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智能凝胶界面上光诱导 pH 跃变反应的空间控制。

Light-induced spatial control of pH-jump reaction at smart gel interface.

机构信息

Department of Materials Engineering, Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8577, Japan.

出版信息

Colloids Surf B Biointerfaces. 2012 Nov 1;99:53-9. doi: 10.1016/j.colsurfb.2011.09.039. Epub 2011 Sep 29.

Abstract

We proposed here a 'smart' control of an interface movement of proton diffusion in temperature- and pH-responsive hydrogels using a light-induced spatial pH-jump reaction. A photoinitiated proton-releasing reaction of o-nitrobenzaldehyde (NBA) was integrated into poly(N-isopropylacrylamide-o-2-carboxyisopropylacrylamide) (P(NIPAAm-co-CIPAAm)) hydrogels. NBA-integrated hydrogels demonstrated quick release of proton upon UV irradiation, allowing the pH inside the gel to decrease below the pK(a) of P(NIPAAm-co-CIPAAm) within a minute. The NBA-integrated gel was shown to shrink rapidly upon UV irradiation without polymer "skin layer" formation due to a uniform decrease of pH inside the gel. Spatial control of gel shrinking was also created by irradiating UV light to a limited region of the gel through a photomask. The interface of proton diffusion ("active interface") gradually moved toward non-illuminated area. The apparent position of "active interface", however, did not change remarkably above the LCST, while protons continuously diffused outward direction. This is because the "active interface" also moved inward direction as gel shrank above the LCST. As a result, slow movement of the apparent interface was observed. The NBA-integrated gel was also successfully employed for the controlled release of an entrapped dextran in a light controlled manner. This system is highly promising as smart platforms for triggered and programmed transportation of drugs.

摘要

我们提出了一种通过光诱导的空间 pH 跳跃反应来“智能”控制质子在温敏和 pH 响应水凝胶中的扩散界面运动的方法。将邻硝基苯甲醛(NBA)的光引发质子释放反应整合到聚(N-异丙基丙烯酰胺-共-2-羧基丙基丙烯酰胺)(P(NIPAAm-co-CIPAAm))水凝胶中。NBA 整合的水凝胶在 UV 照射下迅速释放质子,使凝胶内部的 pH 在一分钟内降低到 P(NIPAAm-co-CIPAAm)的 pK(a)以下。由于凝胶内部 pH 的均匀下降,NBA 整合的凝胶在 UV 照射下迅速收缩,而不会形成聚合物“皮层”。通过光掩模将 UV 光照射到凝胶的有限区域,也可以实现凝胶收缩的空间控制。质子扩散的界面(“活性界面”)逐渐向非照射区域移动。然而,在 LCST 以上,“活性界面”的表观位置并没有显著变化,而质子继续向外部扩散。这是因为在 LCST 以上凝胶收缩时,“活性界面”也向内移动。因此,观察到表观界面的缓慢移动。NBA 整合的凝胶也成功地用于以光控方式控制包埋的葡聚糖的释放。该系统有望成为药物触发和程序化输送的智能平台。

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