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带有光谱标记的复合凝聚核胶束用于生物聚合物网络的扩散测定探测

Complex Coacervate Core Micelles with Spectroscopic Labels for Diffusometric Probing of Biopolymer Networks.

作者信息

Bourouina Nadia, de Kort Daan W, Hoeben Freek J M, Janssen Henk M, Van As Henk, Hohlbein Johannes, van Duynhoven John P M, Kleijn J Mieke

机构信息

Physical Chemistry and Soft Matter, Wageningen University , P.O. Box 8038, 6700 EK Wageningen, The Netherlands.

TI-COAST, Science Park 904, 1098 XH Amsterdam, The Netherlands.

出版信息

Langmuir. 2015 Nov 24;31(46):12635-43. doi: 10.1021/acs.langmuir.5b03496. Epub 2015 Nov 13.

Abstract

We present the design, preparation, and characterization of two types of complex coacervate core micelles (C3Ms) with cross-linked cores and spectroscopic labels and demonstrate their use as diffusional probes to investigate the microstructure of percolating biopolymer networks. The first type consists of poly(allylamine hydrochloride) (PAH) and poly(ethylene oxide)-poly(methacrylic acid) (PEO-b-PMAA), labeled with ATTO 488 fluorescent dyes. We show that the size of these probes can be tuned by choosing the length of the PEO-PMAA chains. ATTO 488-labeled PEO113-PMAA15 micelles are very bright with 18 dye molecules incorporated into their cores. The second type is a (19)F-labeled micelle, for which we used PAH and a (19)F-labeled diblock copolymer tailor-made from poly(ethylene oxide)-poly(acrylic acid) (mPEO79-b-PAA14). These micelles contain approximately 4 wt % of (19)F and can be detected by (19)F NMR. The (19)F labels are placed at the end of a small spacer to allow for the necessary rotational mobility. We used these ATTO- and (19)F-labeled micelles to probe the microstructures of a transient gel (xanthan gum) and a cross-linked, heterogeneous gel (κ-carrageenan). For the transient gel, sensitive optical diffusometry methods, including fluorescence correlation spectroscopy, fluorescence recovery after photobleaching, and super-resolution single nanoparticle tracking, allowed us to measure the diffusion coefficient in networks with increasing density. From these measurements, we determined the diameters of the constituent xanthan fibers. In the heterogeneous κ-carrageenan gels, bimodal nanoparticle diffusion was observed, which is a signpost of microstructural heterogeneity of the network.

摘要

我们展示了两种具有交联核心和光谱标记的复合凝聚层核心胶束(C3M)的设计、制备和表征,并证明了它们作为扩散探针用于研究渗流生物聚合物网络微观结构的用途。第一种类型由用ATTO 488荧光染料标记的聚(烯丙胺盐酸盐)(PAH)和聚(环氧乙烷)-聚(甲基丙烯酸)(PEO-b-PMAA)组成。我们表明,通过选择PEO-PMAA链的长度可以调节这些探针的尺寸。掺入18个染料分子到其核心中的ATTO 488标记的PEO113-PMAA15胶束非常明亮。第二种类型是一种(19)F标记的胶束,我们使用PAH和由聚(环氧乙烷)-聚(丙烯酸)(mPEO79-b-PAA14)定制的(19)F标记的二嵌段共聚物。这些胶束含有约4 wt%的(19)F,可通过(19)F NMR检测。(19)F标记位于一个小间隔物的末端,以允许必要的旋转流动性。我们使用这些ATTO和(19)F标记的胶束来探测瞬态凝胶(黄原胶)和交联的非均相凝胶(κ-卡拉胶)的微观结构。对于瞬态凝胶,包括荧光相关光谱、光漂白后荧光恢复和超分辨率单纳米颗粒跟踪在内的灵敏光学扩散测量方法,使我们能够测量密度增加的网络中的扩散系数。通过这些测量,我们确定了组成黄原纤维的直径。在非均相κ-卡拉胶凝胶中观察到双峰纳米颗粒扩散,这是网络微观结构异质性的一个标志。

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