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仅将药物加载到DNA微针尖端的有效给药方法。

Effective Dispensing Methods for Loading Drugs Only to the Tip of DNA Microneedles.

作者信息

Bok Moonjeong, Zhao Zhi-Jun, Hwang Soon Hyoung, Kang Hyeok-Joong, Jeon Sohee, Ko Jiwoo, Jeong Jiwon, Song Young Seok, Lim Eunju, Jeong Jun-Ho

机构信息

Nano-Convergence Mechanical Systems Research Division, Korea Institute of Machinery and Materials, Daejeon 34103, Korea.

Department of Fiber System Engineering, Dankook University, Yongin 448-701, Korea.

出版信息

Pharmaceutics. 2020 Oct 10;12(10):954. doi: 10.3390/pharmaceutics12100954.

Abstract

Here, we propose a novel and simple method to efficiently capture the diffusion of fluorescein isothiocyanate (FITC)-dextran from a biocompatible substance and load the drug only to the tip of DNA microneedles. A dispensing and suction method was chosen to fabricate the designed microneedles with efficient amounts of FITC as the drug model. Importantly, the vacuum process, which could influence the capturing of FITC diffusion from the tip, was evaluated during the manufacturing process. In addition, the simulations were consistent with the experimental results and showed apparent diffusion. Moreover, dextrans of different molecular weights labeled with FITC were chosen to fabricate the tip of microneedles for demonstrating their applicability. Finally, a micro-jetting system with a micro-nozzle (diameter: 80 μm) was developed to achieve the accurate and rapid loading of small amounts of FITC using the anti-diffusion and micro-jetting methods. Our method not only uses a simple and fast manufacturing process, but also fabricates the tips of microneedles more efficiently with FITC compared with the existing methods. We believe that the proposed method is essential for the clinical applications of the microneedle drug delivery platform.

摘要

在此,我们提出了一种新颖且简单的方法,以有效捕获异硫氰酸荧光素(FITC)-葡聚糖从生物相容性物质中的扩散,并仅将药物加载到DNA微针的尖端。选择了一种分配和抽吸方法,以有效量的FITC作为药物模型来制造设计的微针。重要的是,在制造过程中评估了可能影响从尖端捕获FITC扩散的真空过程。此外,模拟结果与实验结果一致,并显示出明显的扩散。此外,选择了用FITC标记的不同分子量的葡聚糖来制造微针尖端,以证明其适用性。最后,开发了一种带有微喷嘴(直径:80μm)的微喷射系统,以使用抗扩散和微喷射方法实现少量FITC的精确快速加载。我们的方法不仅使用简单快速的制造过程,而且与现有方法相比,用FITC更有效地制造微针尖端。我们相信,所提出的方法对于微针药物递送平台的临床应用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b54/7599544/1e6e5e8fab70/pharmaceutics-12-00954-g001.jpg

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