Department of Biomolecular Sciences (DISB), University of Urbino Carlo Bo, 61029 Urbino, Italy.
Department of Pure and Applied Sciences (DiSPeA), University of Urbino Carlo Bo, 61029 Urbino, Italy.
Int J Mol Sci. 2024 Oct 15;25(20):11069. doi: 10.3390/ijms252011069.
In an era when ecological and environmental needs and responsibilities apply pressure on the world's countries and sustainability takes centre stage, ecologic/environmental (E/E) laboratories stand as beacons of scientific inquiry, innovating, optimising, and applying various tests for a better knowledge of our natural resources and the quality status of ecosystems. The purpose of this review is to provide an overview of the use of flow cytometry (FC) as a tool for assessing environmental quality, mainly using living organisms and their biological changes as bioindicators. Cytometric approaches applied to both marine and terrestrial ecosystems ensure the detection of biochemical and functional status of the cells composing either an organ thereof or the organism itself. In addition to cytometric evaluations of the biotic matrix, a brief overview of the techniques for the environmental assessment of biotic and abiotic matrices using mass spectrometry is given. The technique involving the continuous monitoring of the chemical and physical parameters of water, sediment, and soil is basically incapable of detecting any additive and synergetic effects of toxicants on living organisms. Therefore, techniques employing bioindicators provide valuable information for environmental diagnosis, and several studies have demonstrated the strong relationship between specific environmental data and cell/organ behaviour.
在生态和环境需求与责任给世界各国带来压力、可持续性成为焦点的时代,生态/环境(E/E)实验室是科学探究、创新、优化和应用各种测试的灯塔,以更好地了解我们的自然资源和生态系统的质量状况。本文综述的目的是概述流式细胞术(FC)作为评估环境质量的工具的使用,主要使用生物体及其生物变化作为生物标志物。应用于海洋和陆地生态系统的细胞计量方法可确保检测组成器官或生物体本身的细胞的生化和功能状态。除了对生物基质进行细胞计量评估外,还简要概述了使用质谱法对生物和非生物基质进行环境评估的技术。该技术涉及对水、沉积物和土壤的化学和物理参数的连续监测,基本上无法检测有毒物质对生物体的任何附加和协同作用。因此,使用生物标志物的技术为环境诊断提供了有价值的信息,多项研究表明特定环境数据与细胞/器官行为之间存在很强的关系。