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Formation of organic molecular nanocrystals under rigid confinement with analysis by solid state NMR

机译:通过固态NmR分析在刚性约束下形成有机分子纳米晶体

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摘要

Crystallization in rigid confinement is a promising method to obtain organic molecular nanocrystals. However, the crystallization behavior and the related characterization methods are not well studied. Here we present a systematic study of the nucleation of organic molecular nanocrystals in rigid pores. Four different compounds were studied, ibuprofen, fenofibrate, griseofulvin, and indomethacin, which range from simple to complex molecules. Solid-state Nuclear Magnetic Resonance (NMR) was employed to analyse the structure of these compounds inside pores which are difficult to characterize by other analytical methods. We successfully demonstrated the production of nano-crystalline ibuprofen, fenofibrate and griseofulvin in porous silica particles with ~ 40 nm pores. These nanocrystals showed significant enhancement in dissolution rates. These results help advance the fundamental understanding of nucleation under rigid confinement and may lead to potential applications in developing new formulations in the pharmaceutical industry.
机译:在刚性约束下结晶是获得有机分子纳米晶体的有前途的方法。然而,结晶行为和相关的表征方法尚未得到很好的研究。在这里,我们目前对刚性孔中有机分子纳米晶体成核的系统研究。研究了四种不同的化合物,布洛芬,非诺贝特,灰黄霉素和吲哚美辛,其范围从简单到复杂。固态核磁共振(NMR)用于分析这些化合物在孔内的结构,这些结构很难用其他分析方法表征。我们成功地证明了具有约40 nm孔隙的多孔二氧化硅颗粒中纳米布洛芬,非诺贝特和灰黄霉素的生产。这些纳米晶体显示出溶解速率的显着提高。这些结果有助于提高对刚性约束下成核的基本认识,并可能导致在制药工业开发新制剂方面的潜在应用。

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