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国家自然科学基金(21277007)

作品数:4 被引量:17H指数:2
相关作者:要茂盛李菁更多>>
相关机构:北京大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国际科技合作与交流专项项目更多>>
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Development of a novel conductance-based technology for environmental bacterial sensing被引量:1
2013年
In this study, a simple impedance based technology for measuring bacterial concentrations was developed. The measurement system includes the signal amplification, copper probes and a sample loader. During the experiments, the conductance of Bacillus subtilis var niger, Pseudomonas fluorescens, and Escherichia coli were measured using the combination of a pre-amplifier and a lock-in amplifier. The conductance data were modeled verses the bacterial concentrations. Results indicated that the relationship between the conductance of bacterial suspensions and their concentrations follows a generic model: Y=C1+C2×e ( X/C3 ) , where Y is the conductance (S), X is the bacterial concentration (Number/mL: abbreviated to N/mL) for all species tested, and C1 3 are constants. Gram negative P. fluorescens and E. coli assumed similar conductance curves, which were flatter than that of gram positive B. subtilis var niger. For P. fluorescens and E. coli the culturing technique resulted in higher concentration levels (statistically significant) from 2 to 4 times that measured by the impedance based technology. For B. subtilis var niger, both methods resulted in similar concentration levels. These differences might be due to membrane types, initial culturability and the obtained conductance curves. The impedance based technology here was shown to obtain the bacterial concentration instantly, holding broad promise in realtime monitoring biological agents.
SHEN FangXiaTAN MiaoMiaoXU HongXU ZhenChengYAO MaoSheng
关键词:细菌检测电导数BACILLUS阻抗测量
空气介质中耐药细菌和耐药基因的研究进展被引量:5
2018年
全球正在面临着由于耐药细菌感染和抗菌药物短缺而导致的更多死亡,而其重要的空气传播途径未能受到足够的关注与重视。本文结合最新文献,综述了耐药细菌和基因在不同环境空气介质中的丰度、分布、传播等方面的研究进展,并讨论监测防控的相关措施。耐药细菌和基因在职业暴露场所及其周边空气中的丰度普遍高于普通室内与室外的空气环境。与其他环境介质相比,空气介质蕴含着种类更加丰富的耐药基因,且可以通过附着在空气颗粒物上进行扩散。可通过加强监测、研究其传播机制和生物毒性以及研发病原体快速甄别技术和新型绿色抗菌药物等,有效防控细菌耐药性对人体健康及生态环境的危害。
李菁要茂盛
关键词:抗菌药颗粒物耐药基因
Negatively and positively charged bacterial aerosol concentration and diversity in natural environments被引量:1
2013年
Bioaerosol charge information is of vital importance for their electrostatic collection. Here, electrostatic means and molecular tools were applied to studying bioaerosol charge dynamics. Positively or negatively charged bioaerosols were collected using an electrostatic sampler operated with a field strength of 1.1 kV cm 1 at a flow rate of 3 L min 1 for 40 min. Those with fewer or no charges bypassing the sampler were also collected using a filter at the downstream of the electrostatic sampler in one environment. The experiments were independently conducted three times in three different environments. The collected bacterial aerosols were cultured directly on agar plates at 26°C, and the colony forming units (CFU) were manually counted. In addition, the CFUs were washed off from the agar plates, and further subjected to polymerase chain reaction (PCR) and denaturing gradient gel electrophoresis (DGGE) for culturable diversity analysis. The results revealed remarkable differences in positively and negatively charged culturable bacterial aerosol concentration and diversity among the studied environments. In the office environment, negatively charged culturable bacterial aerosols appeared to dominate (P = 0.0489), while in outdoor and hotel environments both polarities had similar concentration levels (P = 0.078, P = 0.88, respectively). DGGE patterns for positively charged culturable bacterial aerosols were shown strikingly different from those of negatively charged regardless of the sampling environments. In addition, for each of the environments positively charged culturable bacterial aerosols collected were found to have more band pattern similarity with those positively charged for respective regions of agar plates than those negatively charged, and vice versa. The information developed here is useful for developing efficient electrostatic sampling protocols for bioaerosols.
SHEN FangXiaKAI WeiYAO MaoSheng
关键词:气溶胶浓度办公环境生物气溶胶变性梯度凝胶电泳
Microbial aerosol characteristics in highly polluted and nearpristine environments featuring different climatic conditions被引量:10
2015年
There is an increasing interest in understanding ambient bioaerosols due to their roles both in health and in climate. Here, we deployed an Ultraviolet Aerodynamic Particle Sizer to monitor viable(fluorescent) bioaerosol concentration levels at city centers(highly polluted) and their corresponding suburbs(near pristine)(total 40 locations) in 11 provinces featuring different climate zones in China between July 16 and 28, 2013. The concentration levels of viable bioaerosol particles(Bio PM) of [0.5 lm were measured, and corresponding percentages of Bio PM%(biological fraction of total PM) and Bio PM2.5%(biological fraction of PM2.5) in particulate matter(PM)and Bio PM, respectively, were determined. For some key cities, indoor viable bioaerosol levels were also obtained.In addition, bacterial structures of the air samples collected across these monitoring locations were studied using pyrosequencing. Bio PM concentration levels ranged from2.1 9 104 to 2.4 9 105/m3 for city centers [Bio PM% =6.4 %(±6.3 %)] and 0.5 9 104 to 4.7 9 105/m3 for suburbs [Bio PM% = 10 %(±8.7 %)]. Distinctive bioaerosol size distribution patterns were observed for different climate zones, e.g., some had fluorescence peaks at 3 lm, while the majority had peaks at 1 lm. Ambient bacterial aerosol community structures were also found different for different geophysical locations. Results suggest that there was a poor overall relationship between PM and Bio PM across 40 monitoring locations(R2= 0.081, two-tailed P value =0.07435). Generally, city centers had higher PM concentrations than suburbs, but not Bio PM and Bio PM%. Indoor bioaerosol levels were found at least tenfold higher than those corresponding outdoors. Bacillus was observed to dominate the bacterial aerosol community in the air sample.
Kai WeiYunhao ZhengJing LiFangxia ShenZhuanglei ZouHanqing FanXinyue LiChang-yu WuMaosheng Yao
关键词:微生物气溶胶气候条件群落结构
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