首页> 外文期刊>Journal of Pharmacy and Pharmaceutical Sciences >Understanding the Role of Sodium Lauryl Sulfate on the Biorelevant Solubility of a Combination of Poorly Water-Soluble Drugs Using High Throughput Experimentation and Mechanistic Absorption Modeling
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Understanding the Role of Sodium Lauryl Sulfate on the Biorelevant Solubility of a Combination of Poorly Water-Soluble Drugs Using High Throughput Experimentation and Mechanistic Absorption Modeling

机译:了解硫酸钠的作用,使用高通量实验和机械吸收建模对水溶性药物差的组合生物的溶解度

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This study investigates the influence of surfactant sodium lauryl sulfate (SLS) on the solubility of poorly-water soluble drug substances, model Compound X and Compound Y, used in a fixed dose combination oral solid dosage form. To determine the impact of SLS concentration on the solubility of compounds X and Y, we experimentally determined the critical micelle concentration (CMC) of SLS in water, simulated gastric fluid (SGF), and fed state simulated intestinal fluid (FeSSIF) in the presence of Compound X and Compound Y using UV/Visible spectrophotometry at 25°C. The aggregation of SLS was characterized by calculating the standard Gibbs free energy of micellization in all the media investigated.? To enhance the understanding of SLS aggregation, high throughput experiments and in-vivo mechanistic modelling were used to determine the effect of increasing levels of SLS on the solubility of compounds X and Y as both single agent and combination products to be formulated into a suitable oral solid dosage form. Micellar formation of SLS is a spontaneous process as shown by the negative values of the standard free energy of micellization. The CMC of SLS in the various media investigated in the presence of compounds X and Y decreases in the following order: water FeSSIF SGF. However, the aggregation of SLS in the various media is overall more spontaneous in the following order: SGFFeSSIFwater. Using high throughput experimentation and in-vivo mechanistic modelling, it was determined that a combination oral solid product of compounds X and Y will have optimum solubility and in-vivo absorption if 2 mg of SLS was used in the oral solid dosage form.? The results obtained from this study will help broaden the understanding of the micellization process involving SLS and poorly-water soluble drugs used in combination oral solid dosage forms.
机译:本研究研究了表面活性剂十二烷基硫酸钠(SLS)对水溶性药物,模型化合物X和化合物Y的溶解度的影响,用于固定剂量组合口服固体剂型。为了确定SLS浓度对化合物X和Y的溶解度的影响,我们在存在的情况下通过实验确定水,模拟胃液(SGF)和饲养状态模拟肠液(Fessif)中的SLS的临界胶束浓度(CMC)在25℃下使用UV /可见分光光度法的化合物X和化合物Y。通过在研究中计算胶束化的标准GIBBS自由能量,表征了SLS的聚集。为了增强对SLS聚集的理解,使用高通量实验和体内机械建模来确定SLS水平增加对化合物X和Y作为单一剂和组合产物的溶解度的效果,以配制成合适的口服固体剂型。 SLS的胶束形成是一种自发过程,如胶束的标准自由能的负值所示。在化合物X和Y存在下,在化合物X和Y存在下研究的各种介质中的SLS的CMC在以下顺序下减少:水> FESIF> SGF。然而,各种介质中的SLS的聚集在以下顺序中更自发:SGF> Fessif>水。使用高通量实验和体内机械建模,确定化合物X和Y的组合口服固体产物将具有最佳的溶解度,如果在口腔固体剂型中使用2mg SLS,则具有最佳的溶解度和体内吸收。本研究中获得的结果将有助于扩大对涉及SLS和贫瘠水溶性药物中使用的胶束化过程的理解,这些方法组合口服固体剂型。

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