Department of Environmental Engineering and Earth Sciences, Clemson University, Clemson, SC 29634, USA.
Global Alliance for Rapid Diagnostics (GARD), Michigan State University, East Lancing, MI 48824, USA.
Biosensors (Basel). 2022 Nov 25;12(12):1082. doi: 10.3390/bios12121082.
Biosensors often combine biological recognition elements with nanomaterials of varying compositions and dimensions to facilitate or enhance the operating mechanism of the device. While incorporating nanomaterials is beneficial to developing high-performance biosensors, at the stages of scale-up and disposal, it may lead to the unmanaged release of toxic nanomaterials. Here we attempt to foster connections between the domains of biosensors development and human and environmental toxicology to encourage a holistic approach to the development and scale-up of biosensors. We begin by exploring the toxicity of nanomaterials commonly used in biosensor design. From our analysis, we introduce five factors with a role in nanotoxicity that should be considered at the biosensor development stages to better manage toxicity. Finally, we contextualize the discussion by presenting the relevant stages and routes of exposure in the biosensor life cycle. Our review found little consensus on how the factors presented govern nanomaterial toxicity, especially in composite and alloyed nanomaterials. To bridge the current gap in understanding and mitigate the risks of uncontrolled nanomaterial release, we advocate for greater collaboration through a precautionary One Health approach to future development and a movement towards a circular approach to biosensor use and disposal.
生物传感器通常将生物识别元件与具有不同组成和尺寸的纳米材料结合在一起,以促进或增强设备的工作机制。虽然将纳米材料纳入其中有助于开发高性能的生物传感器,但在扩大规模和处置阶段,可能会导致有毒纳米材料的失控释放。在这里,我们试图在生物传感器开发领域和人类与环境毒理学领域之间建立联系,鼓励对生物传感器的开发和扩大规模采用整体方法。我们首先探讨了生物传感器设计中常用的纳米材料的毒性。通过我们的分析,我们引入了在生物传感器开发阶段应考虑的五个对纳米毒性有影响的因素,以更好地管理毒性。最后,我们通过介绍生物传感器生命周期中的相关暴露阶段和途径来使讨论具体化。我们的综述发现,对于提出的这些因素如何控制纳米材料毒性,几乎没有达成共识,尤其是在复合和合金纳米材料中。为了弥合当前理解上的差距并减轻失控纳米材料释放的风险,我们倡导通过采用一种预防性的“同一健康”方法来进行未来的发展,并朝着循环利用生物传感器的方法发展和处置。