounded by gaps despite meticulous surgical technique and osseointegration is challenging. We examined the effect of human PTH(1–34) on implant fixation in an experimental gap model. We inserted cylindrical (10 × 6 mm) porous coated titanium alloy implants in a concentric 1-mm gap in normal cancellous bone of proximal tibia in 20 canines. Animals were randomized to treatment with PTH(1–34) 5 μg/kg daily. After 4 weeks, fixation was evaluated by histomorphometry and push-out test. Bone volume was increased significantly in the gap. In the outer gap (500 μm), the bone volume fraction median (interquartile range) was 27% (20–37%) for PTH and 10% (6–14%) for control. In the inner gap, the bone volume fraction was 33% (26–36%) for PTH and 13% (11–18%) for control. At the implant interface, the bone fraction improved with 16% (11–20%) for PTH and 10% (7–12%) (P = 0.07) for control. Mechanical implant fixation was improved for implants exposed to PTH. For PTH, median (interquartile range) shear stiffness was significantly higher (PTH 17.4 [12.7–39.7] MPa/mm and control 8.8 [3.3–12.4] MPa/mm) (P < 0.05). Energy absorption was significantly enhanced for PTH (PTH 781 [595–1,198.5] J/m2 and control 470 [189–596] J/m2). Increased shear strength was observed but was not significant (PTH 3.0 [2.6–4.9] and control 2.0 [0.9–3.0] MPa) (P = 0.08). Results show that PTH has a positive effect on implant fixation in regions where gaps exist in the surrounding bone. With further studies, PTH may potentially be used clinically to enhance tissue integration in these challenging environments.
机译:间歇给药的甲状旁腺激素(PTH)是一种造骨肽。在关节置换术中,尽管采用了精细的外科手术技术,但植入物不可避免地被缝隙包围,并且骨整合是一个挑战。我们在实验间隙模型中检查了人类PTH(1-34)对植入物固定的影响。我们在20个犬只的胫骨近端正常松质骨的同心1mm间隙中插入了圆柱形(10×6mm)多孔涂层钛合金植入物。每天将动物随机接受PTH(1-34)5μg/ kg的治疗。 4周后,通过组织形态计量学和推出试验评估固定。间隙中的骨量明显增加。在外间隙(500μm)中,PTH的骨体积分数中位数(四分位间距)为27%(20-37%),对照为10%(6-14%)。在内部间隙中,PTH的骨体积分数为33%(26–36%),而对照的骨体积分数为13%(11–18%)。在植入物界面,PTH的骨质分数提高了16%(11–20%),而对照的骨质分数提高了10%(7–12%)(P = 0.07)。机械植入物固定可改善暴露于PTH的植入物。对于PTH,中位(四分位间距)剪切刚度明显更高(PTH 17.4 [12.7-39.7] MPa / mm,对照8.8 [3.3-12.4] MPa / mm)(P <0.05)。 PTH的能量吸收显着增强(PTH 781 [595–1,198.5] J / m 2 和对照470 [189–596] J / m 2 )。观察到剪切强度增加,但不显着(PTH 3.0 [2.6-4.9]和对照2.0 [0.9-3.0] MPa)(P = 0.08)。结果表明,PTH对周围骨中存在间隙的区域的植入物固定具有积极作用。通过进一步的研究,PTH可能会在临床上潜在地用于增强这些挑战性环境中的组织整合。

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