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辐射在从水溶液中合成尺寸可控的聚(N-乙烯基吡咯烷酮)纳米凝胶中的应用。

Application of radiation for the synthesis of poly(n-vinyl pyrrolidone) nanogels with controlled sizes from aqueous solutions.

作者信息

Duygu Sütekin S, Güven Olgun

机构信息

Department of Chemistry, Hacettepe University, Beytepe, Ankara 06800, Turkey.

Department of Chemistry, Hacettepe University, Beytepe, Ankara 06800, Turkey.

出版信息

Appl Radiat Isot. 2019 Mar;145:161-169. doi: 10.1016/j.apradiso.2018.12.028. Epub 2018 Dec 22.

Abstract

Controlling of sizes of nanogels is very important for any biomedical application. In the present study we report a facile and reproducible method of preparing biocompatible nanogels of poly(N-vinyl pyrrolidone) (PVP) which were synthesized by using either electron beam (e-beam) (NGEB) or gamma irradiation (NGG) of dilute aqueous solutions. Nanogels with different hydrodynamic sizes were obtained at the variance of the polymer molecular weight, concentration, type of radiation source hence dose rate and total absorbed dose. For the first time a comparative study of gamma and e-beam irradiation was made on the same polymer with the aim of controlling sizes of nanogels in the range of 30-250 nm. Moreover the stability of radiation-synthesized nanogels was followed up to 2 years in refrigerated solution and found to retain their original sizes and distributions enabling their long-term storage and use. The synthesized nanogels were characterized by using dynamic light scattering (DLS), gel permeation chromatography (GPC), scanning electron microscopy (SEM) and atomic force microscopy (AFM) techniques. This work provides a clue to the fundamental question of how to control sizes of nanogels without using any additives which are indispensable with the other techniques. The technique is applicable to any water soluble polymer.

摘要

对于任何生物医学应用而言,控制纳米凝胶的尺寸都非常重要。在本研究中,我们报道了一种简便且可重复的制备聚(N-乙烯基吡咯烷酮)(PVP)生物相容性纳米凝胶的方法,该纳米凝胶通过对稀水溶液进行电子束(e-beam)(NGEB)或γ射线辐照(NGG)来合成。在聚合物分子量、浓度、辐射源类型(从而剂量率和总吸收剂量)不同的情况下,可获得具有不同流体动力学尺寸的纳米凝胶。首次对同一聚合物进行了γ射线和电子束辐照的对比研究,目的是将纳米凝胶的尺寸控制在30 - 250纳米范围内。此外,对辐射合成的纳米凝胶在冷藏溶液中的稳定性进行了长达2年的跟踪,发现它们能保持其原始尺寸和分布,从而能够长期储存和使用。通过动态光散射(DLS)、凝胶渗透色谱(GPC)、扫描电子显微镜(SEM)和原子力显微镜(AFM)技术对合成的纳米凝胶进行了表征。这项工作为如何在不使用任何添加剂(而这些添加剂在其他技术中是不可或缺的)的情况下控制纳米凝胶尺寸这一基本问题提供了线索。该技术适用于任何水溶性聚合物。

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