Musiał Witold, Kokol Vanja, Voncina Bojana
University of Maribor, Department for Textile Materials and Design, Laboratory for Chemistry Dyes and Polymers, Slovenia.
Polim Med. 2009;39(4):3-13.
The aim of the work was the evaluation of the conductivity changes in aqueous environment, consisting of chlorhexidine, and N-isopropylacrylamide derivative microgel, during increasing the temperature between 25 degrees C and 42 degrees C, as a prerequisite to develop the this microgel for controlled release of chlorhexidine, when alterations in temperature are involved. Conductivity of studied systems underwent specific alterations, when temperature increased. For the system with polymer PNM I the values of conductivity were in the range 104,47 microS/cm - 134,70 microS/ cm, for temperature range 25 degrees C and 42 degrees C. In the case of PNM II - CX system, respective values reached 91,75 microS/cm - 135,95 microS/cm. The lowest conductivity values were observed when PNM III - CX mixture was studied: 96,90 microS/cm and 117,37 microS/cm. When a complex of derivatives of N-isopropylacrylamide with chlorhexidine undergoes thermal alteration, there is a potential to obtain controlled release of chlorhexidine from the polymeric bead in the range between 25 degrees C and 42 degrees C. The affinity of chlorhexidine to the polymer may be assessed in this systems applying the conductivity measurements. The solubility of chlorhexidine in the polymeric systems should be in future evaluated, to determine role of this factor in the conductivity alterations.
这项工作的目的是评估在25摄氏度至42摄氏度升温过程中,由氯己定和N-异丙基丙烯酰胺衍生物微凝胶组成的水性环境中的电导率变化,这是开发用于氯己定控释的这种微凝胶的前提条件,因为涉及温度变化。当温度升高时,所研究系统的电导率发生了特定变化。对于聚合物PNM I的系统,在25摄氏度至42摄氏度的温度范围内,电导率值在104.47微西门子/厘米至134.70微西门子/厘米之间。对于PNM II - CX系统,相应的值达到91.75微西门子/厘米至135.95微西门子/厘米。在研究PNM III - CX混合物时观察到最低的电导率值:96.90微西门子/厘米和117.37微西门子/厘米。当N-异丙基丙烯酰胺衍生物与氯己定的复合物发生热变化时,有可能在25摄氏度至42摄氏度的范围内从聚合物珠中实现氯己定的控释。在这些系统中应用电导率测量可以评估氯己定与聚合物的亲和力。未来应评估氯己定在聚合物系统中的溶解度,以确定该因素在电导率变化中的作用。