Gamna Francesca, Yamaguchi Seiji, Cochis Andrea, Ferraris Sara, Kumar Ajay, Rimondini Lia, Spriano Silvia
DISAT Department, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Department of Biomedical Sciences, College of Life and Health Sciences, Chubu University, 1200 Matsumoto, Kasugai 487-8501, Aichi, Japan.
Nanomaterials (Basel). 2023 Jan 25;13(3):479. doi: 10.3390/nano13030479.
The main unmet medical need of bone implants is multifunctional activity, including their ability to induce rapid and physiological osseointegration, counteract bacterial biofilm formation, and prevent in situ chronic inflammation at the same time. This research starts from an already developed c.p. titanium surface with proven bioactive (in vitro hydroxyl apatite precipitation) and antibacterial activities, due to a calcium titanate layer with nano- and micro-scale roughness and loaded with iodine ions. Here, antioxidant ability was added to prevent chronic inflammation by grafting polyphenols of a green tea extract onto the surface, without compromising the other functionalities of the surface. The surface was characterized before and after functionalization through XPS analysis, zeta potential titrations, ion release measurements, in vitro bioactivity tests, SEM and fluorescence microscopy, and Folin-Ciocalteu and biological tests. The presence of grafted polyphenols as a homogeneous layer was proven. The grafted polyphenols maintained their antioxidant ability and were anchored to the surface through the linking action of Ca ions added to the functionalizing solution. Iodine ion release, cytocompatibility towards human mesenchymal stem cells (hMSC), and antibacterial activity were maintained even after functionalization. The antioxidant ability of the functionalized surface was effective in preserving hMSC viability in a chemically induced pro-inflammatory environment, thus showing a scavenger activity towards toxic active species responsible for inflammation.
骨植入物主要未满足的医学需求是多功能活性,包括其诱导快速生理性骨整合、对抗细菌生物膜形成以及同时预防原位慢性炎症的能力。本研究从已开发的商业纯钛表面开始,该表面具有已证实的生物活性(体外羟基磷灰石沉淀)和抗菌活性,这归因于具有纳米和微米级粗糙度并负载碘离子的钛酸钙层。在此,通过将绿茶提取物的多酚接枝到表面来添加抗氧化能力,以预防慢性炎症,同时不损害表面的其他功能。通过XPS分析、zeta电位滴定、离子释放测量、体外生物活性测试、扫描电子显微镜和荧光显微镜以及福林-西奥尔特试剂法和生物学测试对功能化前后的表面进行了表征。证实了接枝的多酚作为均匀层的存在。接枝的多酚保持了它们的抗氧化能力,并通过添加到功能化溶液中的钙离子的连接作用锚定在表面上。即使在功能化后,碘离子释放、对人间充质干细胞(hMSC) 的细胞相容性和抗菌活性也得以保持。功能化表面的抗氧化能力有效地保持了hMSC在化学诱导的促炎环境中的活力,从而显示出对负责炎症的有毒活性物质的清除活性。