Functionalization of whole‐cell bacterial reporters with magnetic nanoparticles

生物搬运器 表面改性 生物修复 化学 纳米技术 磁性纳米粒子 生物传感器 纳米颗粒 材料科学 生物化学 报告基因 细菌 生物 基因表达 物理化学 基因 遗传学
作者
Dayi Zhang,Rawil Fakhrullin,Mustafa Özmen,Hui Wang,Jian Wang,Vesselin N. Paunov,Guanghe Li,Wei E. Huang
出处
期刊:Microbial biotechnology [Wiley]
卷期号:4 (1): 89-97 被引量:97
标识
DOI:10.1111/j.1751-7915.2010.00228.x
摘要

We developed a biocompatible and highly efficient approach for functionalization of bacterial cell wall with magnetic nanoparticles (MNPs). Three Acinetobacter baylyi ADP1 chromosomally based bioreporters, which were genetically engineered to express bioluminescence in response to salicylate, toluene/ xylene and alkanes, were functionalized with 18 3 nm iron oxide MNPs to acquire magnetic function. The efficiency of MNPs functionalization of Acinetobacter bioreporters was 99.96 0.01%. The MNPs-functionalized bioreporters (MFBs) can be remotely controlled and collected by an external magnetic field. The MFBs were all viable and functional as good as the native cells in terms of sensitivity, specificity and quantitative response. More importantly, we demonstrated that salicylate sensing MFBs can be applied to sediments and garden soils, and semiquantitatively detect salicylate in those samples by discriminably recovering MFBs with a permanent magnet. The magnetically functionalized cells are especially useful to complex environments in which the indigenous cells, particles and impurities may interfere with direct measurement of bioreporter cells and conventional filtration is not applicable to distinguish and harvest bioreporters. The approach described here provides a powerful tool to remotely control and selectively manipulate MNPs-unctionalized cells in water and soils. It would have a potential in the application of environmental microbiology, such as bioremediation enhancement and environment monitoring and assessment.
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