School of Environmental Sciences, Jawaharlal Nehru University, New Delhi 110067, India.
Department of Environmental Health Sciences, Florida International University, Miami, FL 33199, USA.
Int J Mol Sci. 2020 Jul 10;21(14):4879. doi: 10.3390/ijms21144879.
Most of environment-related diseases often result from multiple exposures of abiotic and/or biotic stressors across various life stages. The application of environmental DNA/RNA (eDNA/eRNA) to advance ecological understanding has been very successfully used. However, the eminent extension of eDNA/eRNA-based approaches to estimate human exposure to biotic and/or abiotic environmental stressors to understand the environmental causes of chronic diseases has yet to start. Here, we introduce the potential of eDNA/eRNA for bio-monitoring of human exposome and health effects in the real environmental or occupational settings. This review is the first of its kind to discuss how eDNA/eRNA-based approaches can be applied for assessing the human exposome. eDNA-based exposome assessment is expected to rely on our ability to capture the genome- and epigenome-wide signatures left behind by individuals in the indoor and outdoor physical spaces through shedding, excreting, etc. Records of eDNA/eRNA exposome may reflect the early appearance, persistence, and presence of biotic and/or abiotic-exposure-mediated modifications in these nucleic acid molecules. Functional genome- and epigenome-wide mapping of eDNA offer great promise to help elucidate the human exposome. Assessment of longitudinal exposure to physical, biological, and chemical agents present in the environment through eDNA/eRNA may enable the building of an integrative causal dynamic stochastic model to estimate environmental causes of human health deficits. This model is expected to incorporate key biological pathways and gene networks linking individuals, their geographic locations, and random multi-hits of environmental factors. Development and validation of monitoring of eDNA/eRNA exposome should seriously be considered to introduce into safety and risk assessment and as surrogates of chronic exposure to environmental stressors. Here we highlight that eDNA/eRNA reflecting longitudinal exposure of both biotic and abiotic environmental stressors may serve as records of human exposome and discuss its application as molecular tools for understanding the toxicogenomics basis of environment-related health deficits.
大多数与环境相关的疾病通常是由多种生物和/或非生物应激源在各个生命阶段暴露引起的。环境 DNA/RNA(eDNA/eRNA)在推进生态学理解方面的应用已经非常成功。然而,将基于 eDNA/eRNA 的方法显著扩展到估计人类暴露于生物和/或非生物环境应激源,以了解慢性病的环境原因,尚未开始。在这里,我们介绍了 eDNA/eRNA 用于生物监测人类暴露组和真实环境或职业环境中健康影响的潜力。这是首次讨论基于 eDNA/eRNA 的方法如何应用于评估人类暴露组。基于 eDNA 的暴露组评估预计将依赖于我们通过脱落、排泄等方式捕获个体在室内外物理空间中留下的全基因组和全外显子组特征的能力。eDNA/eRNA 暴露组的记录可能反映了这些核酸分子中生物和/或非生物暴露介导的修饰的早期出现、持续存在和存在。eDNA 的功能全基因组和全外显子组图谱为阐明人类暴露组提供了很大的希望。通过 eDNA/eRNA 评估环境中存在的物理、生物和化学因素的纵向暴露,可以建立一个综合因果动态随机模型来估计环境对人类健康缺陷的原因。该模型预计将纳入将个体与其地理位置和环境因素的随机多击联系起来的关键生物学途径和基因网络。eDNA/eRNA 暴露组监测的开发和验证应认真考虑引入安全和风险评估以及作为慢性暴露于环境应激源的替代物。在这里,我们强调反映生物和非生物环境应激源纵向暴露的 eDNA/eRNA 可以作为人类暴露组的记录,并讨论其作为理解与环境相关的健康缺陷的毒代基因组学基础的分子工具的应用。