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Depth-Profiling of Environmental Pharmaceuticals in Biological Tissue by Solid-Phase Microextraction

机译:固相微萃取技术在生物组织中对环境药物进行深度分析

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摘要

The parallel in vivo measurement of chemicals at various locations in living tissues is an important approach furthering our understanding of biological uptake, transportation, and transformation dynamics. However, from a technical perspective, such measurements are difficult to perform with traditional in vivo sampling techniques, especially in freely moving organisms such as fish. These technical challenges can be well addressed by the proposed depth-profiling solid-phase microextraction (DP-SPME) technique, which utilizes a single soft, flexible fiber with high spatial resolution. The analytical accuracy and depth-profiling capability of DP-SPME was established in vitro within a multilayer gel system and an onion artificially contaminated with pharmaceuticals. In vivo efficacy was demonstrated by monitoring pharmaceutical distribution and accumulation in fish muscle tissue. The DP-SPME method was validated against pre-equilibrium SPME (using multiple small fibers), equilibrium SPME, and liquid extraction methods; results indicated DP-SPME significantly improved precision and data quality due to decreased intersample variation. No significant adverse effects or increases in mortality were observed in comparisons of fish sampled by DP-SPME relative to comparable fish not sampled by this method. Consequently, the simplicity, effectiveness, and improved precision of the technique suggest the potential for widespread application of DP-SPME in the sampling of heterogeneous biotic and abiotic systems.
机译:活体内组织中不同位置的化学物质的体内平行测量是一种重要的方法,可进一步了解生物吸收,运输和转化动力学。但是,从技术角度来看,使用传统的体内采样技术很难执行此类测量,尤其是在自由移动的生物(如鱼)中。提出的深度剖析固相微萃取(DP-SPME)技术可以很好地解决这些技术难题,该技术利用具有高空间分辨率的单根柔软柔性纤维。 DP-SPME的分析精度和深度分析能力是在多层凝胶系统和受药物人工污染的洋葱中体外建立的。通过监测药物在鱼肌肉组织中的分布和积累证明了体内功效。 DP-SPME方法已针对平衡前SPME(使用多条小纤维),平衡SPME和液体萃取方法进行了验证;结果表明,由于减少了样本间差异,DP-SPME显着提高了精度和数据质量。与通过这种方法未采样的可比较鱼相比,通过DP-SPME采样的鱼没有观察到明显的不利影响或死亡率增加。因此,该技术的简单性,有效性和改进的精度表明,DP-SPME在异质生物和非生物系统采样中的广泛应用潜力。

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