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Coaxial PCL/PVA electrospun nanofibers: Osseointegration enhancer and controlled drug release device

机译:同轴PCL / PVA电纺纳米纤维:骨整合增强剂和可控药物释放装置

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The failure of prosthesis after total joint replacement is mainly due to dysfunctional osseointegration and implant infection. There is a critical need for orthopedic implants that promote rapid osseointegration and prevent bacterial colonization, particularly when placed in bone compromised by disease or physiology of the patients. The aim of this study was to fabricate a novel coaxial electrospun polycaprolactone (PCL)/polyvinyl alcohol (PVA) core-sheath nanofiber (NF) blended with both hydroxyapatite nanorods (HA) and type I collagen (Col) (PCL~(Col)/PVA~(HA)). Doxycycline (Doxy) and dexamethasone (Dex) were successfully incorporated into the PCL~(Col)/PVA~(HA) NFs for controlled release. The morphology, surface hydrophilicity and mechanical properties of the PCL/PVA NF mats were analyzed by scanning electron microscopy, water contact angle and atomic force microscopy. The PCL~(Col)/PVA~(HA) NFs are biocompatible and enhance the adhesion and proliferation of murine pre-osteoblastic MC3T3 cells. The release of Doxy and Dex from coaxial PCLCol/PVAHA NFs showed more controlled release compared with the blended NFs. Using an ex vivo porcine bone implantation model we found that the PCLCol/PVA HA NFs bind firmly on the titanium rod surface and the NFs coating remained intact on the surface of titanium rods after pullout. No disruption or delamination was observed after the pullout test. These findings indicate that PCL~(Col)/PVA~(HA) NFs encapsulating drugs have great potential in enhancing implant osseointegration and preventing implant infection.
机译:全关节置换后假体的失败主要是由于功能障碍性骨整合和植入物感染。迫切需要能够促进快速骨整合并防止细菌定植的整形外科植入物,尤其是当其放置在受患者疾病或生理影响的骨骼中时。这项研究的目的是要制造一种新型的同轴电纺聚己内酯(PCL)/聚乙烯醇(PVA)芯鞘纳米纤维(NF)与羟基磷灰石纳米棒(HA)和I型胶原(Col)(PCL〜(Col) / PVA〜(HA))。强力霉素(Doxy)和地塞米松(Dex)已成功地掺入PCL〜(Col)/ PVA〜(HA)NFs中以进行控制释放。通过扫描电子显微镜,水接触角和原子力显微镜分析了PCL / PVA NF毡的形态,表面亲水性和机械性能。 PCL〜(Col)/ PVA〜(HA)NFs具有生物相容性,可增强鼠成骨前MC3T3细胞的粘附和增殖。与共混的NF相比,同轴PCLCol / PVAHA NF中Doxy和Dex的释放显示出更多的控制释放。使用离体猪骨植入模型,我们发现PCLCol / PVA HA NFs在钛棒表面牢固结合,拔出后NFs涂层在钛棒表面保持完整。拔出测试后未观察到破裂或分层。这些发现表明,包封PCL〜(Col)/ PVA〜(HA)NFs的药物具有增强植入物骨整合和预防植入物感染的巨大潜力。

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