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Application of Paramagnetically Tagged Molecules for Magnetic Resonance Imaging of Biofilm Mass Transport Processes

机译:顺磁标记分子在生物膜质量传输过程的磁共振成像中的应用

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Molecules become readily visible by magnetic resonance imaging (MRI) when labeled with a paramagnetic tag. Consequently, MRI can be used to image their transport through porous media. In this study, we demonstrated that this method could be applied to image mass transport processes in biofilms. The transport of a complex of gadolinium and diethylenetriamine pentaacetic acid (Gd-DTPA), a commercially available paramagnetic molecule, was imaged both in agar (as a homogeneous test system) and in a phototrophic biofilm. The images collected were T _(1) weighted, where T _(1) is an MRI property of the biofilm and is dependent on Gd-DTPA concentration. A calibration protocol was applied to convert T _(1) parameter maps into concentration maps, thus revealing the spatially resolved concentrations of this tracer at different time intervals. Comparing the data obtained from the agar experiment with data from a one-dimensional diffusion model revealed that transport of Gd-DTPA in agar was purely via diffusion, with a diffusion coefficient of 7.2 × 10~(?10) m~(2) s~(?1). In contrast, comparison of data from the phototrophic biofilm experiment with data from a two-dimensional diffusion model revealed that transport of Gd-DTPA inside the biofilm was by both diffusion and advection, equivalent to a diffusion coefficient of 1.04 × 10~(?9) m~(2) s~(?1). This technology can be used to further explore mass transport processes in biofilms, either by using the wide range of commercially available paramagnetically tagged molecules and nanoparticles or by using bespoke tagged molecules.
机译:当分子标记有顺磁性标签时,通过磁共振成像(MRI)可以轻松看到分子。因此,MRI可用于成像其通过多孔介质的传输。在这项研究中,我们证明了这种方法可以应用于生物膜中的图像质量传输过程。 a和二亚乙基三胺五乙酸(Gd-DTPA)(一种可商购的顺磁性分子)的复合物的运输在琼脂(作为均质测试系统)和光养生物膜中都成像。收集的图像经过T_(1)加权,其中T_(1)是生物膜的MRI特性,并取决于Gd-DTPA浓度。应用校准协议将T_(1)参数图转换为浓度图,从而揭示该示踪剂在不同时间间隔的空间分辨浓度。将琼脂实验获得的数据与一维扩散模型的数据进行比较,发现Gd-DTPA在琼脂中的迁移完全是通过扩散,扩散系数为7.2×10〜(?10)m〜(2)s 〜(?1)。相反,将光养生物膜实验的数据与二维扩散模型的数据进行比较后发现,Gd-DTPA在生物膜内部的迁移是通过扩散和对流进行的,相当于扩散系数为1.04×10〜(?9) )m〜(2)s〜(?1)。通过使用各种可商购的顺磁标记分子和纳米颗粒,或者通过使用定制标记分子,该技术可用于进一步探索生物膜中的传质过程。

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