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利用光触发的疏水至亲水转换的分子门控药物输送系统。

Molecular-Gated Drug Delivery Systems Using Light-Triggered Hydrophobic-to-Hydrophilic Switches.

机构信息

Biomodics ApS, Fjeldhammervej 15, 2610 Rødovre, Denmark.

DTU Bioengineering, Building 423, 2800 Kgs. Lyngby, Denmark.

出版信息

ACS Appl Bio Mater. 2021 Feb 15;4(2):1624-1631. doi: 10.1021/acsabm.0c01458. Epub 2021 Jan 13.

Abstract

A photoresponsive molecular-gated drug delivery system (DDS) based on silicone-hydrogel (poly(HEMA--PEGMEA)) interpenetrating polymer networks (IPNs) functionalized with carboxylated spiropyran (SPCOOH) was designed and demonstrated as an on-demand DDS. The triggered-release mechanism relies on controlling the wetting behavior of the surface by light, exploiting different hydrophobicities between the "closed" and "open" isomers of spiropyran as a photoswitchable molecular gate on the surface of IPN (SP-photogated IPN). Light-triggered release of doxycycline (DOX) as a model drug indicated that the spiropyran (SP) molecules provide a hydrophobic layer around the drug carrier and have a good gate-closing efficiency for IPNs with 20-30% hydrogel content. Upon UV light irradiation, SP converts into an open hydrophilic merocyanine state, which triggers the release of DOX. These results were compared with a previously developed SP-bulk modified IPN using the same hydrogel as a control, proving the efficiency of the gated IPN system. The covalent attachment of SPCOOH to the alcohol groups of the hydrogel and the structural change caused by UV light was indicated with FTIR analysis. XPS results also confirm the presence of SP by indicating the atomic percentage of nitrogen with respect to the hydrogel content.

摘要

一种基于硅橡胶-水凝胶(聚(HEMA-PEGMEA))互穿聚合物网络(IPN)的光响应型分子门控药物递送系统(DDS),该 IPN 用羧基化螺吡喃(SPCOOH)进行了功能化,被设计并证明为一种按需 DDS。触发释放机制依赖于通过光控制表面的润湿行为,利用螺吡喃的“关闭”和“打开”异构体之间的不同疏水性作为 IPN(SP 光控 IPN)表面的光开关分子门。作为模型药物的强力霉素(DOX)的光触发释放表明,螺吡喃(SP)分子在药物载体周围提供了一层疏水性层,并且对于具有 20-30%水凝胶含量的 IPN 具有良好的门关闭效率。在紫外光照射下,SP 转化为开放的亲水性次甲基蓝状态,从而触发 DOX 的释放。这些结果与先前使用相同水凝胶作为对照开发的 SP 体相修饰 IPN 进行了比较,证明了门控 IPN 系统的效率。FTIR 分析表明,SPCOOH 通过与水凝胶的醇基的共价键合以及由紫外光引起的结构变化。XPS 结果也通过相对于水凝胶含量指示氮的原子百分比来证实 SP 的存在。

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