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布洛芬驱动的预组装二乙烯基砜交联糊精对水中红霉素的去除

Removal of Erythromycin from Water by Ibuprofen-Driven Pre-Organized Divinyl Sulfone Cross-Linked Dextrin.

作者信息

Ortega-Muñoz Mariano, Alvarado Sarah, Megia-Fernandez Alicia, Hernandez-Mateo Fernando, Lopez-Jaramillo Francisco Javier, Santoyo-Gonzalez Francisco

机构信息

Department of Organic Chemistry, Faculty of Sciences, University of Granada, 18073 Granada, Spain.

Unit of Excellence in Chemistry Applied to Biomedicine and the Environment, University of Granada, 18073 Granada, Spain.

出版信息

Polymers (Basel). 2024 Apr 13;16(8):1090. doi: 10.3390/polym16081090.

Abstract

Water recycling and reuse are cornerstones of water management, which can be compromised by the presence of pollutants. Among these, pharmaceuticals can overcome standard water treatments and require sophisticated approaches to remove them. Sorption is an economically viable alternative limited by the need for sorbents with a sorption coefficient (Kd) higher than 500 L/kg. The cross-linking of dextrin (Dx) with divinyl sulfone (DVS) in the presence of 1 mmol or 5 mmol of ibuprofen (IBU) yields the insoluble polymers and with improved affinity for IBU and high selectivity towards erythromycin (ERY) and ERY Kd higher than 4 × 10 L/kg, when tested against a cocktail of six drugs. Characterization of the polymers shows that both and have similar properties, fast sorption kinetics, and ERY Kd of 13.3 × 10 for and 6.4 × 10 for , representing 26.6 and 12.0 times the 500 L/kg threshold. The fact that new affinities and improvements in Kd can be achieved by cross-linking Dx in the presence of other molecules that promote pre-organization expands the applications of DVS cross-linked polysaccharides as sustainable, scalable, and environmentally friendly sorbents with a potential application in wastewater treatment plants (WTPs).

摘要

水的循环利用是水资源管理的基石,但污染物的存在可能会对其造成影响。其中,药物能够抵抗标准水处理工艺,需要采用复杂的方法来去除。吸附是一种经济可行的替代方法,但受到吸附系数(Kd)高于500 L/kg的吸附剂需求的限制。在1 mmol或5 mmol布洛芬(IBU)存在的情况下,糊精(Dx)与二乙烯砜(DVS)交联生成不溶性聚合物 和 ,它们对IBU的亲和力提高,对红霉素(ERY)具有高选择性,在针对六种药物的混合物进行测试时,ERY的Kd高于4×10 L/kg。聚合物的表征表明, 和 具有相似的性质、快速的吸附动力学, 的ERY Kd为13.3×10, 的ERY Kd为6.4×10,分别是500 L/kg阈值的26.6倍和12.0倍。通过在促进预组织的其他分子存在下交联Dx可以实现新的亲和力和Kd的提高,这一事实扩展了DVS交联多糖作为可持续、可扩展且环境友好的吸附剂在废水处理厂(WTPs)中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/101d/11055069/7dae3114ee29/polymers-16-01090-g001.jpg

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