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Inkjet printing for localized coating and functionalization of medical devices

机译:用于医疗设备的局部涂层和功能化的喷墨印刷

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Inkjet printing has become essential for pharmaceutical research as well as biomedical applications. It is a promising tool to meet future challenges in patientindividual designed pharmaceuticals and implants. In this context, the main areas of use are high-throughput screening (HTS), drug-loaded microparticles, drug formulation and oral dose development, 3D-printing/bioprinting as well as coating of implants. This study deals with the latter. In view of promising applications for localized coating and functionalization of implant surfaces this work shows preliminary results on inkjet printing of the polymer poly(2- ethyl-2-oxazoline) (PetOx), a protein repellent polymer (PRP). To deposit single droplets with small volumes (~500 pl) of aqueous PetOx solution (50 g/l), printing parameters were determined for the piezo-driven drop-ondemand inkjet printhead NanoTip J, operating in a Nanoplotter 2.1 (both from GeSiM mbH, Germany). Different printing strategies are demonstrated by varying droplet spacing and drying time while printing on hydrophilic glass substrate. Printing and stacking of almost uniform polymer lines (width ~ 200 μm) is demonstrated.
机译:喷墨打印已成为药物研究和生物医学应用中必不可少的。它是应对患者个性化设计的药物和植入物未来挑战的有前途的工具。在这种情况下,主要的使用领域是高通量筛选(HTS),载药微粒,药物制剂和口服剂量开发,3D打印/生物打印以及植入物涂层。本研究针对后者。鉴于植入物表面的局部涂覆和功能化的前景广阔的应用,这项工作显示了喷墨打印聚合物聚(2-乙基-2-恶唑啉)(PetOx),蛋白质排斥聚合物(PRP)的初步结果。为了用少量(〜500 pl)的PetOx水溶液(50 g / l)沉积单个液滴,确定了压电驱动的按需喷墨打印头NanoTip J的打印参数,该打印头在Nanoplotter 2.1中操作(均来自GeSiM mbH ,德国)。在亲水性玻璃基板上进行打印时,通过改变液滴间距和干燥时间,可以证明不同的打印策略。展示了几乎均匀的聚合物线(宽度〜200μm)的印刷和堆叠。

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