脉冲电磁场和富含血小板的血浆单独及联合治疗磨损相关的假体周围骨溶解:一项体内研究。
Pulsed electromagnetic fields and platelet rich plasma alone and combined for the treatment of wear-mediated periprosthetic osteolysis: An in vivo study.
机构信息
Laboratory of Preclinical and Surgical Studies, Research Innovation and Technology Department (RIT), IRCCS Rizzoli Orthopedic Institute, via di Barbiano 1/10, 40136 Bologna, Italy.
出版信息
Acta Biomater. 2018 Sep 1;77:106-115. doi: 10.1016/j.actbio.2018.07.012. Epub 2018 Jul 6.
UNLABELLED
Wear-mediated osteolysis is a common complication occurring around implanted prosthesis, which ultimately leads to bone loss with mechanical instability and the need for surgical revision. At the moment, revision surgery is the only effective treatment. The aim of this study was to assess the efficacy of pulsed electromagnetic fields (PEMFs) and platelet rich plasma (PRP), alone and in association, in a clinically relevant in vivo model of periprosthetic osteolysis. Titanium alloy pins were implanted intramedullary in distal femurs of male inbred rats and, after osseointegration, polyethylene particles were injected intra-articularly to induce osteolysis. Animals were divided in four groups of treatment: PEMFs, PRP, PEMFs + PRP and no treatment. Microtomography was performed during the course of experiments to monitor bone stock and microarchitecture. Histology, histomorphometry, immunohistochemistry and biomechanics were evaluated after treatments. Biophysical and biological stimulations significantly enhanced bone to implant contact, bone volume and bone microhardness and reduced fibrous capsule formation and the number of osteoclasts around implants. Among treatments, PEMFs alone and in association with PRP exerted better results than PRP alone. Present data suggest that biophysical stimulation, with or without the enrichment with platelet derived growth factors, might be a safe, mini-invasive and conservative therapy for counteracting osteolysis and prompting bone formation around implants.
STATEMENT OF SIGNIFICANCE
Pulsed electromagnetic fields (PEMFs) and platelet rich plasma (PRP) show anabolic and anti-inflammatory effects and they are already been used in clinical practice, but separately. To date, there are no preclinical in vivo studies evaluating their combined efficacy in periprosthetic osteolysis, in bone tissue microarchitecture and in biomechanics. The aim of the present study was to evaluate the effects of PEMFs and PRP in vivo, when administered individually and in combination in the treatment of periprosthetic wear mediated ostelysis, and in restoring the osteogenetic properties of perimplant bone tissue and its biomechanical competence. The combination of PEMFs and PRP could be employed for counteracting the ostelysis process in a conservative and non surgical manner.
未加说明
植入假体周围的磨损性骨溶解是一种常见的并发症,最终会导致骨质流失、机械不稳定,需要进行手术翻修。目前,翻修手术是唯一有效的治疗方法。本研究的目的是评估脉冲电磁场(PEMFs)和富含血小板的血浆(PRP)单独使用和联合使用在假体周围骨溶解的临床相关体内模型中的疗效。钛合金销钉被植入雄性近交系大鼠的髓内,在骨整合后,将聚乙烯颗粒关节内注射以诱导骨溶解。动物分为四组进行治疗:PEMFs、PRP、PEMFs+PRP 和无治疗。在实验过程中进行微断层扫描以监测骨存量和微结构。治疗后进行组织学、组织形态计量学、免疫组织化学和生物力学评估。生物物理和生物刺激显著增加了骨与植入物的接触、骨体积和骨微硬度,并减少了纤维囊形成和植入物周围破骨细胞的数量。在治疗中,PEMFs 单独使用和与 PRP 联合使用的效果优于 PRP 单独使用。目前的数据表明,生物物理刺激,无论是否富含血小板衍生生长因子,都可能是一种安全、微创和保守的治疗方法,可用于对抗植入物周围的骨溶解并促进骨形成。
意义声明
脉冲电磁场(PEMFs)和富含血小板的血浆(PRP)具有合成代谢和抗炎作用,已在临床实践中单独使用。迄今为止,尚无评估其在假体周围骨溶解、骨组织微结构和生物力学中的联合疗效的临床前体内研究。本研究的目的是评估 PEMFs 和 PRP 在体内单独使用和联合使用时治疗假体周围磨损性骨溶解以及恢复植入物周围骨组织成骨特性及其生物力学能力的效果。PEMFs 和 PRP 的联合使用可以以保守和非手术的方式对抗骨溶解过程。