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Impact of Relative Humidity and Collection Media on Mycobacteriophage D29 Aerosol

机译:相对湿度和收集介质对分枝杆菌噬菌体D29气溶胶的影响

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This study was conducted to evaluate the effect of aerosol generation, methods of sampling, storage conditions, and relative humidity on the culturability of the mycobacteriophage D29. The lytic phage D29 can kill Mycobacterium tuberculosis , and the phage aerosol can be treated as a potential tool for tuberculosis treatment. The culturability of D29 was tested using a test chamber designed for the bioaerosols research against three spray liquids (deionized water, phosphate-buffered saline [PBS], and normal saline), four collection media (suspension medium [SM], nutrient broth, PBS, and deionized water), two sampling systems (the all-glass impinger AGI-30 and the Biosampler) and across a range of humidities (20 to 90%). The effect of storage conditions on the culturability of collected sample was also evaluated for the AGI-30 impinger. The results proved that viable phage D29 particles generated by deionized water were approximately 30- and 300-fold higher than PBS and normal saline, respectively. As collection media, SM buffer and nutrient broth were observed to yield a higher number of plaques compared to PBS and deionized water. No difference was observed in collection efficiency between AGI-30 and Biosampler with two detection methods (culture-based technique and real-time PCR). The culturability of collected D29 in SM buffer or nutrient broth can be maintained up to 12 h irrespective of storage temperature. Relative humidity was found to strongly influence airborne D29 culturability which is 2- to 20-fold higher in low humidity (25%) than medium (55%) or high (85%) humidity. This research will help identify the optimal means for the application of D29 aerosol in animal inhalation experiments.
机译:进行这项研究以评估气溶胶产生,采样方法,储存条件和相对湿度对分枝杆菌D29可培养性的影响。裂解性噬菌体D29可以杀死结核分枝杆菌,噬菌体气溶胶可以作为治疗结核病的潜在工具。使用针对生物气溶胶研究设计的测试箱,针对三种喷雾液(去离子水,磷酸盐缓冲盐水[PBS]和生理盐水),四种收集介质(悬浮培养基[SM],营养液,PBS)测试了D29的可培养性,去离子水),两个采样系统(全玻璃撞击器AGI-30和Biosampler),并且具有一定的湿度范围(20%至90%)。还针对AGI-30冲击器评估了储存条件对收集样品的可培养性的影响。结果证明,去离子水产生的活噬菌体D29颗粒分别比PBS和生理盐水高30倍和300倍。作为收集介质,与PBS和去离子水相比,观察到SM缓冲液和营养肉汤可产生更多的菌斑。两种检测方法(基于培养的技术和实时PCR)在AGI-30和Biosampler之间的收集效率上均未观察到差异。不论储存温度如何,收集的D29在SM缓冲液或营养肉汤中的可培养性都可以维持长达12小时。发现相对湿度对机载D29的可培养性有很大影响,在低湿度(25%)时,空气中D29的可培养性比中湿度(55%)或高(85%)高出2到20倍。这项研究将有助于确定在动物吸入实验中应用D29气雾剂的最佳方法。

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