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首页> 外文期刊>ACS applied materials & interfaces >Identification of Novel 'Inks' for 3D Printing Using High-Throughput Screening: Bioresorbable Photocurable Polymers for Controlled Drug Delivery
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Identification of Novel 'Inks' for 3D Printing Using High-Throughput Screening: Bioresorbable Photocurable Polymers for Controlled Drug Delivery

机译:使用高通量筛选的3D印刷的新型“墨水”的识别:可控制药物递送的可吸血剂可光固化聚合物

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摘要

A robust methodology is presented to identify novel biomaterials suitable for three-dimensional (3D) printing. Currently, the application of additive manufacturing is limited by the availability of functional inks, especially in the area of biomaterials; this is the first time when this method is used to tackle this problem, allowing hundreds of formulations to be readily assessed. Several functional properties, including the release of an antidepressive drug (paroxetine), cytotoxicity, and printability, are screened for 253 new ink formulations in a high-throughput format as well as mechanical properties. The selected candidates with the desirable properties are successfully scaled up using 3D printing into a range of object architectures. A full drug release study and degradability and tensile modulus experiments are presented on a simple architecture to validating the suitability of this methodology to identify printable inks for 3D printing devices with bespoke properties.
机译:提出了一种鲁棒的方法以识别适用于三维(3D)印刷的新型生物材料。 目前,添加剂制造的应用受到功能性油墨的可用性的限制,特别是在生物材料面积中; 这是第一次使用该方法来解决这个问题的方法,允许易于评估数百种制剂。 以高通量格式以及机械性能筛选253个新的油墨配方,包括筛选抗抑郁药物(帕罗西汀),细胞毒性和印刷性的若干功能性质。 使用3D打印成功缩放所选候选性的候选物,进入一系列对象架构。 在简单的架构上提出了一种完整的药物释放研究和降解性和拉伸模量实验,以验证该方法的适用性,以识别具有定制属性的3D打印设备的可打印墨水。

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