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3D Printing Surgical Implants at the clinic: A Experimental Study on Anterior Cruciate Ligament Reconstruction

机译:3D打印外科植入物的临床应用:前十字韧带重建的实验研究

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摘要

Desktop three-dimensional (3D) printers (D3DPs) have become a popular tool for fabricating personalized consumer products, favored for low cost, easy operation, and other advantageous qualities. This study focused on the potential for using D3DPs to successfully, rapidly, and economically print customized implants at medical clinics. An experiment was conducted on a D3DP-printed anterior cruciate ligament surgical implant using a rabbit model. A well-defined, orthogonal, porous PLA screw-like scaffold was printed, then coated with hydroxyapatite (HA) to improve its osteoconductivity. As an internal fixation as well as an ideal cell delivery system, the osteogenic scaffold loaded with mesenchymal stem cells (MSCs) were evaluated through both in vitro and in vivo tests to observe bone-ligament healing via cell therapy. The MSCs suspended in Pluronic F-127 hydrogel on PLA/HA screw-like scaffold showed the highest cell proliferation and osteogenesis in vitro. In vivo assessment of rabbit anterior cruciate ligament models for 4 and 12 weeks showed that the PLA/HA screw-like scaffold loaded with MSCs suspended in Pluronic F-127 hydrogel exhibited significant bone ingrowth and bone-graft interface formation within the bone tunnel. Overall, the results of this study demonstrate that fabricating surgical implants at the clinic (fab@clinic) with D3DPs can be feasible, effective, and economical.
机译:台式三维(3D)打印机(D3DP)已成为制造个性化消费产品的流行工具,因其低成本,易于操作和其他有利品质而受到青睐。这项研究的重点是在医疗诊所中使用D3DP成功,快速且经济地打印定制植入物的潜力。使用兔模型在D3DP打印的前交叉韧带外科植入物上进行了实验。印刷清晰的,正交的,多孔的PLA螺钉状支架,然后涂上羟基磷灰石(HA)以改善其骨传导性。作为一种内部固定以及理想的细胞递送系统,通过体外和体内试验对负载了间充质干细胞(MSC)的成骨支架进行了评估,以通过细胞疗法观察骨韧带的愈合情况。悬浮在PLA / HA螺旋状支架上的Pluronic F-127水凝胶中的MSC在体外显示出最高的细胞增殖和成骨作用。兔前交叉韧带模型的体内评估持续4周和12周,结果显示,PLA / HA螺钉状支架上装有悬浮在Pluronic F-127水凝胶中的MSC,在骨隧道内显示出明显的骨向内生长和植骨界面形成。总体而言,这项研究的结果表明,在诊所(fab @ clinic)上使用D3DP制造外科植入物是可行,有效和经济的。

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