Kim Mijoo, Hayashi Marc, Yu Bo, Lee Thomas K, Kim Reuben H, Jo Deuk-Won
UCLA School of Dentistry Restorative Materials and Applied Dental Research Laboratory, Los Angeles, CA 90095, USA.
Section of Restorative Dentistry, UCLA School of Dentistry, Los Angeles, CA 90095, USA.
Polymers (Basel). 2022 Jun 8;14(12):2315. doi: 10.3390/polym14122315.
The development of direct pulp-capping materials with favorable biological and structural properties is an important goal in restorative dentistry. Fucoidan is a sulfated, fucose-containing polysaccharide obtained from brown seaweed, with a wide range of applications; however, its use as a direct pulp-capping material has not been examined. This study aimed to evaluate the mechanical, physical, and biological effects of fucoidan combined with conventional mineral trioxide aggregate (MTA) for direct pulp capping. The capping materials were created using Portland cement (80 wt%) and zirconium oxide (20 wt%) as base components, compared with base components plus 5 wt% fucoidan (PZF5) and base components plus 10 wt% fucoidan (PZF10). The initial and final setting time, compressive strength, chemical components, cell viability, adhesion, migration, osteogenesis, and gene expression were analyzed. Fucoidan significantly reduced the initial and final setting time, regardless of quantity. However, the compressive strength was lower for PZF5. Sulfur levels increased with fucoidan. The biological activity improved, especially in the PZF5 group. Cell migration, Alizarin Red S staining, and alkaline phosphatase activity were upregulated in the PZF5 group. Fucoidan is a useful regenerative additive for conventional pulp-capping materials because it reduces the setting time and improves cell migration and osteogenic ability.
开发具有良好生物学和结构特性的直接盖髓材料是修复牙科的一个重要目标。岩藻依聚糖是一种从褐藻中提取的含硫酸根、含岩藻糖的多糖,具有广泛的应用;然而,其作为直接盖髓材料的用途尚未得到研究。本研究旨在评估岩藻依聚糖与传统三氧化矿物凝聚体(MTA)联合用于直接盖髓的机械、物理和生物学效应。盖髓材料以波特兰水泥(80 wt%)和氧化锆(20 wt%)作为基础成分制成,与基础成分加5 wt%岩藻依聚糖(PZF5)和基础成分加10 wt%岩藻依聚糖(PZF10)进行比较。分析了初凝和终凝时间、抗压强度、化学成分、细胞活力、黏附、迁移、成骨和基因表达。无论数量多少,岩藻依聚糖均显著缩短了初凝和终凝时间。然而,PZF5的抗压强度较低。硫含量随岩藻依聚糖增加。生物学活性得到改善,尤其是在PZF5组。PZF5组细胞迁移、茜素红S染色和碱性磷酸酶活性上调。岩藻依聚糖是传统盖髓材料有用的再生添加剂,因为它缩短了凝固时间并改善了细胞迁移和成骨能力。