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COSMOPharm:COSMO-SAC 法评估药物聚合物的药用无定形固体分散体的相容性。

COSMOPharm: Drug-Polymer Compatibility of Pharmaceutical Amorphous Solid Dispersions from COSMO-SAC.

机构信息

Thermodynamics, Technische Universität Berlin, Ernst-Reuter-Platz 1, 10587 Berlin, Germany.

Department of Physical Chemistry, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague 6, Czechia.

出版信息

Mol Pharm. 2024 Sep 2;21(9):4395-4415. doi: 10.1021/acs.molpharmaceut.4c00342. Epub 2024 Jul 30.

Abstract

The quantum mechanics-aided COSMO-SAC activity coefficient model is applied and systematically examined for predicting the thermodynamic compatibility of drugs and polymers. The drug-polymer compatibility is a key aspect in the rational selection of optimal polymeric carriers for pharmaceutical amorphous solid dispersions (ASD) that enhance drug bioavailability. The drug-polymer compatibility is evaluated in terms of both solubility and miscibility, calculated using standard thermodynamic equilibrium relations based on the activity coefficients predicted by COSMO-SAC. As inherent to COSMO-SAC, our approach relies only on quantum-mechanically derived σ-profiles of the considered molecular species and involves no parameter fitting to experimental data. All σ-profiles used were determined in this work, with those of the polymers being derived from their shorter oligomers by replicating the properties of their central monomer unit(s). Quantitatively, COSMO-SAC achieved an overall average absolute deviation of 13% in weight fraction drug solubility predictions compared to experimental data. Qualitatively, COSMO-SAC correctly categorized different polymer types in terms of their compatibility with drugs and provided meaningful estimations of the amorphous-amorphous phase separation. Furthermore, we analyzed the sensitivity of the COSMO-SAC results for ASD to different model configurations and σ-profiles of polymers. In general, while the free volume and dispersion terms exerted a limited effect on predictions, the structures of oligomers used to produce σ-profiles of polymers appeared to be more important, especially in the case of strongly interacting polymers. Explanations for these observations are provided. COSMO-SAC proved to be an efficient method for compatibility prediction and polymer screening in ASD, particularly in terms of its performance-cost ratio, as it relies only on first-principles calculations for the considered molecular species. The open-source nature of both COSMO-SAC and the Python-based tool COSMOPharm, developed in this work for predicting the API-polymer thermodynamic compatibility, invites interested readers to explore and utilize this method for further research or assistance in the design of pharmaceutical formulations.

摘要

量子力学辅助的 COSMO-SAC 活度系数模型被应用于预测药物和聚合物的热力学相容性,并进行了系统的检验。药物-聚合物相容性是合理选择药用无定形固体分散体(ASD)最佳聚合物载体的关键方面,可提高药物的生物利用度。药物-聚合物相容性是通过根据 COSMO-SAC 预测的活度系数使用标准热力学平衡关系来评估溶解度和混溶性。与 COSMO-SAC 固有地一样,我们的方法仅依赖于所考虑的分子物种的量子力学衍生的 σ-轮廓,并且不涉及对实验数据的参数拟合。在这项工作中确定了所有使用的 σ-轮廓,并且聚合物的 σ-轮廓是通过复制其中心单体单元的性质从较短的低聚物衍生而来的。从数量上看,与实验数据相比,COSMO-SAC 在药物重量分数溶解度预测方面的总体平均绝对偏差为 13%。从质量上看,COSMO-SAC 根据药物的相容性正确地对不同的聚合物类型进行分类,并对无定形-无定形相分离提供了有意义的估计。此外,我们分析了 ASD 中 COSMO-SAC 结果对不同模型配置和聚合物 σ-轮廓的敏感性。一般来说,虽然自由体积和色散项对预测的影响有限,但用于生成聚合物 σ-轮廓的低聚物的结构似乎更为重要,尤其是在相互作用较强的聚合物的情况下。提供了对这些观察结果的解释。COSMO-SAC 被证明是一种在 ASD 中进行相容性预测和聚合物筛选的有效方法,尤其是在其性能成本比方面,因为它仅依赖于所考虑的分子物种的第一性原理计算。在这项工作中开发的用于预测 API-聚合物热力学相容性的 COSMO-SAC 和基于 Python 的工具 COSMOPharm 的开源性质,邀请感兴趣的读者探索并利用这种方法进行进一步的研究或在药物制剂设计方面提供帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ba/11372840/2692e081f444/mp4c00342_0001.jpg

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