Biological Particles in the Indoor Environment

Ian Colbeck, C. Whitby
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引用次数: 6

Abstract

Airborne microorganisms are very difficult to assess accurately under field conditions owing to differences in the sample collection efficiency of the selected sampler and variations in DNA extraction efficiencies. Consequently, bioaerosol abundance and biodiversity can be underestimated, making it more difficult to link specific bioaerosol components to diseases and human health risk. Owing to the low biomass in air samples, it remains a challenge to obtain a representative microbiological sample to recover sufficient DNA for downstream analyses. Improved sampling methods are particularly crucial, especially for investigating viral communities, owing to the extremely low biomass of viral particles in the air compared with other environments. Without detailed information about sampling, characterization and enumeration techniques, interpretation of exposure level is very difficult. Despite this, bioaerosol research has been enhanced by molecular tools, especially next-generation sequencing approaches that have allowed faster and more detailed characterization of air samples.
室内环境中的生物微粒
由于所选采样器的样品收集效率和DNA提取效率的差异,在现场条件下很难准确评估空气中的微生物。因此,生物气溶胶的丰度和生物多样性可能被低估,从而更难以将特定生物气溶胶成分与疾病和人类健康风险联系起来。由于空气样本中的生物量低,获得具有代表性的微生物样本以恢复足够的DNA用于下游分析仍然是一个挑战。由于空气中病毒颗粒的生物量与其他环境相比极低,因此改进采样方法尤其重要,特别是对于调查病毒群落。如果没有关于采样、表征和枚举技术的详细信息,解释暴露水平是非常困难的。尽管如此,生物气溶胶的研究已经得到了分子工具的加强,尤其是下一代测序方法,它可以更快、更详细地表征空气样本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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