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首页> 外文期刊>Journal of biomedical nanotechnology >Morphological Changes in Magnetotactic Bacteria in Presence of Magnetic Fields
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Morphological Changes in Magnetotactic Bacteria in Presence of Magnetic Fields

机译:磁场作用下趋磁细菌的形态变化

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摘要

Nanomagnets manufactured by magnetotactic bacteria hold immense promise in magnetically directed drug delivery. In spite of discovery of these bacteria nearly three decades ago, it is not known how the bacteria are able to keep the nanomagnets trapped inside biological membranes (vesicles called magnetosomes). Understanding the physical nature of interactions, which these nanomagnets are capable of, is essential for envisaging any directed drug delivery application. We analyzed the morphology of two magnetic bacterial strains, Magnetospirillum magnetotacticum and Magnetospirillum gryphiswaldense, by defining the features of individual bacteria in two dimensions as length and width (in microns) under different magnetic fields using bar magnets. The control morphologies were taken to be the features of bacteria not under the influence of any magnetic field other than the earth's own. Using analysis of variance (ANOVA), we found statistically significant morphological changes in the M. magnetotacticum under different conditions. In contrast, there were no morphological differences observed for M. gryphiswaldense under any conditions. The width of M. magnetotacticum was found to be significantly higher for the control conditions compared to any magnetic condition. The length of M. magnetotacticum was found to be significantly lower when only south poles of the bar magnets (single or couple) were towards the bacteria. These results reflect a possible difference in packaging of magnetosomes inside two different strains of magnetic bacteria and imply that it may be important to select the right microbial source of nanomagnets (in contrast to using just any strain), trapped inside biological membranes, for potential targeted drug delivery applications, whereby enhanced sensitivity to external magnetic fields would be preferred.
机译:由趋磁细菌制造的纳米磁铁在磁控药物输送中具有广阔的前景。尽管在近三十年前发现了这些细菌,但尚不知道细菌如何能够将纳米磁体保留在生物膜(称为磁小体的囊泡)内。了解这些纳米磁铁能够进行的相互作用的物理性质,对于设想任何定向的药物输送应用至关重要。我们通过使用条形磁铁在不同磁场下定义二维和二维细菌的特征,即长度和宽度(以微米为单位),从而分析了两种磁性细菌菌株Magnetospirillum magnetotacticum和Magnetospirillum gryphiswaldense的形态。控制形态被认为是细菌的特征,除了地球自身以外,不受任何磁场的影响。使用方差分析(ANOVA),我们发现了在不同条件下磁趋线虫的统计学显着形态变化。相反,在任何条件下均未观察到格里菲斯瓦尔德姆氏菌的形态学差异。与对照相比,在任何条件下,对照条件下的磁放线虫的宽度都明显更高。当仅条形磁铁的南极(单个或一对)朝向细菌时,发现磁致定向放线杆菌的长度明显缩短。这些结果反映出两种不同磁性细菌菌株中磁小体的包装可能存在差异,这暗示着重要的是选择正确的微生物纳米源微生物源(与仅使用任何菌株相反),以捕获潜在的靶向性药物递送应用,因此对外部磁场的增强敏感性将是优选的。

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