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Relative Contributions of Solubility and Mobility to the Stability of Amorphous Solid Dispersions of Poorly Soluble Drugs: A Molecular Dynamics Simulation Study

机译:溶解度和迁移率对可溶性药物不定形固体分散体的相对贡献:分子动力学模拟研究

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摘要

Amorphous solid dispersions are considered a promising formulation strategy for the oral delivery of poorly soluble drugs. The limiting factor for the applicability of this approach is the physical (in)stability of the amorphous phase in solid samples. Minimizing the risk of reduced shelf life for a new drug by establishing a suitable excipient/polymer-type from first principles would be desirable to accelerate formulation development. Here, we perform Molecular Dynamics simulations to determine properties of blends of eight different polymer–small molecule drug combinations for which stability data are available from a consistent set of literature data. We calculate thermodynamic factors (mixing energies) as well as mobilities (diffusion rates and roto-vibrational fluctuations). We find that either of the two factors, mobility and energetics, can determine the relative stability of the amorphous form for a given drug. Which factor is rate limiting depends on physico-chemical properties of the drug and the excipients/polymers. The methods outlined here can be readily employed for an in silico pre-screening of different excipients for a given drug to establish a qualitative ranking of the expected relative stabilities, thereby accelerating and streamlining formulation development.
机译:无定形固体分散体被认为是的难溶性药物的口服给药有希望制定战略。对于这种方法的适用性的限制因素是固体样品中的非晶相的物理(IN)稳定性。通过建立合适的赋形剂/聚合物型从第一原理最小化减少货架寿命的新药物的风险将期望加速配方开发。在这里,我们进行分子动力学模拟,以确定的八个不同的聚合物的小分子药物的组合对于其可从一组一致的文献数据的稳定性数据共混物的性能。我们计算的热力学因素(混合能量)以及迁移率(扩散速度和旋转式振动波动)。我们发现,无论是两个因素,流动性和能量学,可以确定无定形形式的相对稳定对于一个给定的药物。其中因素是速率限制取决于药物和赋形剂/聚合物的物理 - 化学性质。这里概述的方法可以容易地用于一种在不同的赋形剂的硅片预先筛选对于给定的药物建立一个定性居预期相对稳定性的,从而加速和简化配方开发。

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