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Using biomarkers in sewage to monitor community-wide human health:Isoprostanes as conceptual prototype

机译:在污水中使用生物标记物监测整个社区的人类健康:异前列腺素作为概念原型

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Timely assessment of the aggregate health of small-area human populations is essential for guiding the optimal investment of resources needed for preventing, avoiding, controlling, or mitigating exposure risks. Seeking those interventions yielding the greatest benefit with respect to allocation of resources is essential for making progress toward community sustainability, promoting social justice, and maintaining or improving health and well-being. More efficient approaches are needed for revealing cause-effect linkages between environmental stressors and human health and for measuring overall aggregate health of small-area populations. A new concept is presented - community health assessment via Sewage Chemical Information Mining (SCIM) - for quickly gauging overall, aggregate health status or trends for entire small-area populations. The approach - BioSCIM - would monitor raw sewage for specific biomarkers broadly associated with human disease, stress, or health. A wealth of untapped chemical information resides in raw sewage, a portion comprising human biomarkers of exposure and effects. BioSCIM holds potential for capitalizing on the presence of biomarkers in sewage for accomplishing any number of objectives. One of the many potential applications of BioSCIM could use various biomarkers of stress resulting from the collective excretion from all individuals in a local population. A prototype example is presented using a class of biomarkers that measures collective, systemic oxidative stress - the isoprostanes (prostaglandin-like free-radical catalyzed oxidation products from certain polyunsaturated fatty acids). Sampling and analysis of raw sewage hold great potential for quickly determining aggregate biomarker levels for entire communities. Presented are the basic principles of BioSCIM, together with its anticipated limitations, challenges, and potential applications in assessing community-wide health. Community health assessment via BioSCIM could allow rapid assessments and in-tercomparisons of health status among distinct populations, revealing hidden or emerging trends or disparities and aiding in evaluating correlations (or hypotheses) between stressor exposures and disease.
机译:及时评估小区域人群的总体健康状况对于指导预防,避免,控制或减轻暴露风险所需的最佳资源投资至关重要。寻求那些在分配资源方面产生最大利益的干预措施,对于在社区可持续发展,促进社会正义以及维持或改善健康与福祉方面取得进展至关重要。需要更有效的方法来揭示环境压力源与人类健康之间的因果关系,并衡量小区域人群的整体总体健康状况。提出了一个新概念-通过污水化学信息挖掘(SCIM)进行社区健康评估-快速评估整个小区域人口的总体,总体健康状况或趋势。这种方法-BioSCIM-将监控原始污水中与人类疾病,压力或健康广泛相关的特定生物标记。大量未开发的化学信息存在于原始污水中,其中一部分包括人类对暴露和影响的生物标记。 BioSCIM具有利用污水中生物标记物来实现许多目标的潜力。 BioSCIM的许多潜在应用之一可以使用各种生物标志物,这些生物标志物是由当地人口中所有个体的集体排泄所导致的。使用一类生物标记物(其测量集体的系统性氧化应激)-异前列腺素(来自某些多不饱和脂肪酸的类似于前列腺素的自由基催化氧化产物)展示了一个原型实例。对原始污水进行采样和分析具有巨大的潜力,可以快速确定整个社区的生物标志物总量。介绍了BioSCIM的基本原理,以及其在评估社区健康方面的预期局限性,挑战和潜在应用。通过BioSCIM进行的社区健康评估可以对不同人群进行健康状况的快速评估和比较,揭示隐藏的或正在出现的趋势或差异,并有助于评估应激源暴露与疾病之间的相关性(或假设)。

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