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Nanoscale Concentration Quantification of Pharmaceutical Actives in Amorphous Polymer Matrices by Electron Energy-Loss Spectroscopy

机译:电子能量损失谱法对非晶态聚合物基质中药物活性成分的纳米级浓度定量

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We demonstrated the use of electron energy loss spectroscopy (EELS) to evaluate the composition of phenytoin:hydroxypropyl methylcellulose acetate succinate (HPMCAS) spin-coated solid dispersions (SDs). To overcome the inability of bright-field and high-angle annular dark-field TEM imaging to distinguish between glassy drug and polymer, we used the pi-pi* transition peak in the EELS spectrum to detect phenytoin within the HPMCAS matrix of the SD. The concentration of phenytoin within SDs of 10, 25, and 50 wt % drug loading was quantified by a multiple least-squares analysis. Evaluating the concentration of 50 different regions in each SD, we determined that phenytoin and HPMCAS are intimately mixed at a length scale of 200 nm, even for drug loadings up to 50 wt %. At length scales below 100 nm, the variance of the measured phenytoin concentration increases; we speculate that this increase is due to statistical fluctuations in local concentration and chemical changes induced by electron irradiation. We also performed EELS analysis of an annealed 25 wt % phenytoin SD and showed that the technique can resolve concentration differences between regions that are less than 50 nm apart. Our findings indicate that EELS is a useful tool for quantifying, with high accuracy and sub-100 nm spatial resolution, the composition of many pharmaceutical and soft matter systems.
机译:我们证明了使用电子能量损失谱(EELS)来评估苯妥英钠:乙酸丙基羟丙基甲基纤维素琥珀酸酯(HPMCAS)旋涂固体分散体(SDs)。为克服无法通过明场和高角度环形暗场TEM成像区分玻璃状药物和聚合物的方法,我们使用EELS光谱中的pi-pi *跃迁峰来检测SD的HPMCAS基质中的苯妥英钠。通过多重最小二乘分析来定量10、25和50 wt%载药量中SD中苯妥英的浓度。通过评估每个SD中50个不同区域的浓度,我们确定苯妥英钠和HPMCAS以200 nm的长度比例紧密混合,即使对于载药量高达50 wt%的情况也是如此。在小于100 nm的长度范围内,所测苯妥英浓度的方差增加;我们推测这种增加是由于局部浓度的统计波动和电子辐照引起的化学变化。我们还对退火的25 wt%苯妥英SD进行了EELS分析,结果表明该技术可以解决相距小于50 nm的区域之间的浓度差异。我们的发现表明,EELS是一种有用的工具,可用于以高精度和100 nm以下的空间分辨率定量许多药物和软物质系统的组成。

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