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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Biodegradable nanofiber-membrane for sustainable release of lidocaine at the femoral fracture site as a periosteal block: In vitro and in vivo studies in a rabbit model
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Biodegradable nanofiber-membrane for sustainable release of lidocaine at the femoral fracture site as a periosteal block: In vitro and in vivo studies in a rabbit model

机译:可生物降解的纳米纤维膜,可将利多卡因作为股骨膜阻滞物在股骨骨折部位持续释放:在兔模型中的体外和体内研究

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摘要

The aim of this study was to evaluate the efficacy of a biodegradable, lidocaine-embedded, nanofibrous membrane for the sustainable analgesic release onto fragments of a segmental femoral fracture site. Membranes of three different lidocaine concentrations (10%, 30%, and 50%) were produced via an electrospinning technique. In vitro lidocaine release was assessed by high-performance liquid chromatography. A femoral segmental fracture, with intramedullary Kirschner-wire fixation and polycaprolactone stent enveloping the fracture site, was set-up in a rabbit model for in vivo assessment of post-operative recovery of activity. Eighteen rabbits were randomly assigned to three groups (six rabbits per group): group A comprised of rabbits with femoral fractures and underwent fixation; group B comprised of a comparable fracture model to that of group A with the implantation of lidocaine-loaded nanofibers; and group C, the control group, received only anesthesia. The following variables were measured: change in body weight, food and water intake before and after surgery, and total activity count post-surgery. All membranes eluted effective levels of lidocaine for more than 3 weeks post-surgery. Rabbits in group B showed faster recovery of activity post-operatively, compared with those in group A, which confirmed the pain relief efficacy of the lidocaine-embedded nanofibers. Nanofibers with sustainable lidocaine release have adequate efficacy and durability for pain relief in rabbits with segmental long bone fractures. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究的目的是评估可生物降解的利多卡因包埋的纳米纤维膜对部分股骨骨折部位碎片上的止痛药的可持续释放。通过静电纺丝技术生产了三种不同的利多卡因浓度(10%,30%和50%)的膜。通过高效液相色谱法评估了利多卡因的体外释放。在兔模型中设置股骨节段性骨折,髓内克氏针固定,聚己内酯支架包裹骨折部位,用于体内评估术后活动性恢复情况。将18只兔随机分为三组(每组六只兔):A组由股骨骨折并接受固定的兔子组成; B组包括与A组相当的骨折模型,其中植入了利多卡因负载的纳米纤维;对照组C仅接受麻醉。测量了以下变量:手术前后体重,食物和水摄入量的变化以及手术后的总活动计数。术后3周以上,所有膜均洗脱了有效水平的利多卡因。与A组相比,B组的兔子术后活动恢复更快,这证实了嵌入利多卡因的纳米纤维的止痛功效。具有可持续利多卡因释放的纳米纤维具有足够的功效和持久性,可缓解部分节段性长骨折的兔子的疼痛。 (C)2016 Elsevier B.V.保留所有权利。

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