Guo Shiri, Jiang Wenlai, Shen Liangfei, Zhang Gaoyi, Gao Yiman, Yang Yaoyao, Yu Deng-Guang
School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.
School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.
Membranes (Basel). 2022 Apr 1;12(4):398. doi: 10.3390/membranes12040398.
Herb medicines are popular for safe application due to being a source of natural herbs. However, how to deliver them in an efficacious and convenient manner poses a big challenge to researchers. In this study, a new concept is demonstrated that the electrospun polymer-based hybrid films can be a platform for promoting the delivery of a mixture of active herb extract, i.e., Lianhua Qingwen Keli (LQK), also a commercial traditional Chinese patent medicine. The LQK can be co-dissolved with the filament-forming polymeric polyvinylpyrrolidone K60 and a sweeter sucralose to prepare an electrospinnable solution. A handheld electrospinning apparatus was explored to transfer the solution into solid nanofibers, i.e., the LQK-loaded medicated films. These films were demonstrated to be composed of linear nanofibers. A puncher was utilized to transfer the mat into circular membrane a diameter of 15 mm. Two self-created methods were developed for disclosing the dissolution performances of the electrospun mats. Both the water droplet experiments and the wet paper (mimic tongue) experiments verified that the hybrid films can rapidly disintegrate when they encounter water and release the loaded LQK in an immediate manner. Based on the reasonable selections of polymeric excipients, the present protocols pave a way for delivering many types of active herb extracts in an effective and convenient manner.
草药因其天然草本来源而在安全应用方面广受欢迎。然而,如何以有效且便捷的方式递送草药对研究人员来说是一个巨大的挑战。在本研究中,展示了一个新概念,即基于电纺聚合物的混合膜可作为促进活性草药提取物混合物递送的平台,该混合物即连花清瘟颗粒(LQK),也是一种商业传统中药专利药。LQK可与成丝聚合物聚乙烯吡咯烷酮K60和甜味剂三氯蔗糖共溶解以制备可电纺溶液。探索了一种手持式电纺设备将该溶液转化为固体纳米纤维,即载有LQK的药膜。这些膜被证明由线性纳米纤维组成。使用打孔器将毡垫转化为直径为15毫米的圆形膜。开发了两种自创方法来揭示电纺毡垫的溶解性能。水滴实验和湿纸(模拟舌头)实验均证实,混合膜遇水时能迅速崩解并立即释放所载的LQK。基于对聚合物辅料的合理选择,本方案为以有效且便捷的方式递送多种活性草药提取物铺平了道路。