Centro de Ciências e Tecnologia, Universidade Católica de Pernambuco, Rua do Príncipe, n. 526, Boa Vista, CEP 50050-900, Recife, Pernambuco, Brazil.
Colloids Surf B Biointerfaces. 2013 Feb 1;102:202-9. doi: 10.1016/j.colsurfb.2012.08.008. Epub 2012 Aug 17.
The development of less toxic, biodegradable, surfactants, such as biosurfactants, is a key strategy for acquiring environmentally friendly compounds. The aim of the present study was to employ an optimised medium containing 9% ground nut oil refinery residue and 9% corn steep liquor for the production of a biosurfactant by Candida sphaerica. Fermentation was carried out at 28 °C and 200 rpm for 144 h. Biosurfactant yield was 9 g/l. The biosurfactant reduced the surface tension of the medium to 25 mN/m, with a critical micelle concentration of 0.025%. The product demonstrated stability with regard to surface tension reduction and emulsification in a range of temperatures (5-120 °C) and pH values (2-12) as well as tolerance to high concentrations of NaCl (2-10%). Hydrophobicity tests indicate two possible insoluble substrate uptake mechanisms: direct interfacial uptake and biosurfactant-mediated transfer (cell contact with emulsified or solubilised hydrocarbons). The biosurfactant was characterised as an anionic glycolipid consisting of 70% lipids and 15% carbohydrates and demonstrated no toxicity to the microcrustacean Artemia salina or the vegetables Brassica oleracea, Solanum gilo, Lactuca sativa L. and Brassica oleracea L. The biosurfactant recovered 95% of motor oil adsorbed to a sand sample, demonstrating considerable potential for use in bioremediation processes, especially in the petroleum industry.
开发毒性更低、可生物降解、表面活性剂,如生物表面活性剂,是获得环保化合物的关键策略。本研究的目的是采用一种含有 9%花生油精炼残渣和 9%玉米浆的优化培养基来生产 Candida sphaerica 的生物表面活性剂。发酵在 28°C 和 200 rpm 下进行 144 小时。生物表面活性剂的产量为 9 g/l。生物表面活性剂将培养基的表面张力降低至 25 mN/m,临界胶束浓度为 0.025%。该产品在 5-120°C 的温度范围和 2-12 的 pH 值以及耐受 2-10%高浓度 NaCl 方面表现出表面张力降低和乳化的稳定性。疏水性测试表明存在两种可能的不溶性底物摄取机制:直接界面摄取和生物表面活性剂介导的转移(细胞与乳化或溶解的烃接触)。生物表面活性剂被表征为一种阴离子糖脂,由 70%的脂质和 15%的碳水化合物组成,对微甲壳类动物盐水丰年虾或蔬菜甘蓝、番茄、生菜和甘蓝没有毒性。生物表面活性剂回收了吸附在砂样上的 95%的发动机油,表明在生物修复过程中具有很大的应用潜力,特别是在石油工业中。