Valliant Esther Mae, Gagnier David, Dickey Brett Thomas, Boyd Daniel, Filiaggi Mark Joseph
Department of Applied Oral Sciences, Dalhousie University, 5981 University Avenue, Halifax, Nova Scotia, B3H 4R2, Canada
Department of Applied Oral Sciences, Dalhousie University, 5981 University Avenue, Halifax, Nova Scotia, B3H 4R2, Canada.
J Biomater Appl. 2015 Jul;30(1):61-70. doi: 10.1177/0885328215568985. Epub 2015 Jan 26.
Aluminum-free glass ionomer cements (GICs) are under development for orthopedic applications, but are limited by their insufficient handling properties. Here, the addition of calcium polyphosphate (CPP) was investigated as an additive to an experimental zinc-silicate glass ionomer cement. A 50% maximum increase in working time was observed with CPP addition, though this was not clinically significant due to the short working times of the starting zinc-silicate GIC. Surprisingly, CPP also improved the mechanical properties, especially the tensile strength which increased by ∼33% after 30 days in TRIS buffer solution upon CPP addition up to 37.5 wt%. This strengthening may have been due to the formation of ionic crosslinks between the polyphosphate chains and polyacrylic acid. Thus, CPP is a potential additive to future GIC compositions as it has been shown to improve handling and mechanical properties. In addition, CPP may stimulate new bone growth and provide the ability for drug delivery, which are desirable modifications for an orthopedic cement.
无铝玻璃离子水门汀(GICs)正在开发用于骨科应用,但受到其操作性能不足的限制。在此,研究了添加聚磷酸钙(CPP)作为实验性硅酸锌玻璃离子水门汀的添加剂。添加CPP后观察到工作时间最多增加了50%,不过由于起始硅酸锌GIC的工作时间较短,这在临床上并不显著。令人惊讶的是,CPP还改善了机械性能,特别是拉伸强度,在添加高达37.5 wt%的CPP后,在TRIS缓冲溶液中30天后拉伸强度提高了约33%。这种强化可能是由于多磷酸盐链和聚丙烯酸之间形成了离子交联。因此,CPP是未来GIC组合物的潜在添加剂,因为它已被证明可改善操作和机械性能。此外,CPP可能刺激新骨生长并提供药物递送能力,这是骨科骨水泥所需的改良特性。