Key Laboratory of Cluster Science of Ministry of Education, Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, China.
Key Laboratory of Cluster Science of Ministry of Education, Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, China.
J Control Release. 2024 Apr;368:115-130. doi: 10.1016/j.jconrel.2024.02.023. Epub 2024 Feb 21.
Microneedle patches are emerging multifunctional platforms for transdermal diagnostics and drug delivery. However, it still remains challenging to develop smart microneedles integrated with customization, sensing, detection and drug delivery by 3D printing strategy. Here, we present an innovative but facile strategy to rationally design and fabricate multifunctional eutectogel microneedle (EMN) patches via multi-material 3D printing. Polymerizable deep eutectic solvents (PDES) were selected as printing inks for rapid one-step fabrication of 3D printing functional EMN patches due to fast photopolymerization rate and ultrahigh drug solubility. Moreover, stretchable EMN patches incorporating rigid needles and flexible backing layers were easily realized by changing PDES compositions of multi-material 3D printing. Meanwhile, we developed multifunctional smart multi-material EMN patches capable of performing wireless monitoring of body movements, painless colorimetric glucose detection, and controlled transdermal drug delivery. Thus, such multi-material EMN system could provide an effective platform for the painless diagnosis, detection, and therapy of a variety of diseases.
微针贴片作为一种新兴的多功能透皮诊断和药物输送平台,通过 3D 打印策略来开发与定制、传感、检测和药物输送相结合的智能微针仍然具有挑战性。在这里,我们提出了一种创新而简单的策略,通过多材料 3D 打印合理设计和制造多功能共晶水凝胶微针 (EMN) 贴片。由于超快的光聚合速率和超高的药物溶解度,可聚合深共晶溶剂 (PDES) 被选为打印墨水,用于快速一步制造 3D 打印功能 EMN 贴片。此外,通过改变多材料 3D 打印的 PDES 组成,很容易实现包含刚性针和柔性背衬层的可拉伸 EMN 贴片。同时,我们开发了多功能智能多材料 EMN 贴片,能够进行无线监测身体运动、无痛比色葡萄糖检测和控制经皮药物输送。因此,这种多材料 EMN 系统可为各种疾病的无痛诊断、检测和治疗提供有效的平台。