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A high throughput screening method for the nano-crystallization of salts of organic cations

机译:一种有机阳离子盐纳米结晶的高通量筛选方法

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摘要

The generation of solid salts of organic molecules is important to the chemical and pharmaceutical industry. Commonly used salt screening methods consume a lot of resources. We employed a combination of ion exchange screening and vapour diffusion for crystallization. This technique is semi-automatic and requires just nanoliters of the solution of the analyte to be crystallized. This high throughput screening yielded single crystals of sufficient size and quality for single-crystal X-ray structure determination using an in-house X-ray diffractometer. The broad scope of our method has been shown by challenging it with 7 very different organic cations, whose aqueous solubilities vary by a factor of almost 1000. At least one crystal structure for 6 out of 7 tested cations was determined; 4 out of the successful 6 ones had never been crystallized before. Our method is extremely attractive for high throughput salt screening, especially for active pharmaceutical ingredients (APIs), as about 40% of all APIs are cationic salts. Additionally, our screening is a new and very promising procedure for the crystallization of salts of organic cations.
机译:有机分子固体盐的生成对化学和制药工业很重要。常用的盐筛分方法消耗大量资源。我们采用了离子交换筛选和蒸汽扩散相结合的方法进行结晶。该技术是半自动的,只需要纳升的分析物溶液即可结晶。这种高通量筛选产生了足够大的尺寸和质量的单晶,用于使用内部X射线衍射仪确定单晶X射线结构。通过用7种非常不同的有机阳离子进行挑战,证明了我们方法的广泛范围,这些有机阳离子的水溶解度相差近1000倍。确定了7种受测阳离子中至少6种的晶体结构。成功的6个中有4个从未结晶过。我们的方法对于高通量盐筛选特别是对于活性药物成分(API)极具吸引力,因为所有API中约40%是阳离子盐。另外,我们的筛选是有机阳离子盐结晶的一种非常有希望的新方法。

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