Oughlis-Hammache Fadila, Skiba Mohamed, Moulahcene Lamia, Milon Nicolas, Bounoure Frédéric, Lahiani-Skiba Malika
UNIROUEN, Galenic Pharmaceutical Laboratory, NorDIC Inserm U1239, UFR Medicine and Pharmacy, Rouen University, Normandie Univ, 22 Bd Gambetta, F-76183 Rouen, France.
Laboratory of Membrane Processes and of Separation and Recovery Techniques, Faculty of Technology, Abderrahmane Mira University, Route de Targua Ouzemmour, Bejaia 06000, Algeria.
Materials (Basel). 2024 Jul 21;17(14):3594. doi: 10.3390/ma17143594.
A novel polymer synthesized by grafting three cyclodextrins onto chitosan was characterized and evaluated for its potential to adsorb two pharmaceutical residues: ibuprofen and progesterone. The influence of various operational parameters, including contact time, initial molecule concentration, pH, ionic strength, and temperature, was investigated. The synthesized polymer exhibits an amorphous and porous structure with a remarkable swelling capacity of 9.5 mmol/g. It demonstrates remarkable adsorption capacities for progesterone and ibuprofen, reaching 90% and 75%, respectively. Kinetic studies reveal that the adsorption of both molecules follows a pseudo-second-order model. A DSC analysis elucidated the adsorption mechanism, which is governed by the formation of inclusion complexes and electrostatic interactions within the polymer network. The polymer's regeneration after 23 cycles demonstrates its sustainable adsorption efficiency. The combination of chitosan with three cyclodextrins opens up promising new avenues for water treatment and the removal of specific pollutants. This approach significantly improves the material's selectivity towards target pollutants, offering a significant advantage in pollution remediation applications.
一种通过将三个环糊精接枝到壳聚糖上合成的新型聚合物,对其吸附两种药物残留(布洛芬和孕酮)的潜力进行了表征和评估。研究了包括接触时间、初始分子浓度、pH值、离子强度和温度在内的各种操作参数的影响。合成的聚合物呈现出无定形多孔结构,具有9.5 mmol/g的显著溶胀能力。它对孕酮和布洛芬表现出显著的吸附能力,分别达到90%和75%。动力学研究表明,两种分子的吸附均遵循准二级模型。差示扫描量热法(DSC)分析阐明了吸附机制,该机制受聚合物网络中包合物的形成和静电相互作用的支配。该聚合物在23次循环后的再生证明了其可持续的吸附效率。壳聚糖与三个环糊精的结合为水处理和去除特定污染物开辟了有前景的新途径。这种方法显著提高了材料对目标污染物的选择性,在污染修复应用中具有显著优势。