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新型 pH 诱导的槐糖脂生物表面活性剂的自组装

Unusual, pH-induced, self-assembly of sophorolipid biosurfactants.

机构信息

UPMC Université Paris 06, UMR 7574, Chimie de la Matière Condensée de Paris, F-75005, Paris, France.

出版信息

ACS Nano. 2012 Jun 26;6(6):4763-76. doi: 10.1021/nn204911k. Epub 2012 May 29.

Abstract

An increasing need exists for simple, bioderived, nontoxic, and up-scalable compounds with stimuli-responsive properties. Acidic sophorolipids (SL) are glucose-based biosurfactants derived from the yeast broth of Candida bombicola (teleomorph: Starmerella bombicola). The specific design of this molecule, a sophorose head with a free end-COOH group at the end of the alkyl chain, makes it a potentially interesting pH-responsive compound. We have specifically investigated this assumption using a combination of small angle neutron scattering (SANS), transmission electron microscopy under cryogenic conditions (Cryo-TEM), and nuclear magnetic resonance (NMR) techniques and found a strong dependence of SL self-assembly on the degree of ionization, α, of the COOH group at concentration values as low as 5 and 0.5 wt %. At least three regimes can be identified where the supramolecular behavior of SL is unexpectedly different: (1) at low α values, self-assembly is driven by concentration, C, and micelles are mainly identified as nonionic objects whose curvature decreases (sphere-to-rod) with C; (2) at mid α values, the formation of COO(-) groups introduces negative charges at the micellar surface inducing an increase in curvature (rod-to-sphere transition). Repulsive electrostatic long-range interactions appear at this stage. In both regimes 1 and 2, the cross-section radius of the micelles is below 25 Å. This behavior is concentration independent. (3) At α = 1, individual micelles seem to favor the formation of large netlike tubular aggregates whose size is above 100 nm. Such a complex behavior is very unique as it is generally not observed for common alkyl-based surfactants in concentration ranges below 5-10 wt %.

摘要

人们越来越需要具有刺激响应特性的简单、生物衍生、无毒且可规模化的化合物。酸性槐糖脂 (SL) 是一种基于葡萄糖的生物表面活性剂,由 Candida bombicola(同形:Starmerella bombicola)酵母培养液中提取。该分子的特殊设计,即末端烷基链上带有游离 -COOH 基团的槐糖基头部,使其成为一种具有潜在应用价值的 pH 响应性化合物。我们使用小角中子散射 (SANS)、低温下的透射电子显微镜 (Cryo-TEM) 和核磁共振 (NMR) 技术相结合,对这一假设进行了具体研究,发现 SL 自组装强烈依赖于 COOH 基团的离解度,α,在低至 5 和 0.5wt%的浓度值下,就可以观察到这种依赖关系。至少可以确定三个区域,其中 SL 的超分子行为具有出乎意料的不同:(1) 在低 α 值时,自组装受浓度 C 驱动,胶束主要被鉴定为非离子型物体,其曲率随 C 降低(从球形到棒状);(2) 在中间 α 值时,COO(-) 基团的形成在胶束表面引入了负电荷,导致曲率增加(棒状到球状转变)。在这个阶段会出现排斥性的静电长程相互作用。在第 1 和第 2 阶段,胶束的截面半径都小于 25 Å。这种行为与浓度无关。(3) 在 α = 1 时,单个胶束似乎更倾向于形成大的网状管状聚集体,其尺寸大于 100nm。这种复杂的行为非常独特,因为在低于 5-10wt%的浓度范围内,通常不会观察到常见的烷基基表面活性剂出现这种行为。

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