Cruz Mendoza Iana, Villavicencio-Vasquez Mirian, Aguayo Paola, Coello Montoya Diana, Plaza Luis, Romero-Peña María, Marqués Ana M, Coronel-León Jonathan
Escuela Superior Politécnica del Litoral, ESPOL, Facultad de Ingeniería Mecánica y Ciencias de la Producción, Campus Gustavo Galindo, Km 30.5, Vía Perimetral, Guayaquil P.O. Box 09-01-5863, Ecuador.
Escuela Superior Politécnica del Litoral, ESPOL, Centro de Investigaciones Biotecnológicas del Ecuador (CIBE), Campus Gustavo Galindo, Km 30.5, Via Perimetral, Guayaquil P.O. Box 09-01-5863, Ecuador.
Microorganisms. 2022 Jul 27;10(8):1518. doi: 10.3390/microorganisms10081518.
Biosurfactants (BS) are amphiphilic molecules that align at the interface reducing the surface tension. BS production is developed as an alternative to synthetic surfactants because they are biodegradable, with low toxicity and high specificity. BS are versatile, and this research proposes using a biosurfactant crude extract (BCE) as part of cleaning products. This paper reported the BCE production from DS03 using a medium with molasses. The BCE product was characterized by different physical and chemical tests under a wide pH range, high temperatures, and emulsifying properties showing successful results. The water surface tension of 72 mN/m was reduced to 34 mN/m with BCE, achieving a critical micelle concentration at 24.66 ppm. BCE was also applied to polystyrene surface as pre-treatment to avoid microbial biofilm development, showing inhibition in more than 90% of , , and above 2000 ppm BCE. The test continued using BCE as post-treatment to remove biofilms, reporting a significant reduction of 50.10% , 55.77% , and 59.44% in a concentration higher than 250 ppm BCE. Finally, a comparison experiment was performed between sodium lauryl ether sulfate (SLES) and BCE (included in commercial formulation), reporting an efficient reduction with the mixtures. The results suggested that BCE is a promising ingredient for cleaning formulations with applications in industrial food applications.
生物表面活性剂(BS)是两亲性分子,它们在界面处排列以降低表面张力。由于生物表面活性剂具有可生物降解、低毒性和高特异性的特点,其生产已发展成为合成表面活性剂的替代品。生物表面活性剂用途广泛,本研究提出将生物表面活性剂粗提物(BCE)用作清洁产品的一部分。本文报道了使用含 molasses 的培养基从 DS03 生产 BCE 的情况。通过在宽 pH 范围、高温下进行的不同物理和化学测试以及乳化性能对 BCE 产品进行了表征,结果显示成功。BCE 将水的表面张力从 72 mN/m 降低到 34 mN/m,在 24.66 ppm 时达到临界胶束浓度。BCE 还作为预处理应用于聚苯乙烯表面以避免微生物生物膜的形成,在 BCE 浓度高于 2000 ppm 时,对 、 和 的抑制率超过 90%。测试继续使用 BCE 作为后处理来去除生物膜,结果表明在 BCE 浓度高于 250 ppm 时, 、 和 分别显著降低了 50.10%、55.77% 和 59.44%。最后,对月桂醇聚醚硫酸酯钠(SLES)和 BCE(包含在商业配方中)进行了比较实验,结果表明混合物具有有效的去污效果。结果表明,BCE 是一种有前途的清洁配方成分,可应用于工业食品领域。