Ashoub Muhammad Hossein, Golestani Amin, Amiri Mahnaz, Razavi Razieh, Farsinejad Alireza
Stem Cells and Regenerative Medicine Innovation Center, Kerman University of Medical Sciences, Kerman, Iran; Department of Hematology and Medical Laboratory Sciences, Faculty of Allied Medicine, Kerman University of Medical Sciences, Kerman, Iran.
Stem Cells and Regenerative Medicine Innovation Center, Kerman University of Medical Sciences, Kerman, Iran.
J Pharm Sci. 2025 Jul;114(7):103792. doi: 10.1016/j.xphs.2025.103792. Epub 2025 Apr 11.
This study presents the green synthesis of mesoporous FeO@SiO nanocomposites using Opuntia ficus-indica extract for pH-sensitive delivery of sulfasalazine. The synthesized nanocomposites exhibited well-defined spherical morphology with particle sizes ranging from 80 to 120 nm and superior superparamagnetic properties with a saturation magnetization of 75.8 emu/g. X-ray diffraction analysis confirmed the formation of a pure magnetite phase with an average crystallite size of 17.37 nm, while nitrogen physisorption revealed a high specific surface area of 165.8 m²/g with uniform mesopores centered at 4.2 nm. The nanocomposites demonstrated exceptional drug loading characteristics with 81.1 % loading efficiency and 23.9 % loading capacity. pH-dependent release studies showed enhanced release under acidic conditions (82 % at pH 3.5) compared to physiological pH (50 % at pH 7.4), indicating potential for targeted drug delivery applications. Cytotoxicity studies using L929 cells and peripheral blood mononuclear cells (PBMCs) revealed remarkable biocompatibility at concentrations up to 200 µg/mL over 72 h. These findings establish the potential of green-synthesized mesoporous FeO@SiO nanocomposites as efficient carriers for pH-sensitive drug delivery systems, offering an environmentally friendly approach to developing advanced therapeutic platforms.
本研究介绍了使用仙人掌提取物进行介孔FeO@SiO纳米复合材料的绿色合成,用于柳氮磺胺吡啶的pH敏感递送。合成的纳米复合材料呈现出明确的球形形态,粒径范围为80至120 nm,并具有优异的超顺磁性,饱和磁化强度为75.8 emu/g。X射线衍射分析证实形成了平均晶粒尺寸为17.37 nm的纯磁铁矿相,而氮气物理吸附显示高比表面积为165.8 m²/g,具有以4.2 nm为中心的均匀介孔。纳米复合材料表现出优异的载药特性,载药效率为81.1%,载药量为23.9%。pH依赖性释放研究表明,与生理pH值(pH 7.4时为50%)相比,在酸性条件下(pH 3.5时为82%)释放增强,表明其在靶向药物递送应用中的潜力。使用L929细胞和外周血单核细胞(PBMC)进行的细胞毒性研究表明,在72小时内浓度高达200 µg/mL时具有显著的生物相容性。这些发现确立了绿色合成的介孔FeO@SiO纳米复合材料作为pH敏感药物递送系统有效载体的潜力,为开发先进治疗平台提供了一种环境友好的方法。