Vilela W F D, Fonseca S G, Fantinatti-Garboggini F, Oliveira V M, Nitschke M
Instituto de Química de São Carlos, Universidade de São Paulo, Caixa Postal 780, CEP 13560-970, São Carlos, SP, Brazil.
Appl Biochem Biotechnol. 2014 Nov;174(6):2245-56. doi: 10.1007/s12010-014-1208-4. Epub 2014 Aug 31.
Microbial-derived surfactants are molecules of great interest due to their environmentally friendly nature and low toxicity; however, their production cost is not competitive when compared to synthetics. Marine microorganisms are exposed to extremes of pressure, temperature, and salinity; hence, they can produce stable compounds under such conditions that are useful for industrial applications. A screening program to select marine bacteria able to produce biosurfactant using low-cost substrates (mineral oil, sucrose, soybean oil, and glycerol) was conducted. The selected bacterial strain showed potential to synthesize biosurfactants using mineral oil as carbon source and was identified as Brevibacterium luteolum. The surface-active compound reduced the surface tension of water to 27 mN m(-1) and the interfacial tension (water/hexadecane) to 0.84 mN m(-1) and showed a critical micelle concentration of 40 mg L(-1). The biosurfactant was stable over a range of temperature, pH, and salt concentration and the emulsification index (E24) with different hydrocarbons ranging from 60 to 79 %. Structural characterization revealed that the biosurfactant has a lipopeptide nature. Sand washing removed 83 % of crude oil demonstrating the potential of the biosurfactants (BS) for bioremediation purposes. The new marine B. luteolum strain showed potential to produce high surface-active and stable molecule using a low-cost substrate.
微生物衍生的表面活性剂因其环保性质和低毒性而备受关注;然而,与合成表面活性剂相比,其生产成本缺乏竞争力。海洋微生物面临极端的压力、温度和盐度;因此,它们能够在这种条件下产生对工业应用有用的稳定化合物。开展了一项筛选计划,以选择能够使用低成本底物(矿物油、蔗糖、大豆油和甘油)生产生物表面活性剂的海洋细菌。所选细菌菌株显示出以矿物油作为碳源合成生物表面活性剂的潜力,并被鉴定为淡黄短杆菌。该表面活性化合物将水的表面张力降低至27 mN m(-1),将界面张力(水/十六烷)降低至0.84 mN m(-1),临界胶束浓度为40 mg L(-1)。该生物表面活性剂在一定温度、pH值和盐浓度范围内稳定,与不同碳氢化合物的乳化指数(E24)在60%至79%之间。结构表征表明该生物表面活性剂具有脂肽性质。砂洗去除了83%的原油,证明了生物表面活性剂用于生物修复目的的潜力。新的海洋淡黄短杆菌菌株显示出使用低成本底物生产高表面活性和稳定分子的潜力。