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制备和评价基于功能型别嘌醇印迹淀粉的透皮给药生物材料。

Preparation and evaluation of functional allopurinol imprinted starch based biomaterials for transdermal drug delivery.

机构信息

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.

出版信息

Int J Biol Macromol. 2021 Apr 1;175:217-228. doi: 10.1016/j.ijbiomac.2021.02.004. Epub 2021 Feb 4.

Abstract

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.

摘要

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。

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