Advanced Chemical Studies Lab, Department of Chemistry, K. N. Toosi University of Technology, Tehran, Iran.
Catalysts and Organic Synthesis Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.
Int J Biol Macromol. 2023 Dec 31;253(Pt 4):127005. doi: 10.1016/j.ijbiomac.2023.127005. Epub 2023 Sep 19.
A magnetic xanthan hydrogel/silk fibroin nanobiocomposite (XG hydrogel/SF/FeO) was designed, fabricated, and characterized using analyzing methods such as FT-IR, EDX, FE-SEM, XRD, TGA, and VSM to evaluate the exact structure of product nanobiocomposite. The FE-SEM images reveal the presence of spherical shapes exhibiting a narrow size range and homogeneous distribution, measuring between 30 and 35 nm in diameter. The VSM analysis demonstrates the superparamagnetic properties of the XG hydrogel/SF/FeO nanobiocomposite, exhibiting a magnetic saturation of 54 emu/g at room temperature. The biological response of the nanobiocomposite scaffolds was assessed through cell viability and red blood cell hemolytic assays. MCF10A cells were exposed to a concentration of 1.75 mg/mL of the nanobiocomposite, and after 2 and 3 days, the cell viability was found to be 96.95 % and 97.02 %, respectively. The hemolytic effect was nearly 0 % even at higher concentrations (2 mg/mL). Furthermore, the magnetic nanobiocomposite showed excellent potential for hyperthermia applications, with a maximum specific absorption rate of 7 W/g for 1 mg/mL of the sample under a magnetic field in different frequencies (100, 200, 300, and 400 MHz) and 5 to 20 min time intervals.
设计、制备并采用 FT-IR、EDX、FE-SEM、XRD、TGA 和 VSM 等分析方法对磁黄胶/丝素纳米生物复合材料(XG 水凝胶/SF/FeO)进行了表征,以评估产物纳米生物复合材料的确切结构。FE-SEM 图像显示存在具有窄尺寸范围和均匀分布的球形形状,直径在 30 至 35nm 之间。VSM 分析表明 XG 水凝胶/SF/FeO 纳米生物复合材料具有超顺磁性,在室温下的磁饱和值为 54 emu/g。通过细胞活力和红细胞溶血试验评估了纳米生物复合材料支架的生物响应。将 MCF10A 细胞暴露于浓度为 1.75mg/mL 的纳米生物复合材料中,在第 2 和第 3 天,细胞活力分别为 96.95%和 97.02%。即使在较高浓度(2mg/mL)下,溶血作用也接近 0%。此外,磁性纳米生物复合材料在热疗应用中显示出优异的潜力,在磁场下,在不同频率(100、200、300 和 400MHz)和 5 至 20 分钟的时间间隔下,对于 1mg/mL 样品的最大比吸收率为 7W/g。