Liu Ran, Zhang Mingtian, Jin Cuiyun
Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing, 100084, China.
College of Information Science & Technology, Beijing University of Chemical Technology, Beijing, 100029, China.
J Biophotonics. 2017 Jun;10(6-7):870-877. doi: 10.1002/jbio.201500230. Epub 2016 Jan 18.
Nowadays, transdermal drug delivery has become a hot topic with regard to delivery. Also, the percutaneous microneedle patch made of water-soluble material makes this technique one step closer to clinical application. The process of the microneedle patch penetrates and dissolves in the animal skin can directly reflect the efficiency of drug delivery. Hence, it is important to reflect the situation of microneedles dissolution and drug release by in vivo and in situ imaging in real time. This paper's purpose is to use the means of OCT (optical coherence tomography) to realize assessment of dissolving microneedles delivery efficiency in vivo and in situ imaging. This is the first study to utilize OCT to observe the dissolving process of silk microneedles (SFM) in different carriers. Dissolving process es of silk fibroin microneedles in different carriers were captured by the OCT system. The solution rate of silk fibroin microneedles in water is rapid. It also has good solution in the skin of mouse in vivo. OCT is a noncontact, noninvasive imaging technique with high resolution, the detecting depth of which is generally 1-3 mm under the skin. OCT has great potential to observe the solution process of dissolving microneedles in the skin.
如今,经皮给药已成为给药领域的一个热门话题。此外,由水溶性材料制成的经皮微针贴片使该技术向临床应用又迈进了一步。微针贴片在动物皮肤中的穿透和溶解过程能够直接反映药物递送的效率。因此,通过体内和原位实时成像来反映微针溶解及药物释放情况具有重要意义。本文的目的是利用光学相干断层扫描(OCT)手段实现对溶解微针递送效率的体内和原位成像评估。这是首次利用OCT观察不同载体中丝素微针(SFM)溶解过程的研究。OCT系统捕捉了丝素蛋白微针在不同载体中的溶解过程。丝素蛋白微针在水中的溶解速度很快。其在小鼠体内皮肤中也具有良好的溶解性。OCT是一种具有高分辨率的非接触、非侵入性成像技术,其检测深度一般在皮肤下1 - 3毫米。OCT在观察溶解微针在皮肤中的溶解过程方面具有巨大潜力。