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酶嵌入介孔硅用于治疗尿酸紊乱。

Enzyme-entrapped mesoporous silica for treatment of uric acid disorders.

机构信息

Centre for Nanotechnology and Advanced Biomaterials (CeNTAB), School of Chemical and Biotechnology, SASTRA University Thanjavur, 613401 Tamil Nadu, India.

出版信息

J Biomed Nanotechnol. 2013 May;9(5):907-14. doi: 10.1166/jbn.2013.1588.

Abstract

Gout is an abnormality in the body resulting in the accumulation of uric acid mainly in joints. Dissolution of uric acid crystals into soluble allantoin by the enzyme uricase might provide a better alternative for the treatment of gout. This work aims to investigate the feasibility of a transdermal patch loaded with uricase for better patient compliance. Mesoporous silica (SBA-15) was chosen as the matrix for immobilisation of uricase. Highly oriented mesoporous SBA-15 was synthesized, characterized and uricase was physisorbed in the mesoporous material. The percentage adsorption and release of enzyme in borate buffer was monitored. The release followed linear kinetics and greater than 80% enzyme activity was retained indicating the potential of this system as an effective enzyme immobilization matrix. The enzyme permeability was studied with Wistar rat skin and human cadaver skin. It was found that in case of untreated rat skin 10% of enzyme permeated through skin in 100 h. The permeation increased by adding permeation enhancer (combination of oleic acid in propylene glycol (OA in PG)). The permeation enhancement was studied under two concentrations of OA in PG (1%, 5%) in both rat and human cadaver skin and it was found that 1% OA in PG showed better result in rat skin and 5% OA in PG showed good results in human cadaver skin.

摘要

痛风是一种身体异常,导致尿酸主要在关节中积累。尿酸酶将尿酸晶体溶解为可溶性尿囊素可能为痛风治疗提供更好的选择。本工作旨在研究负载尿酸酶的透皮贴剂的可行性,以提高患者的顺应性。介孔硅(SBA-15)被选为固定尿酸酶的基质。合成、表征了高度取向的介孔 SBA-15,并将尿酸酶物理吸附在介孔材料中。监测了硼酸缓冲液中酶的吸附和释放百分比。释放遵循线性动力学,保留了超过 80%的酶活性,表明该系统作为有效的酶固定化基质的潜力。用 Wistar 大鼠皮肤和人体尸体皮肤研究了酶的通透性。结果发现,未经处理的大鼠皮肤中,10%的酶在 100 小时内透过皮肤。通过添加渗透增强剂(油酸在丙二醇中的混合物(OA 在 PG 中)),可以增加渗透。在大鼠和人体尸体皮肤中,研究了 PG 中两种 OA 浓度(1%、5%)下的渗透增强作用,发现 1%OA 在 PG 中在大鼠皮肤中表现出更好的效果,而 5%OA 在 PG 中在人体尸体皮肤中表现出良好的效果。

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