De Giani Alessandra, Zampolli Jessica, Di Gennaro Patrizia
Department of Biotechnology and Biosciences, University of Milano-Bicocca, Milan, Italy.
Front Microbiol. 2021 Apr 23;12:655150. doi: 10.3389/fmicb.2021.655150. eCollection 2021.
The attention towards the bacteria associated with human health is growing more and more, above all regarding the bacteria that inhabit the niches offered by the human body, i.e., the gastrointestinal tract, skin, vaginal environment, and lungs. Among the secondary metabolites released by microorganisms associated with human health, little consideration is given to the biosurfactants, molecules with both hydrophobic and hydrophilic nature. Their role in the complex human environment is not only the mere biosurfactant function, but they could also control the microbiota through the system and the antimicrobial activity. These functions protect them and, accordingly, the human body principally from microbial and fungal pathogens. Consequently, nowadays, biosurfactants are emerging as promising bioactive molecules due to their very different structures, biological functions, low toxicity, higher biodegradability, and versatility. Therefore, this review provides a comprehensive perspective of biosurfactants with antimicrobial activity produced by bacteria associated with the human body and related to everything human beings are in contact with, e.g., food, beverages, and food-waste dumping sites. For the first time, the role of an "" approach is highlighted to predict gene products for biosurfactant production, and an overview of the available gene sequences is reported. Besides, antimicrobial biosurfactants' features, challenges, and potential applications in the biomedical, food, and nutraceutical industries are discussed.
人们对与人类健康相关细菌的关注日益增加,尤其是对那些栖息于人体所提供生态位中的细菌,即胃肠道、皮肤、阴道环境和肺部中的细菌。在与人类健康相关的微生物释放的次级代谢产物中,生物表面活性剂这种兼具疏水和亲水性质的分子却很少受到关注。它们在复杂的人类环境中的作用不仅限于单纯的生物表面活性剂功能,还可能通过 系统和抗菌活性来控制微生物群。这些功能主要保护它们以及人体免受微生物和真菌病原体的侵害。因此,如今生物表面活性剂因其结构多样、生物功能独特、低毒性、高生物降解性和多功能性而成为有前景的生物活性分子。因此,本综述全面阐述了与人体相关细菌产生的具有抗菌活性的生物表面活性剂,以及与人类接触的一切事物,如食品、饮料和食物垃圾倾倒场相关的生物表面活性剂。首次强调了一种“ ”方法在预测生物表面活性剂生产基因产物方面的作用,并报告了可用基因序列的概述。此外,还讨论了抗菌生物表面活性剂的特性、挑战以及在生物医学、食品和营养保健品行业的潜在应用。