Arima T, Hamada T, McCabe J F
Department of Prosthetic Dentistry, Hiroshima University, School of Dentistry, Japan.
J Dent Res. 1995 Sep;74(9):1597-601. doi: 10.1177/00220345950740091501.
The use of 2-hydroxyethyl methacrylate (HEMA)-based polymer as a biocompatible material has been well-established. HEMA-based resins containing cross-linking agents have several potential clinical applications. It is hypothesized that the incorporation of cross-linking agent will improve the mechanical properties of HEMA-based polymers while reducing water absorption and solubility. The purpose of the work reported here was to test this hypothesis and to determine the most effective cross-linking agent. A relationship among flexural strength, modulus, water absorption and solubility, and concentration of cross-linking agent was demonstrated. Strength and modulus tend to increase as the cross-linking agent concentration is increased, up to about 50%, after which the values level out or begin to fall. Water absorption drops with increasing cross-linking agent over the whole range of concentrations. Solubility tends to show a small decrease initially (up to 40%), followed by a noticeable increase as cross-linking agent concentration is increased. The trends were similar for all cross-linking agents, although there were differences in the absolute values in all properties depending upon the type of cross-linking agent used.
使用基于甲基丙烯酸2-羟乙酯(HEMA)的聚合物作为生物相容性材料已得到充分证实。含有交联剂的基于HEMA的树脂有几种潜在的临床应用。据推测,加入交联剂将改善基于HEMA的聚合物的机械性能,同时降低吸水性和溶解性。本文报道的这项工作的目的是验证这一假设,并确定最有效的交联剂。研究表明了弯曲强度、模量、吸水性和溶解性与交联剂浓度之间的关系。随着交联剂浓度增加,强度和模量往往会增加,直至约50%,此后这些值趋于平稳或开始下降。在整个浓度范围内,吸水性随交联剂增加而下降。溶解性最初往往略有下降(高达40%),随后随着交联剂浓度增加而显著增加。尽管根据所用交联剂的类型,所有性能的绝对值存在差异,但所有交联剂的趋势相似。