Mandsberg Nikolaj Kofoed, Højgaard Jesper, Joshi Shreya Suhas, Nielsen Line Hagner, Boisen Anja, Hwu En Te
Center for Intelligent Drug Delivery and Sensing Using Microcontainers and Nanomechanics (IDUN), Department of Health Technology, Technical University of Denmark, 2800 Kgs Lyngby, Denmark.
ACS Omega. 2021 Mar 9;6(11):7786-7794. doi: 10.1021/acsomega.1c00282. eCollection 2021 Mar 23.
Two simple, mechanical modifications are introduced to a consumer-grade inkjet printer to greatly increase its applicability. First, roller isolation bars are added to unlock multiple prints on the same substrate without smearing. This enables printing on a diverse set of substrates (rigid, elastic, liquid, granular, and sticky). Second, spring loadings are added to increase the print precision up to 50-fold, which facilitates alignment to a pre-patterned substrate or between successive prints. Utilizing the expanded substrate compatibility and the increased print precision, we explore tunable loading of drug combinations into microdevices. This loading method has promising applications within point-of-care personalized medication. Furthermore, we show how inkjet printers with array-type printheads (in our case, 6 x 90 nozzles) allow for quasi-simultaneous loading of reactants into microfluidic systems. The ability to do a quasi-simultaneous introduction of chemicals may be particularly useful for studies of rapidly reacting systems of three or more reactants, where premature introduction can shift the initial conditions from the intended. We believe that our modifications to an affordable system will inspire researchers to explore the possibilities of inkjet printing even further.
对消费级喷墨打印机进行了两项简单的机械改进,以大幅提高其适用性。首先,添加了滚筒隔离条,以实现同一基材上的多次打印而不产生污迹。这使得能够在多种基材(刚性、弹性、液体、颗粒状和粘性)上进行打印。其次,添加了弹簧加载装置,将打印精度提高了50倍,这有助于与预先图案化的基材对齐或在连续打印之间对齐。利用扩展的基材兼容性和提高的打印精度,我们探索了将药物组合可调加载到微器件中的方法。这种加载方法在即时护理个性化药物治疗方面具有广阔的应用前景。此外,我们展示了具有阵列式打印头(在我们的案例中为6×90个喷嘴)的喷墨打印机如何实现将反应物准同时加载到微流体系统中。准同时引入化学物质的能力对于研究三种或更多反应物的快速反应系统可能特别有用,因为过早引入可能会使初始条件偏离预期。我们相信,对一个经济实惠的系统所做的这些改进将激励研究人员进一步探索喷墨打印的可能性。