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京尼平交联壳聚糖-聚乙烯吡咯烷酮水凝胶中的荧光成像

Fluorescence Imaging in Genipin Crosslinked Chitosan⁻Poly(vinyl pyrrolidone) Hydrogels.

作者信息

Matcham Simon, Novakovic Katarina

机构信息

School of Chemical Engineering and Advanced Materials, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.

出版信息

Polymers (Basel). 2016 Oct 28;8(11):385. doi: 10.3390/polym8110385.

Abstract

Recent research has identified genipin as a promising natural crosslinking agent for biocompatible hydrogels as genipin is significantly less cytotoxic than current synthetic crosslinking agents, such as glutaraldehyde. Conveniently, fluorophores can be produced when genipin crosslinks. In this study, fluorescence intensity measurements of genipin crosslinked chitosan-poly(vinyl pyrrolidone) hydrogels have been explored as a dynamic, in situ method for tracing sol-gel transition. These pH-responsive smart materials have a future in medical applications, in particular in tissue engineering and drug delivery, where methods to follow the process in situ and in real-time are crucial for future advancement. Samples were prepared using deionised water, pH 4, and pH 10 solutions, and studied at 24 and 37 °C over a 24 h period. Both temperature and pH have been found to affect sol-gel transition in the hydrogels studied. The transition from acidic (pH 4) to basic (pH 10) solution resulted in reduced fluorescence intensity suggesting that, under more basic conditions, genipin molecules self-polymerise, reducing the number of molecules available for reaction with the amino groups of chitosan. Three-dimensional representations of the fluorescence present in a hydrogel sample have also been produced from the data, enabling the visualisation of variation in fluorescence with time at the surface of the hydrogel.

摘要

最近的研究已确定京尼平是一种有前景的用于生物相容性水凝胶的天然交联剂,因为与目前的合成交联剂(如戊二醛)相比,京尼平的细胞毒性显著更低。方便的是,京尼平交联时会产生荧光团。在本研究中,已探索了对京尼平交联的壳聚糖-聚(乙烯基吡咯烷酮)水凝胶进行荧光强度测量,作为一种追踪溶胶-凝胶转变的动态原位方法。这些pH响应型智能材料在医学应用中具有前景,特别是在组织工程和药物递送方面,在这些领域中,原位实时追踪过程的方法对于未来的进展至关重要。使用去离子水、pH 4溶液和pH 10溶液制备样品,并在24小时内于24℃和37℃下进行研究。已发现温度和pH都会影响所研究水凝胶中的溶胶-凝胶转变。从酸性(pH 4)溶液转变为碱性(pH 10)溶液会导致荧光强度降低,这表明在更碱性的条件下,京尼平分子会自聚合,减少了可与壳聚糖氨基反应的分子数量。还根据数据生成了水凝胶样品中荧光的三维表示,从而能够可视化水凝胶表面荧光随时间的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea7a/6431922/8dd67898084a/polymers-08-00385-g001.jpg

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