Biomaterials in Medicinal Chemistry Laboratory, Department of Natural Products Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai 625021, India.
Department of Neurosurgery, Qilu Hospital of Shandong University, Jinan 250012, China.
Int J Pharm. 2024 Jan 25;650:123609. doi: 10.1016/j.ijpharm.2023.123609. Epub 2023 Nov 14.
Restoring the lost bioelectrical signal transmission along with the appropriate microenvironment is one of the major clinical challenges in spinal cord regeneration. In the current research, we developed a polysaccharide-based protein composite Multiwalled Carbon Nanotubes (MWCNTs)/ Collagen (Col)/ Hyaluronic acid (HA) composite with Hesperidin (Hes) natural compound to investigate its combined therapeutic effect along with biocompatibility, antioxidant activity, and electrical conductivity. The multifunctional composites were characterized via FT-IR, XRD, SEM, HR-TEM, BET, C.V, and EIS techniques. The electrical conductivity and modulus of the MWCNT-Col-HA-Hes were 0.06 S/cm and 12.3 kPa, similar to the native spinal cord. The in-vitro Cytotoxicity, cell viability, antioxidant property, and cell migration ability of the prepared composites were investigated with a PC-12 cell line. In-vitro studies revealed that the multifunctional composites show higher cell viability, antioxidant, and cell migration properties than the control cells. Reduction of ROS level indicates that the Hes presence in the composite could reduce the cell stress by protecting it from oxidative damage and promoting cell migration towards the lesion site. The developed multifunctional composite can provide the antioxidant microenvironment with compatibility and mimic the native spinal cord by providing appropriate conductivity and mechanical strength for spinal cord tissue regeneration.
恢复丢失的生物电信号传输以及适当的微环境是脊髓再生的主要临床挑战之一。在当前的研究中,我们开发了一种基于多糖的蛋白质复合材料多壁碳纳米管(MWCNT)/胶原蛋白(Col)/透明质酸(HA)复合材料,其中含有天然化合物橙皮苷(Hes),以研究其联合治疗效果以及生物相容性、抗氧化活性和导电性。通过傅里叶变换红外光谱(FT-IR)、X 射线衍射(XRD)、扫描电子显微镜(SEM)、高分辨率透射电子显微镜(HR-TEM)、BET、C.V 和 EIS 技术对多功能复合材料进行了表征。MWCNT-Col-HA-Hes 的电导率和模量分别为 0.06 S/cm 和 12.3 kPa,与天然脊髓相似。用 PC-12 细胞系研究了制备的复合材料的体外细胞毒性、细胞活力、抗氧化性能和细胞迁移能力。体外研究表明,多功能复合材料具有更高的细胞活力、抗氧化和细胞迁移特性,优于对照细胞。ROS 水平的降低表明,复合材料中橙皮苷的存在可以通过保护细胞免受氧化损伤并促进细胞向损伤部位迁移来减轻细胞应激。开发的多功能复合材料可以为抗氧化微环境提供兼容性,并通过提供适当的导电性和机械强度来模拟天然脊髓,从而促进脊髓组织再生。