Department of Dermatology, Second Xiangya Hospital, Central South University, Changsha 410011, Hunan, PR China.
College of Environmental Science and Engineering, Hunan University and Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha 410082, PR China.
Sci Total Environ. 2018 Sep 1;634:1-11. doi: 10.1016/j.scitotenv.2018.03.349. Epub 2018 Apr 3.
The widespread existence of hydrophobic organic compounds (HOCs) in soil and water poses a potential health hazard to human, such as skin diseases, heart diseases, carcinogenesis, etc. Surfactant-enhanced bioremediation has been regarded as one of the most viable technologies to treat HOCs contaminated soil and groundwater. As a biosurfactant that has been intensively studied, rhamnolipids have shown to enhance biodegradation of HOCs in the environment, however, the underlying mechanisms are not fully disclosed. In this paper, properties and production of rhamnolipids are summarized. Then effects of rhamnolipids on the biodegradation of HOCs, including solubilization, altering cell affinity to HOCs, and facilitating microbial uptake are reviewed in detail. Special attention is paid to how rhamnolipids change the bioavailability of HOCs, which are crucial for understanding the mechanism of rhamnolipids-mediated biodegradation. The biodegradation and toxicity of rhamnolipids are also discussed. Finally, perspectives and future research directions are proposed. This review adds insight to rhamnolipids-enhanced biodegradation process, and helps in application of rhamnolipids in bioremediation.
疏水性有机化合物(HOCs)在土壤和水中的广泛存在对人类健康构成了潜在危害,例如皮肤病、心脏病、致癌等。表面活性剂强化生物修复技术被认为是处理 HOCs 污染土壤和地下水的最可行技术之一。鼠李糖脂作为一种经过深入研究的生物表面活性剂,已被证明可以增强环境中 HOCs 的生物降解,但其中的作用机制尚未完全揭示。本文总结了鼠李糖脂的性质和生产。然后详细综述了鼠李糖脂对 HOCs 生物降解的影响,包括增溶、改变细胞对 HOCs 的亲和力以及促进微生物摄取。特别关注了鼠李糖脂如何改变 HOCs 的生物利用度,这对于理解鼠李糖脂介导的生物降解机制至关重要。还讨论了鼠李糖脂的生物降解和毒性。最后,提出了展望和未来的研究方向。本文综述增加了对鼠李糖脂增强生物降解过程的深入了解,并有助于鼠李糖脂在生物修复中的应用。