Department of Environmental Health Sciences, Yale School of Public Health, New Haven, CT, USA.
Department of Surgery and Cancer, Faculty of Medicine, Imperial College London, London, UK.
Hum Genomics. 2017 Dec 8;11(1):32. doi: 10.1186/s40246-017-0128-0.
The exposome is defined as "the totality of environmental exposures encountered from birth to death" and was developed to address the need for comprehensive environmental exposure assessment to better understand disease etiology. Due to the complexity of the exposome, significant efforts have been made to develop technologies for longitudinal, internal and external exposure monitoring, and bioinformatics to integrate and analyze datasets generated. Our objectives were to bring together leaders in the field of exposomics, at a recent Symposium on "Lifetime Exposures and Human Health: The Exposome," held at Yale School of Public Health. Our aim was to highlight the most recent technological advancements for measurement of the exposome, bioinformatics development, current limitations, and future needs in environmental health. In the discussions, an emphasis was placed on moving away from a one-chemical one-health outcome model toward a new paradigm of monitoring the totality of exposures that individuals may experience over their lifetime. This is critical to better understand the underlying biological impact on human health, particularly during windows of susceptibility. Recent advancements in metabolomics and bioinformatics are driving the field forward in biomonitoring and understanding the biological impact, and the technological and logistical challenges involved in the analyses were highlighted. In conclusion, further developments and support are needed for large-scale biomonitoring and management of big data, standardization for exposure and data analyses, bioinformatics tools for co-exposure or mixture analyses, and methods for data sharing.
暴露组学被定义为“从出生到死亡所经历的全部环境暴露”,它的发展是为了满足全面评估环境暴露以更好地了解疾病病因的需求。由于暴露组学的复杂性,人们已经做出了巨大努力来开发用于纵向、内部和外部暴露监测的技术,以及用于整合和分析生成的数据的生物信息学。我们的目标是汇集暴露组学领域的领导者,在最近于耶鲁大学公共卫生学院举行的“终生暴露与人类健康:暴露组学”专题研讨会上。我们旨在强调暴露组学测量、生物信息学开发、当前限制以及环境卫生未来需求的最新技术进步。在讨论中,重点是从单一化学物质、单一健康结果模式转向监测个体一生中可能经历的全部暴露的新模式。这对于更好地了解对人类健康的潜在生物学影响,特别是在易感性窗口期间,至关重要。代谢组学和生物信息学的最新进展正在推动生物监测和理解生物学影响领域的发展,并且强调了分析中涉及的技术和后勤挑战。总之,需要进一步发展和支持用于大规模生物监测和大数据管理、暴露和数据分析的标准化、共同暴露或混合物分析的生物信息学工具以及数据共享方法。