Department of Textile Engineering, Functional Fibrous Structures & Environmental Enhancement (FFSEE), Amirkabir University of Technology, Tehran, Iran.
Department of Textile Engineering, Functional Fibrous Structures & Environmental Enhancement (FFSEE), Amirkabir University of Technology, Tehran, Iran.
Int J Biol Macromol. 2023 Mar 31;232:123292. doi: 10.1016/j.ijbiomac.2023.123292. Epub 2023 Jan 15.
This research focuses on preparing a natural-based drug delivery system for α-arbutin (AR) as a skin lightening. Bacterial cellulose nanofibers (BC) pad was used for controlled-AR release through two approaches. First was the dip-drying method (P-BC), in which AR cross-linked to BC pads using citric acid (CA). The second was simultaneously entrapping of AR in Tragacanth gum (AR-TG) and stabilized on BC (BC-T) through the ultrasonic-assisted microemulsion method. UV-Vis spectra revealed better control of AR release in BC-T in the first hour. High cell viability (above 70 %) of the pads containing 1-3 % AR was reported using MTT assay. The in-vitro permeation study indicated the proper AR penetration in the treated pads. The Fickian diffusion model was determined as a fitted model for all pads in the drug release kinetics. FTIR, XRD, and TGA analyses further characterized the pads. FESEM images verified AR-TG and BC structures with average diameters of 410.7 ± 25.4 and 34.5 ± 7.51 nm, respectively. The hydrophilicity and mechanical properties of the pads were also investigated. Finally, the high biocompatibility, initial controlled release, and proper permeation suggested BC-T as a more promising delivery platform for AR.
本研究专注于制备一种基于天然的α-熊果苷(AR)药物递送系统,用作皮肤美白剂。细菌纤维素纳米纤维(BC)垫通过两种方法用于控制 AR 的释放。第一种方法是浸渍干燥法(P-BC),其中 AR 通过柠檬酸(CA)交联到 BC 垫上。第二种方法是通过超声辅助微乳液法同时将 AR 包埋在黄原胶(AR-TG)中并稳定在 BC(BC-T)上。紫外可见光谱显示,BC-T 在前 1 小时内更好地控制了 AR 的释放。MTT 测定法报道了含有 1-3%AR 的垫具有超过 70%的高细胞活力。体外渗透研究表明,处理过的垫中 AR 适当渗透。Fickian 扩散模型被确定为所有垫在药物释放动力学中的拟合模型。FTIR、XRD 和 TGA 分析进一步表征了这些垫。FESEM 图像验证了 AR-TG 和 BC 结构,其平均直径分别为 410.7±25.4nm 和 34.5±7.51nm。还研究了垫的亲水性和机械性能。最后,高生物相容性、初始控制释放和适当的渗透表明 BC-T 是 AR 更有前途的递送平台。