The Danish National Research Foundation and Villum Foundation's Center for Intelligent Drug Delivery and Sensing Using Microcontainers and Nanomechanics, Department of Health Technology, Technical University of Denmark, 2800, Kgs. Lyngby, Denmark.
Biomed Microdevices. 2020 May 18;22(2):35. doi: 10.1007/s10544-020-00490-8.
With the growing popularity and application of microfabricated devices in oral drug delivery (ODD), masking technologies for drug loading and surface modification become highly relevant. Considering the speed of design and fabrication processes and the necessity for continuous alterations of e.g. the shape and sizes of the devices during the optimization process, there is a need for adaptable, precise and low-cost masking techniques. Here, a novel method is presented for masking ODD microdevices, namely microcontainers, using the physical characteristics of polydimethylsiloxane (PDMS). When compared to a rigid microfabricated shadow mask, used for filling drugs in microcontainers, the PDMS masking technique allows more facile and precise loading of higher quantities of an active compound, without the need of alignment. The method provides flexibility and is adjustable to devices fabricated from different materials with various geometries, topologies and dimensions. This user-friendly flexible masking method overcomes the limitations of other masking techniques and is certainly not limited to ODD and is recommended for a wide range of microdevices.
随着微制造设备在口服药物输送 (ODD) 中的日益普及和应用,药物负载和表面改性的掩蔽技术变得非常相关。考虑到设计和制造过程的速度以及在优化过程中例如设备的形状和尺寸不断改变的必要性,需要适应性强、精确和低成本的掩蔽技术。在这里,提出了一种使用聚二甲基硅氧烷 (PDMS) 的物理特性对 ODD 微器件(即微容器)进行掩蔽的新方法。与用于向微容器中填充药物的刚性微制造掩模相比,PDMS 掩蔽技术允许更轻松、更精确地加载更高数量的活性化合物,而无需对准。该方法具有灵活性,可适应不同材料、各种几何形状、拓扑结构和尺寸的设备。这种用户友好的灵活掩蔽方法克服了其他掩蔽技术的局限性,并且肯定不限于 ODD,建议广泛用于各种微器件。