Păncescu Florentina Mihaela, Rikabi Abbas Abdul Kadhim Klaif, Oprea Ovidiu Cristian, Grosu Alexandra Raluca, Nechifor Aurelia Cristina, Grosu Vlad-Alexandru, Tanczos Szidonia-Katalin, Dumitru Florina, Nechifor Gheorghe, Bungău Simona Gabriela
Analytical Chemistry and Environmental Engineering Department, University Politehnica of Bucharest, 011061 Bucharest, Romania.
Al-Mussaib Technical College, Al-Furat Al-Awsat Technical University (ATU), Babylon-Najaf Street, Kufa 54003, Iraq.
Membranes (Basel). 2023 Feb 27;13(3):282. doi: 10.3390/membranes13030282.
Melatonin is the hormone that focuses the attention of the researchers in the medical, pharmaceutical, materials, and membranes fields due to its multiple biomedical implications. The variety of techniques and methods for the controlled release of melatonin is linked to the multitude of applications, among which sports medicine occupies a special place. This paper presents the preparation and characterization of composite membranes based on chitosan (Chi) and sulfonated ethylene-propylene-diene terpolymer (sEPDM). The membranes were obtained by controlled vacuum evaporation from an 8% sEPDM solution in toluene (), in which chitosan was dispersed in an ultrasonic field (sEPDM:Chi = 1:1, ). For the comparative evaluation of the membranes' performances, a melatonin-chitosan-sulfonated ethylene-propylene-diene terpolymer (Mel:Chi:sEPDM = 0.5:0.5:1.0, ) test membrane was made. The prepared membranes were morphologically and structurally characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), energy-dispersive spectroscopy analysis (EDAX), thermal analysis (TG, DSC), thermal analysis coupled with chromatography and infrared analysis, and contact angle measurements, but also from the point of view of performance in the process of transport and release of melatonin in dedicated environments (aqueous solutions with controlled pH and salinity). The prepared membranes can release melatonin in amounts between 0.4 mg/cm·per day (sEPDM), 1.6 mg/ cm·per day (Chi/sEPDM), and 1.25 mg/cm·per day (Mel/Chi/SEPDM).
褪黑素是一种激素,因其具有多种生物医学意义而受到医学、制药、材料和膜领域研究人员的关注。褪黑素控释的多种技术和方法与众多应用相关联,其中运动医学占据特殊地位。本文介绍了基于壳聚糖(Chi)和磺化乙丙三元共聚物(sEPDM)的复合膜的制备与表征。这些膜是通过在甲苯中从8%的sEPDM溶液()进行控制真空蒸发获得的,其中壳聚糖在超声场中分散(sEPDM:Chi = 1:1,)。为了对膜的性能进行比较评估,制备了一种褪黑素 - 壳聚糖 - 磺化乙丙三元共聚物(Mel:Chi:sEPDM = 0.5:0.5:1.0,)测试膜。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、能量色散光谱分析(EDAX)、热分析(TG、DSC)、热分析与色谱和红外分析联用以及接触角测量等方法对制备的膜进行了形态和结构表征,同时还从褪黑素在特定环境(具有可控pH值和盐度的水溶液)中的传输和释放过程中的性能角度进行了研究。制备的膜能够以每天0.4毫克/平方厘米(sEPDM)、1.6毫克/平方厘米/天(Chi/sEPDM)和1.25毫克/平方厘米/天(Mel/Chi/SEPDM)的量释放褪黑素。