Graduate School of Bioscience, Nagahama Institute of Bio-Science and Technology, 1266 Tamura, Nagahama 526-0829, Japan.
Kenya Research Station, Institute of Tropical Medicine, Nagasaki University, 1-12-4 Sakamoto, Nagasaki 852-8523, Japan.
Int J Environ Res Public Health. 2022 May 9;19(9):5773. doi: 10.3390/ijerph19095773.
Metal mesh devices (MMDs) are novel materials that enable the precise separation of particles by size. Structurally, MMDs consist of a periodic arrangement of square apertures of characteristic shapes and sizes on a thin nickel membrane. The present study describes the separation of aerosol particles using palm-top-size collection devices equipped with three types of MMDs differing in pore size. Aerosols were collected at a farm located in the suburbs of Nairobi, Kenya; aerosol particles were isolated, and pathogenic bacteria were identified in this microflora by next-generation sequencing analysis. The composition of the microflora in aerosol particles was found to depend on particle size. Gene fragments were obtained from the collected aerosols by PCR using primers specific for the genus . This analysis showed that , a non-tuberculous species of mycobacteria that causes lung diseases, was present in these aerosols. These findings showed that application of this MMD analytical protocol to aerosol particles can facilitate the investigation of airborne pathogenic bacteria.
金属网器件(MMD)是一种新型材料,能够通过尺寸精确分离颗粒。在结构上,MMD 由薄镍膜上具有特征形状和尺寸的方形孔的周期性排列组成。本研究描述了使用配备三种不同孔径 MMD 的手掌大小的收集装置对气溶胶颗粒的分离。在肯尼亚内罗毕郊区的一个农场收集了气溶胶;通过下一代测序分析,在该微生物群中分离气溶胶颗粒并鉴定出致病性细菌。发现气溶胶颗粒中的微生物群组成取决于颗粒大小。通过使用针对属的引物对收集的气溶胶进行 PCR 从收集的气溶胶中获得基因片段。该分析表明,引起肺部疾病的非结核分枝杆菌种存在于这些气溶胶中。这些发现表明,将这种 MMD 分析方案应用于气溶胶颗粒可以促进对空气传播的致病性细菌的研究。