Department of Packaging, Yonsei University, 1 Yonseidae-gil, Wonju-si, Gangwon-do, 26493, South Korea.
Research Chair in Laser Diagnosis of Cancers, College of Science, Department of Physics and Astronomy, King Saud University, Riyadh, 11451, Kingdom of Saudi Arabia.
Sci Rep. 2020 Nov 3;10(1):18912. doi: 10.1038/s41598-020-76015-3.
A hybrid and straightforward nanosystem that can be used simultaneously for cancer-targeted fluorescence imaging and targeted drug delivery in vitro was reported in this study. A chitosan (CS) polymer coated with reduced graphene oxide (rGO) and implanted with FeO nanoparticles was fabricated. The fundamental physicochemical properties were confirmed via FT-IR, XRD, FE-SEM, HR-TEM, XPS, and VSM analysis. The in vivo toxicity study in zebrafish showed that the nanocomposite was not toxic. The in vitro drug loading amount was 0.448 mg/mL for doxorubicin, an anticancer therapeutic, in the rGO/FeO/CS nanocomposite. Furthermore, the pH-regulated release was observed using folic acid. Cellular uptake and multimodal imaging revealed the benefit of the folic acid-conjugated nanocomposite as a drug carrier, which remarkably improves the doxorubicin accumulation inside the cancer cells over-express folate receptors. The rGO/FeO/CS nanocomposite showed enhanced antibiofilm and antioxidant properties compared to other materials. This study's outcomes support the use of the nanocomposite in targeted chemotherapy and the potential applications in the polymer, cosmetic, biomedical, and food industries.
本研究报道了一种可用于体外癌症靶向荧光成像和靶向药物递送的混合且简便的纳米系统。制备了一种壳聚糖(CS)聚合物,其表面包覆还原氧化石墨烯(rGO)并植入了 FeO 纳米粒子。通过 FT-IR、XRD、FE-SEM、HR-TEM、XPS 和 VSM 分析证实了其基本理化性质。斑马鱼体内毒性研究表明,纳米复合材料没有毒性。rGO/FeO/CS 纳米复合材料对阿霉素(一种抗癌治疗药物)的载药量为 0.448mg/mL。此外,通过叶酸观察到 pH 调控释放。细胞摄取和多模态成像显示,叶酸偶联纳米复合材料作为药物载体具有优势,可显著增加过表达叶酸受体的癌细胞内阿霉素的积累。与其他材料相比,rGO/FeO/CS 纳米复合材料表现出增强的抗生物膜和抗氧化性能。本研究结果支持将纳米复合材料用于靶向化疗,并有可能应用于聚合物、化妆品、生物医学和食品工业。