Department of Chemical and Biomolecular Engineering, Chonnam National University, Yeosu 59626, Republic of Korea.
Geoconvergence Research Center, Chonnam National University, Gwangju 61186, Republic of Korea.
Int J Biol Macromol. 2021 Apr 1;175:217-228. doi: 10.1016/j.ijbiomac.2021.02.004. Epub 2021 Feb 4.
This study focuses on the synthesis of functional allopurinol (ALP) imprinted biomaterials for a transdermal drug delivery using mung bean starch (MBS), polyvinyl alcohol (PVA), sodium benzoate (SB) as a crosslinking agent, and poloxamer (PX) as a thermo-sensitive polymer. Prepared functional biomaterials were characterized and evaluated by SEM, FT-IR analysis, and physical properties. Results of ALP recognition properties indicated that adsorbed amounts (Q) of ALP on functional ALP imprinted biomaterials were 3.8 to 4.9-fold higher than that of non-ALP imprinted biomaterial. Results of ALP release revealed that the ALP release rate for PX added biomaterials was 1.10 (36.5 °C) or 1.30 (45 °C) times faster than that at 25 °C. These results indicate that functional ALP imprinted biomaterials have thermo-sensitive properties due to the addition of PX. Results of ALP release using artificial skin indicated that ALP release was increased at a relatively steady-state rate for 3 h and that the ALP release behavior followed the non-Fickian diffusion mechanism.
本研究专注于使用绿豆淀粉(MBS)、聚乙烯醇(PVA)、苯甲酸钠(SB)作为交联剂和泊洛沙姆(PX)作为热敏性聚合物,合成用于透皮给药的功能性别嘌醇(ALP)印迹生物材料。通过 SEM、FT-IR 分析和物理性能对制备的功能生物材料进行了表征和评估。ALP 识别性能的结果表明,ALP 在功能 ALP 印迹生物材料上的吸附量(Q)比非 ALP 印迹生物材料高 3.8 至 4.9 倍。ALP 释放结果表明,添加 PX 的生物材料的 ALP 释放速率在 36.5°C 或 45°C 时比在 25°C 时快 1.10(36.5°C)或 1.30(45°C)倍。这些结果表明,由于添加了 PX,功能 ALP 印迹生物材料具有热敏性能。使用人工皮肤进行的 ALP 释放结果表明,ALP 在 3 小时内以相对稳定的速率释放,并且 ALP 释放行为遵循非菲克扩散机制。