Haghbin Mohana, Malekshah Rahime Eshaghi, Sobhani Mahsa, Izadi Zhila, Haghshenas Babak, Ghasemi Maryam, Kalani Behrooz Sadeghi, Samadian Hadi
Student Research Committee, Kermanshah University of Medical Sciences, Kermanshah, Iran.
Medical Biomaterial Research Centre (MBRC), Tehran University of Medical Sciences, Tehran, Iran.
Int J Biol Macromol. 2023 Apr 30;235:123766. doi: 10.1016/j.ijbiomac.2023.123766. Epub 2023 Feb 24.
The main purpose of this study is to synthesize and characterize Persian gum-based hydrogel composited with gentamicin (Gen)-loaded natural zeolite (Clinoptilolite) and to evaluate its biological properties. Clinoptilolite (CLN) was decorated with Gen, and the conjugation was confirmed using computational and experimental assessments. The Monte Carlo adsorption locator module was used to reveal the physicochemical nature of the adsorption processes of Gen on CLN and ALG and gum on Gen@ CLN in Materials Studio 2017 software. Based on the high negative results, the adsorption process was found to be endothermic in all studied cases, and the interaction energies were in the range of physisorption for Gen on CLN and ALG and gum on Gen@CLN. Dynamic light scattering (DLS) and zeta potential analysis showed that the size of pristine CLN was around 2959 nm and the conjugation decreased the size significantly to approximately 932 nm. The hydrogel characterizations showed that the Gen-decorated CLNs are homogenously dispersed into the hydrogel matrix, and the resultant hydrogels have a porous structure with interconnected pores. The release kinetics evaluation showed that around 80 % of Gen was released from the nanocomposite drug during the first 10 h. In vitro studies revealed hemocompatibility and cytocompatibility of the nanocomposite. Microbial assessments indicated dose-dependent antibacterial activity of the hydrogel against gram (+) and gram (-) bacteria. The results showed that the fabricated hydrogel nanocomposite exhibits favorable physicochemical and biological properties.
本研究的主要目的是合成并表征与载有庆大霉素(Gen)的天然沸石(斜发沸石)复合的波斯胶基水凝胶,并评估其生物学特性。用Gen对斜发沸石(CLN)进行修饰,并通过计算和实验评估确认共轭作用。在Materials Studio 2017软件中,使用蒙特卡洛吸附定位器模块揭示Gen在CLN和ALG上以及胶在Gen@CLN上的吸附过程的物理化学性质。基于高阴性结果,发现在所有研究案例中吸附过程均为吸热过程,并且Gen在CLN和ALG上以及胶在Gen@CLN上的相互作用能处于物理吸附范围内。动态光散射(DLS)和zeta电位分析表明,原始CLN的尺寸约为2959 nm,共轭作用使尺寸显著减小至约932 nm。水凝胶表征表明,Gen修饰的CLNs均匀分散在水凝胶基质中,所得水凝胶具有相互连接的孔隙的多孔结构。释放动力学评估表明,在最初的10小时内,约80%的Gen从纳米复合药物中释放出来。体外研究揭示了纳米复合材料的血液相容性和细胞相容性。微生物评估表明水凝胶对革兰氏(+)和革兰氏(-)细菌具有剂量依赖性抗菌活性。结果表明,制备的水凝胶纳米复合材料具有良好的物理化学和生物学特性。