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A systematic comparison of four bioaerosol generators: Affect on culturability and cell membrane integrity when aerosolizing Escherichia coli bacteria

机译:四种生物气溶胶产生剂的系统比较:雾化大肠杆菌细菌时对可培养性和细胞膜完整性的影响

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Bioaerosol research requires stable and reliable aerosol generators that can produce high particle concentrations with minimal damage to microorganisms. This study compared Collison nebulizer, Liquid Sparging Aerosolizer (LSA), C-Flow nebulizer, and a newly designed Single-Pass Aerosolizer with respect to their physical performance, and ability to preserve the culturability and structural integrity of bacteria. Escherichia coli bacteria were aerosolized at different air pressures, collected by a BioSampler and their Cell Membrane Damage Index (I_D), expressed as the fraction of 16S rRNA gene copies in the supernatant liquid versus the amount of 16S rRNA gene copies in the total sample (cell pellet plus supernatant), was determined. The I_D of E. coli aerosolized by the Collison and C-Flow nebulizers at 40 psi compared to aerosolization at 5 and 15 psi was significantly higher (p < 0.05). However, the I_D of E. coli aerosolized with the LSA and Single-Pass Aerosolizer did not seem to significantly depend on aerosolization pressure. The I_D of E. coli collected with a BioSampler was found to positively and significantly correlate (p=0.043) with the presence of airborne bacterial fragments (aerodynamic size range 0.37-0.523 nm) as measured by the Aerodynamic Particle Sizer. Increased loss of culturability was observed for bacteria aerosolized by the Collison nebulizer and Single-Pass Aerosolizer with increasing aerosolization pressure (p < 0.05), while no significant change in culturability was found for the other two generators as a function of aerosolization pressure. At particle output concentration of ~ 100 particles/cm~3, the Single-Pass Aerosolizer preserved the culturability of bacteria significantly better than the other three generators (p < 0.05). It also exhibited a significantly lower I_D (p < 0.001) and less culturability reduction (p=0.03) compared to the Collison nebulizer at particle output concentrations of ~ 1000 particles/cm~3. It is hoped that this study will help bioaerosol researchers select a bioaerosol generator and method best suiting their studies.
机译:生物气雾剂的研究需要稳定可靠的气雾剂发生器,该发生器可以产生高浓度的颗粒,而对微生物的损害却最小。这项研究比较了Collison雾化器,液体喷射雾化器(LSA),C-Flow雾化器和新设计的单程雾化器的物理性能以及保持细菌的可培养性和结构完整性的能力。大肠杆菌细菌在不同的气压下被雾化,由BioSampler收集,其细胞膜损伤指数(I_D)表示为上清液中16S rRNA基因拷贝的比例与总样品中16S rRNA基因拷贝的数量(确定细胞沉淀加上清液。 Collison和C-Flow雾化器以40 psi雾化的大肠杆菌的I_D与5和15 psi雾化的I_D显着更高(p <0.05)。但是,用LSA和单程雾化器雾化的大肠杆菌的I_D似乎并不明显依赖于雾化压力。发现用BioSampler收集的大肠杆菌的I_D与通过空气动力学粒径仪测量的空气传播细菌碎片(空气动力学尺寸范围为0.37-0.523 nm)的存在呈显着正相关(p = 0.043)。 Collison雾化器和单程雾化器雾化的细菌随着雾化压力的增加而增加了可培养性的损失(p <0.05),而其他两个发生器的雾化压力均未发现可培养性的显着变化。在粒子输出浓度为〜100个粒子/ cm〜3时,单程雾化器保留的细菌可培养性明显优于其他三个生成器(p <0.05)。与Collison雾化器相比,在〜1000个粒子/ cm〜3的粒子输出浓度下,它的I_D显着降低(p <0.001),可培养性降低程度较小(p = 0.03)。希望这项研究将帮助生物气溶胶研究人员选择最适合其研究的生物气溶胶发生器和方法。

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