Zhang Xiaoxuan, Fu Xiao, Chen Guopu, Wang Yuetong, Zhao Yuanjin
Department of Rheumatology and Immunology, Institute of Translational Medicine, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, 210002, China.
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, China.
Adv Sci (Weinh). 2021 Sep;8(17):e2101210. doi: 10.1002/advs.202101210. Epub 2021 Jul 3.
Microneedles are regarded as an emerging and promising transdermal drug delivery strategy. Great efforts are devoted to getting rid of their material restrictions and imparting them with abilities to carry various drugs. Here, inspired by ice formation in nature and based on characteristics of different frozen materials, the authors present novel ice microneedles made from versatile soft materials using a simple freezing template-based fabrication stratagem for effective transdermal delivery of diverse actives. Their strategy can convert microneedles with almost all water-containing components from softness into hardness for guaranteeing satisfactory penetration, thus removing their material component limitations. As all fabrication procedures are mild and actives can maintain activity during these processes, the ice microneedles can carry and deliver various actives from small molecules and macromolecules to even living organisms. They have demonstrated that these ice microneedles can easily penetrate mouse and swine skins using a microneedle injector, with their active-carried tips left inside after their ice base melts. Thus, by loading heparin, erythropoietin, or biosafe Bacillus subtilis (B. subtilis) inside the ice microneedles to treat mouse models, the practical values of these microneedles are well displayed, indicating their bright prospects in universal drug delivery systems.
微针被视为一种新兴且有前景的经皮给药策略。人们付出了巨大努力来消除其材料限制,并赋予它们携带各种药物的能力。在此,受自然界中冰形成的启发,并基于不同冷冻材料的特性,作者提出了一种新型冰微针,它由通用的软材料制成,采用基于冷冻模板的简单制造策略,用于多种活性成分的有效经皮递送。他们的策略可以将几乎所有含水性成分的微针从柔软状态转变为坚硬状态,以确保令人满意的穿透效果,从而消除其材料成分限制。由于所有制造过程都很温和,且活性成分在这些过程中能够保持活性,冰微针可以携带并递送从小分子、大分子到甚至活生物体的各种活性成分。他们已经证明,这些冰微针使用微针注射器可以轻松穿透小鼠和猪的皮肤,冰基融化后,携带活性成分的尖端留在皮肤内。因此,通过在冰微针中装载肝素、促红细胞生成素或生物安全的枯草芽孢杆菌来治疗小鼠模型,这些微针的实用价值得到了充分展示,表明它们在通用药物递送系统中具有光明的前景。