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Cyclodextrin-Functionalized Fiber Yarns Spun fromDeep Eutectic Cellulose Solutions for Nonspecific Hormone Capturein Aqueous Matrices

机译:环糊精功能化的纤维纱从用于非特异性激素捕获的深共晶纤维素解决方案在水性基质中

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摘要

A wood based yarn platform for capturing pharmaceutical molecules from water was developed. Cellulose fiber yarns were modified with cyclodextrins, and the capture of 17α-ethinyl estradiol (EE2), a synthetic estrogen hormone used as contraceptive, from water was tested. The yarns were prepared by spinning a deep eutectic solution (DES) of cellulose in choline chloride-urea. Despite their high porosity and water sorption capacity (5 g/g), the spun fiber yarns displayed high wet strength, up to 60% of that recorded in dry condition (128 MPa with 17% strain at break). Cyclodextrin irreversible attachment on the yarns was achieved with adsorbed chitosan and the conjugation reactions and capture of EE2 by the cyclodextrin-modified cellulose were confirmed via online detection with Surface Plasmon Resonance (SPR). The facile synthesis of the bioactive yarns and EE2 binding capacity from aqueous matrices (as high as 2.5 mg/g) indicate excellent prospects for inexpensive platforms in disposable affinity filtration. The study presents a strategy to produce a wood fiber based yarn tobe used as a platform for human and veterinary pharmaceutical hormonecapture.
机译:开发了一种用于从水中捕获药物分子的木基纱线平台。用环糊精对纤维素纤维丝进行改性,并测试了从水中捕获17α-乙炔雌二醇(EE2)(一种用作避孕药的合成雌激素)的能力。通过在氯化胆碱-尿素中旋转纤维素的深共晶溶液(DES)来制备纱线。尽管其高孔隙率和吸水量(5 g / g),但纺制的纤维纱仍显示出高的湿强度,高达干态记录的湿强度(128 MPa,断裂应变为17%)。环糊精在纱线上的不可逆附着是通过吸附的壳聚糖实现的,通过在线等离振子共振(SPR)在线检测,证实了环糊精修饰的纤维素的共轭反应和对EE2的捕获。从水性基质(高达2.5 mg / g)容易合成生物活性纱线和EE2的结合能力,为廉价的一次性亲和过滤平台提供了极好的前景。这项研究提出了一种生产木纤维基纱线的策略,用作人类和兽医药物激素的平台捕获。

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