Tao Ge, Jianxiang Jin, Kuan Feng, Xialong Gu, Gengfan Ye, Taotao Shi, Jia Li, Hao Wang, Hongcai Wang, Maosong Chen
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引用次数: 0
摘要
颅缺损修复仍然是神经外科的一个重大挑战,设计能够支持骨再生的材料复合物,同时最大限度地减少感染和炎症等并发症,可以帮助缓解这一临床挑战。本研究提出了一种具有受控快速凝胶过程的光热水凝胶复合物,PDA-G- a -H,它将光热聚多巴胺纳米粒子(PDA NPs)与庆大霉素(G)和阿隆膦酸(a)结合在一起。此外,可注射水凝胶Pluronic F127和胶原蛋白(H)的掺入使这种复合水凝胶(PDA-G- a -H)适用于颅缺损的多方面需求。PDA-G-A-H水凝胶具有优异的生物相容性,证明其具有高细胞活力和最小溶血,使其成为生物医学应用的安全候选者。MC3T3-E1细胞的体外评估表明,该水凝胶增强矿化和成骨分化,随后检测到关键成骨标志物的显著上调。研究了水凝胶对金黄色葡萄球菌和表皮葡萄球菌的抑菌活性。RT-PCR分析结果显示其具有抑制生物膜形成的潜力。水凝胶复合材料结合了生物相容性、骨诱导和抗菌潜力。关键词:颅缺损,水凝胶,成骨,抗菌,生物相容性,神经外科。
Synthesis and characterization of a novel photothermal hydrogel composite with combined osteogenic and antibacterial activities.
Cranial defect repair remains a significant challenge in neurosurgery, and designing material complexes that can support bone regeneration while minimizing complications such as infection and inflammation could help alleviate this clinical challenge. This study presents a photothermal hydrogel complex with a controlled rapid gelation process, PDA-G-A-H, which integrates photothermal polydopamine nanoparticles (PDA NPs) with gentamycin (G) and alendronate acid (A). Furthermore, the incorporation of the injectable hydrogel Pluronic F127 and collagen (H) made this composite hydrogel (PDA-G-A-H) suitable for the multifaceted needs of cranial defects. The PDA-G-A-H hydrogel exhibited superior biocompatibility, as evidenced by high cell viability and minimal hemolysis, making it a safe candidate for biomedical applications. In vitro assessments with MC3T3-E1 cells demonstrated that this hydrogel enhanced mineralization and osteogenic differentiation, and significant upregulation of key osteogenic markers was subsequently detected. The antibacterial activity of the hydrogel against Staphylococcus aureus and Staphylococcus epidermidis was also investigated. The results of the RT‒PCR analysis revealed the potential for inhibiting biofilm formation. The hydrogel composite combines biocompatibility, osteoinductive, and antibacterial potential. It has translational potential for cranial defect repair and other bone regeneration therapies.
Keywords: cranial defect, hydrogel, osteogenesis, antibacterial, biocompatibility, neurosurgery.