用 SAFT-γ Mie 方法预测氨基酸和肽的溶解度:中性和带电模型

IF 3.9 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Ahmed Alyazidi, Shubhani Paliwal, Felipe A. Perdomo, Amy Mead, Mingxia Guo, Jerry Y. Y. Heng, Thomas Bernet, Andrew J. Haslam, Claire S. Adjiman, George Jackson and Amparo Galindo*, 
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引用次数: 0

摘要

可用于准确预测氨基酸和肽溶解度的建模方法对于设计新的制药工艺和开发基于肽的新疗法具有重要意义。我们研究了 SAFT-γ 米氏基团贡献法预测甘氨酸、丙氨酸、缬氨酸、亮氨酸和丝氨酸以及含有这些氨基酸的二肽和三肽的水溶性和醇溶性的能力。利用含有氨基酸和肽相关基团但没有溶解度数据(甘氨酸除外)的化合物和混合物的实验热力学和相平衡数据,对新的 SAFT-γ Mie 基团相互作用进行了表征。一旦所有基团相互作用参数都已确定,就可以进行预测性固液溶解度计算。考虑了中性和带电模型,以明确解释分子在水溶液中的齐聚物性质,并将溶液的溶解度作为 pH 值的函数。此外,还详细讨论了用于表示氨基酸离子和齐聚物形式的分子模型和赫尔姆霍兹自由能表达式,以及它们在溶液中的标示。总体而言,研究结果与现有数据非常吻合,所研究氨基酸的 283 个溶解度数据点的摩尔分数绝对平均偏差(AAD)为 0.0038;当在等电点研究体系并使用中性模型时,141 个肽溶解度点的摩尔分数绝对平均偏差(AAD)为 0.02128。如果采用带电模型,还能准确预测在一定温度范围内溶解度与 pH 值的函数关系。这些结果证实了 SAFT-γ Mie 方法的预测准确性,并为今后涉及较大多肽的研究铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predicting the Solubility of Amino Acids and Peptides with the SAFT-γ Mie Approach: Neutral and Charged Models

Modeling approaches that can be used to predict accurately the solubility of amino acids and peptides are of interest for the design of new pharmaceutical processes and in the development of new peptide-based therapeutics. We investigate the capability of the SAFT-γ Mie group-contribution approach to predict the aqueous and alcohol solubility of glycine, alananine, valine, leucine, and serine and of di- and tripeptides containing these amino acids. New SAFT-γ Mie group interactions are characterized using experimental thermodynamic and phase-equilibrium data of compounds and mixtures that contain groups relevant to the amino acids and peptides, but no solubility data (except for the case of glycine). Once all the group interaction parameters are developed, predictive solid–liquid solubility calculations are carried out. Neutral and charged models are considered to account explicitly for the zwitterionic nature of the molecules in aqueous solution, and the solubility of the solution is presented as a function of pH. A detailed discussion of the molecular models and Helmholtz free-energy expressions used to represent the ionic and zwitterionic forms of the amino acids, together with their speciation in solution is also provided. Overall, very good agreement with available data is shown, with an absolute average deviation (AAD) in mole fraction of 0.0038 over 283 solubility data points for the amino acids studied and an AAD in mole fraction of 0.02128 over 141 peptide-solubility points when the systems are studied at their isoelectric point and neutral models are used. The solubility as a function of pH for a range of temperatures is also predicted accurately when charged models are incorporated. These results confirm the predictive accuracy of the SAFT-γ Mie method and pave the way for future studies involving larger peptides.

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来源期刊
Industrial & Engineering Chemistry Research
Industrial & Engineering Chemistry Research 工程技术-工程:化工
CiteScore
7.40
自引率
7.10%
发文量
1467
审稿时长
2.8 months
期刊介绍: ndustrial & Engineering Chemistry, with variations in title and format, has been published since 1909 by the American Chemical Society. Industrial & Engineering Chemistry Research is a weekly publication that reports industrial and academic research in the broad fields of applied chemistry and chemical engineering with special focus on fundamentals, processes, and products.
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