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考虑离子态在模拟药物对污水污泥吸附中的作用。

Considering ionic state in modeling sorption of pharmaceuticals to sewage sludge.

机构信息

Umeå University, Department of Chemistry, SE-901 87 Umeå, Sweden.

Umeå University, Department of Chemistry, SE-901 87 Umeå, Sweden.

出版信息

Chemosphere. 2016 Dec;165:284-293. doi: 10.1016/j.chemosphere.2016.09.014. Epub 2016 Sep 30.

Abstract

Information on the partitioning of chemicals between particulate matter and water in sewage treatment plants (STPs) can be used to predict their subsequent environmental fate. However, this information can be challenging to acquire, especially for pharmaceuticals that are frequently present in ionized forms. This study investigated the relationship between the ionization state of active pharmaceutical ingredients (APIs) and their partitioning between water and sludge in STPs. We also investigated the underlying mechanisms of sludge sorption by using chemical descriptors based on ionized structures, and evaluated the usefulness of these descriptors in quantitative structure-property relationship (QSPR) modeling. K values were collected for 110 APIs, which were classified as neutral, positive, or negative at pH 7. The models with the highest performance had the RY and Q values of above 0.75 and 0.65, respectively. We found that the dominant intermolecular forces governing the interactions of neutral and positively charged APIs with sludge are hydrophobic, pi-pi, and dipole-dipole interactions, whereas the interactions of negatively charged APIs with sludge were mainly governed by covalent bonding as well as ion-ion, ion-dipole, and dipole-dipole interactions; hydrophobicity-driven interactions were rather unimportant. Including charge-related descriptors improved the models' performance by 5-10%, underlining the importance of electrostatic interactions. The use of descriptors calculated for ionized structures did not improve the model statistics for positive and negative APIs, but slightly increased model performance for neutral APIs. We attribute this to a better description of neutral zwitterions.

摘要

有关污水处理厂(STP)中颗粒物和水中化学物质分配的信息可用于预测其后续的环境归宿。然而,对于经常以离子形式存在的药物,此类信息可能难以获取。本研究调查了活性药物成分(API)的电离状态与其在 STP 中与水和污泥分配之间的关系。我们还研究了基于离子化结构的化学描述符来解释污泥吸附的潜在机制,并评估了这些描述符在定量结构-性质关系(QSPR)建模中的有用性。收集了 110 种 API 的 K 值,这些 API 在 pH 值为 7 时被分类为中性、阳性或阴性。性能最高的模型的 RY 和 Q 值分别高于 0.75 和 0.65。我们发现,控制中性和带正电荷的 API 与污泥相互作用的主要分子间力是疏水、π-π 和偶极-偶极相互作用,而带负电荷的 API 与污泥的相互作用主要由共价键以及离子-离子、离子-偶极和偶极-偶极相互作用控制;疏水力驱动的相互作用并不重要。包含与电荷相关的描述符可将模型的性能提高 5-10%,这强调了静电相互作用的重要性。对于带正电荷和带负电荷的 API,使用计算出的离子化结构描述符并未改善模型的统计数据,但略微提高了中性 API 的模型性能。我们将此归因于对中性两性离子的更好描述。

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