Marczynski Matthias, Lieleg Oliver
Biophys Rev (Melville). 2021 Aug 10;2(3):031302. doi: 10.1063/5.0054075. eCollection 2021 Sep.
A decade ago, environmental issues, such as air pollution and the contamination of the oceans with microplastic, were prominently communicated in the media. However, these days, political topics, as well as the ongoing COVID-19 pandemic, have clearly taken over. In spite of this shift in focus regarding media representation, researchers have made progress in evaluating the possible health risks associated with particulate contaminations present in water and air. In this review article, we summarize recent efforts that establish a clear link between the increasing occurrence of certain pathological conditions and the exposure of humans (or animals) to airborne or waterborne particulate matter. First, we give an overview of the physiological functions mucus has to fulfill in humans and animals, and we discuss different sources of particulate matter. We then highlight parameters that govern particle toxicity and summarize our current knowledge of how an exposure to particulate matter can be related to dysfunctions of mucosal systems. Last, we outline how biophysical tools and methods can help researchers to obtain a better understanding of how particulate matter may affect human health. As we discuss here, recent research has made it quite clear that the structure and functions of those mucosal systems are sensitive toward particulate contaminations. Yet, our mechanistic understanding of how (and which) nano- and microparticles can compromise human health via interacting with mucosal barriers is far from complete.
十年前,空气污染和海洋微塑料污染等环境问题在媒体上得到了显著报道。然而,如今政治话题以及持续的新冠疫情显然占据了主导。尽管媒体报道的重点发生了这种转变,但研究人员在评估与水和空气中存在的颗粒物污染相关的潜在健康风险方面取得了进展。在这篇综述文章中,我们总结了最近的一些研究成果,这些研究成果在某些病理状况的日益增加与人类(或动物)接触空气传播或水传播颗粒物之间建立了明确的联系。首先,我们概述了黏液在人类和动物体内必须履行的生理功能,并讨论了颗粒物的不同来源。然后,我们强调了控制颗粒毒性的参数,并总结了我们目前对接触颗粒物如何与黏膜系统功能障碍相关的认识。最后,我们概述了生物物理工具和方法如何帮助研究人员更好地理解颗粒物可能如何影响人类健康。正如我们在此讨论的,最近的研究已经很清楚地表明,这些黏膜系统的结构和功能对颗粒物污染很敏感。然而,我们对纳米和微米颗粒如何(以及哪些)通过与黏膜屏障相互作用损害人类健康的机制理解还远远不够完善。