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通过绿色单步法制备的纳米级聚丙烯酸基水凝胶,可用作低粘度仿生人工泪液。

Nanoscale poly(acrylic acid)-based hydrogels prepared via a green single-step approach for application as low-viscosity biomimetic fluid tears.

机构信息

Department of Chemistry, Faculty of Science, Ain Shams University, Abbassia, Cairo 11566, Egypt.

Department of Pharmacology, Research Institute of Ophthalmology, Giza 12511, Egypt.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 May;110:110726. doi: 10.1016/j.msec.2020.110726. Epub 2020 Feb 4.

Abstract

The present work reports a nanotechnology strategy to prepare a low-viscosity poly(acrylic acid) (PAAc)-based tear substitute with enhanced efficacy and compliance. Specifically, nanogels composed of PAAc and polyvinylpyrrolidone (PVP) were prepared by adapting an ionizing radiation method. For this purpose, different aqueous systems: PVP/PAAc nanoparticulate complexes, PVP/acrylic acid (AAc), N-vinylpyrrolidone (N-VP)/PAAc, and N-VP/AAc were exposed to gamma rays. The dynamic light scattering technique showed that stable nanogels are only produced in a relatively high yield from the PVP/AAc system. Nanogel formation was driven by the hydrogen-bonding complexation between PVP and PAAc (formed in situ) as well as the radiation-induced cross-linking. Transparency, viscosity and mucoadhesiveness of emerged nanogels were optimized by controlling the feed composition and irradiation dose. Furthermore, neutralized nanogels were topically applied in a dry eye model and compared with a PAAc-based commercial tear substitute, namely Vidisic® Gel. The results of Schirmer's test and tear break-up time demonstrated that nanogels prepared from AAc-rich feed solutions at 20 kGy enhanced markedly the dry eye conditions. The histopathological analysis also ensured the competence of PAAc-rich nanogels to completely return the corneal epithelium to its normal state.

摘要

本工作报道了一种纳米技术策略,用于制备具有增强功效和顺应性的低粘度聚丙烯酸(PAAc)基泪液替代物。具体而言,通过适应电离辐射方法制备了由 PAAc 和聚乙烯吡咯烷酮(PVP)组成的纳米凝胶。为此,将不同的水相体系:PVP/PAAc 纳米颗粒复合物、PVP/丙烯酸(AAc)、N-乙烯基吡咯烷酮(N-VP)/PAAc 和 N-VP/AAc 暴露于伽马射线。动态光散射技术表明,仅在相对较高的 PVP/AAc 体系产率下才能产生稳定的纳米凝胶。纳米凝胶的形成是由 PVP 和 PAAc 之间的氢键络合(原位形成)以及辐射诱导交联驱动的。通过控制进料组成和辐照剂量来优化纳米凝胶的透明度、粘度和粘膜粘附性。此外,将中和的纳米凝胶局部应用于干眼症模型,并与基于 PAAc 的商业泪液替代物即 Vidisic® Gel 进行比较。Schirmer 测试和泪膜破裂时间的结果表明,在 20 kGy 下,由富含 AAc 的进料溶液制备的纳米凝胶显著改善了干眼症状况。组织病理学分析还确保富含 PAAc 的纳米凝胶能够使角膜上皮完全恢复正常状态。

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