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天然橡胶粒子的壳层结构:电动力学和冷冻透射电镜法证据表明存在化学分层。

Shell structure of natural rubber particles: evidence of chemical stratification by electrokinetics and cryo-TEM.

机构信息

Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), Université de Lorraine , UMR 7360, 15 avenue du Charmois, Vandœuvre-lès-Nancy, F-54501, France.

出版信息

Langmuir. 2013 Nov 26;29(47):14655-65. doi: 10.1021/la4036858. Epub 2013 Nov 11.

Abstract

The interfacial structure of natural rubber (NR) colloids is investigated by means of cryogenic transmission electron microscopy (cryo-TEM) and electrokinetics over a broad range of KNO3 electrolyte concentrations (4-300 mM) and pH values (1-8). The asymptotic plateau value reached by NR electrophoretic mobility (μ) in the thin double layer limit supports the presence of a soft (ion- and water-permeable) polyelectrolytic type of layer located at the periphery of the NR particles. This property is confirmed by the analysis of the electron density profile obtained from cryo-TEM that evidences a ∼2-4 nm thick corona surrounding the NR polyisoprene core. The dependence of μ on pH and salt concentration is further marked by a dramatic decrease of the point of zero electrophoretic mobility (PZM) from 3.6 to 0.8 with increasing electrolyte concentration in the range 4-300 mM. Using a recent theory for electrohydrodynamics of soft multilayered particles, this "anomalous" dependence of the PZM on electrolyte concentration is shown to be consistent with a radial organization of anionic and cationic groups across the peripheral NR structure. The NR electrokinetic response in the pH range 1-8 is indeed found to be equivalent to that of particles surrounded by a positively charged ∼3.5 nm thick layer (mean dissociation pK ∼ 4.2) supporting a thin and negatively charged outermost layer (0.6 nm in thickness, pK ∼ 0.7). Altogether, the strong dependence of the PZM on electrolyte concentration suggests that the electrostatic properties of the outer peripheral region of the NR shell are mediated by lipidic residues protruding from a shell containing a significant amount of protein-like charges. This proposed NR shell interfacial structure questions previously reported NR representations according to which the shell consists of either a fully mixed lipid-protein layer, or a layer of phospholipids residing exclusively beneath an outer proteic film.

摘要

通过低温透射电子显微镜(cryo-TEM)和电泳动力学研究了天然橡胶(NR)胶体的界面结构,电解质浓度范围为KNO3(4-300 mM)和 pH 值(1-8)。NR 电泳迁移率(μ)在薄双层极限中达到的渐近平台值支持在 NR 颗粒周围存在软(离子和水可渗透)聚电解质型层。这一特性通过从低温 TEM 获得的电子密度分布的分析得到了证实,该分析表明在 NR 聚异戊二烯核周围存在一个约 2-4 nm 厚的电晕。μ对 pH 值和盐浓度的依赖性进一步表明,随着电解质浓度从 4-300 mM 增加,零电泳迁移率(PZM)从 3.6 急剧降低到 0.8。利用最近的软多层粒子电动力学理论,这种 PZM 随电解质浓度的“异常”依赖性被证明与阴离子和阳离子基团在 NR 外围结构中的径向组织一致。在 pH 值 1-8 范围内,NR 的电动响应实际上与被正电荷约 3.5nm 厚的层(平均离解 pK∼4.2)包围的颗粒等效,该层支持一个薄的带负电荷的最外层(厚度 0.6nm,pK∼0.7)。总的来说,PZM 对电解质浓度的强烈依赖表明,NR 壳外层的静电特性是由从含有大量蛋白样电荷的壳中突出的脂质残基介导的。这种提出的 NR 壳界面结构对先前报道的 NR 表示提出了质疑,根据这些表示,壳由完全混合的脂质-蛋白质层或仅位于外部蛋白质膜下方的磷脂层组成。

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