Palos Pacheco Ricardo, Eismin Ryan J, Coss Clifford S, Wang Hui, Maier Raina M, Polt Robin, Pemberton Jeanne E
Department of Chemistry and Biochemistry and ‡Department of Soil, Water and Environmental Science, University of Arizona , Tucson, Arizona 85721, United States.
J Am Chem Soc. 2017 Apr 12;139(14):5125-5132. doi: 10.1021/jacs.7b00427. Epub 2017 Apr 3.
Rhamnolipids are amphiphilic glycolipids biosynthesized by bacteria that, due to their low toxicity and biodegradability, are potential replacements for synthetic surfactants. The previously limited access to pure materials at the gram scale has hindered extensive characterization of rhamnolipid structure-performance behavior. Here, we present an efficient and versatile synthetic methodology from which four diastereomers of the most common monorhamnolipid, α-rhamnopyranosyl-β-hydroxydecanoyl-β-hydroxydecanoate, are prepared and subsequently characterized. Exploration of their behavior at the air-water interface is reported and analyzed in terms of the absolute configuration of the lipid tail carbinols at pH 4.0 and 8.0. All diastereomers exhibit a minimum surface tension of about 28 mN/m without a significant difference between the protonated (nonionic) or deprotonated (anionic) states. At pH 4.0 (nonionic), all diastereomers have a critical micelle concentration (CMC) in the micromolar range. At pH 8.0 (anionic), CMC values for the (R,R), (S,S), and (S,R) diastereomers are approximately an order of magnitude higher than in their nonionic states, whereas the (R,S) diastereomer exhibits a CMC about five times larger.
鼠李糖脂是由细菌生物合成的两亲性糖脂,由于其低毒性和可生物降解性,它们是合成表面活性剂的潜在替代品。以前在克级规模上难以获得纯材料,这阻碍了对鼠李糖脂结构-性能行为的广泛表征。在此,我们提出了一种高效且通用的合成方法,从中制备了最常见的单鼠李糖脂α-鼠李吡喃糖基-β-羟基癸酰基-β-羟基癸酸酯的四种非对映异构体,并随后对其进行了表征。报告了它们在空气-水界面的行为,并根据脂质尾部甲醇在pH 4.0和8.0时的绝对构型进行了分析。所有非对映异构体的最低表面张力约为28 mN/m,在质子化(非离子)或去质子化(阴离子)状态之间没有显著差异。在pH 4.0(非离子)时,所有非对映异构体的临界胶束浓度(CMC)在微摩尔范围内。在pH 8.0(阴离子)时,(R,R)、(S,S)和(S,R)非对映异构体的CMC值比其非离子状态下大约高一个数量级,而(R,S)非对映异构体的CMC约大五倍。