Parisi Ortensia Ilaria, Ruffo Mariarosa, Scrivano Luca, Malivindi Rocco, Vassallo Antonio, Puoci Francesco
Department of Pharmacy, Health and Nutritional Sciences, University of Calabria, 87036 Rende (CS), Italy.
Macrofarm s.r.l., C/O Department of Pharmacy, Health and Nutrition Sciences, University of Calabria, 87036 Rende (CS), Italy.
Pharmaceuticals (Basel). 2018 Sep 22;11(4):92. doi: 10.3390/ph11040092.
The aim of the present study was the development of a "smart bandage" for the topical administration of diclofenac, in the treatment of localized painful and inflammatory conditions, incorporating Molecularly Imprinted Polymers (MIPs) for the controlled release of this anti-inflammatory drug. For this purpose, MIP spherical particles were synthesized by precipitation polymerization, loaded with the therapeutic agent and incorporated into the bandage surface. Batch adsorption binding studies were performed to investigate the adsorption isotherms and kinetics and the selective recognition abilities of the synthesized MIP. In vitro diffusion studies were also carried out using Franz cells and the obtained results were reported as percentage of the diffused dose, cumulative amount of diffused drug, steady-state drug flux and permeability coefficient. Moreover, the biocompatibility of the developed device was evaluated using the EPISKIN™ model. The Scatchard analysis indicated that the prepared MIP is characterized by the presence of specific binding sites for diclofenac, which are not present in the corresponding non-imprinted polymer, and the obtained results confirmed both the ability of the prepared bandage to prolong the drug release and the absence of skin irritation reactions. Therefore, these results support the potential application of the developed "smart bandage" as topical device for diclofenac sustained release.
本研究的目的是开发一种用于双氯芬酸局部给药的“智能绷带”,用于治疗局部疼痛和炎症性疾病,其中包含分子印迹聚合物(MIP)以控制这种抗炎药物的释放。为此,通过沉淀聚合合成了MIP球形颗粒,负载治疗剂并掺入绷带表面。进行了批量吸附结合研究,以研究吸附等温线和动力学以及合成MIP的选择性识别能力。还使用Franz扩散池进行了体外扩散研究,并将所得结果报告为扩散剂量的百分比、扩散药物的累积量、稳态药物通量和渗透系数。此外,使用EPISKIN™模型评估了所开发装置的生物相容性。Scatchard分析表明,制备的MIP的特征在于存在双氯芬酸的特异性结合位点,而相应的非印迹聚合物中不存在这些位点,所得结果证实了制备的绷带具有延长药物释放的能力且不存在皮肤刺激反应。因此,这些结果支持了所开发的“智能绷带”作为双氯芬酸缓释局部装置的潜在应用。