Abstract
이 연구는 전문가 미백(in-office bleaching)에 사용하는 35% 과산화수소(hydrogen peroxide, HP)를 제2인산칼슘(dicalcium phosphate dihydrate, DCPD)와 혼합하여 치아의 미백 효과와 미세경도를 평가하고자 하였다. 소구치로부터 30개의 치아시편을 제작하여 3군으로 분류하였다(n=10). 35%과산화수소에 DCPD를 0.1, 1wt% 첨가하여 실험군으로 하고 하루 60분간 치아미백을 실시하였다. 치아 미백제에 pH를 측정하였고, 미백 적용한 치아 표면에는 색과 미세경도를 측정하였다. pH는 DCPD 함유한 군에서 DCPD의 함유량이 증가할수록 함유되지 않은 군에 비해 pH 수치가 증가하였다. 색조변화량 (<TEX>${\Delta}$</TEX>E)을 비교한 결과, 미백 전에 비해 미백 후 색조 변화를 보였고(p<0.05), 결과적으로 색 변화에 있어 DCPD를 함유한 군과 함유되지 않은 군 사이에 통계적으로 유의한 차이는 없었다(p>0.05). 법랑질의 표면미세경도를 분석한 결과, 모든 군에서 미백 후 미세경도의 감소를 보였고(p<0.05), DCPD를 혼합한 군은 함유되지 않은 군에 비해 경도 감소의 폭이 훨씬 적게 나타났다. 이상의 결과로부터 DCPD를 함유한 35%과산화수소의 치아미백제는 치아미백 효과가 있고, pH를 상승시켜서 법랑질의 표면 경도를 덜 감소시키므로 치아미백제의 구성성분으로 실용할 수 있을 것으로 사료된다. The purpose of this study was to evaluate tooth whitening and microhardness after treatments with tooth bleaching agents containing dicalcium phosphate dihydrate (DCPD) and 35% hydrogen peroxide (HP) which were used in-office bleaching. Thirty enamel specimens were obtained from human premolars and randomly divided into 3 groups(n=10). Tooth bleaching agents were prepared with DCPD (0 g for controls, 0.1 g and 1 g for experimental groups) and HP solution (35% HP). All groups were applied to enamel surfaces for 60 min for 1 day. The pH of each tooth bleaching agent was measured. Tooth color, microhardness of enamel surfaces were also measured. The tooth bleaching agents containing DCPD showed a significant increase in pH compared to the ones without DCPD(p<0.05). Paired t-tests showed significant difference in color values of enamel before and after bleaching in all the groups(p<0.05). As a result, changes in color, containing DCPD group does not contain a statistically significant difference between groups was observed.(p>0.05). In all groups, tooth hardness after bleaching showed a significant decrease in microhardness (p<0.05). However, the DCPD concentration increased in the bleaching, microhardness values slightly decreased. Based on the above results, tooth bleaching agents containing DCPD and 35%HP were equally effective. Due to increases in pH and effective reduction of tooth surface decalcification, the surface characteristics are exposed to a reduced degree of negative effects, resulting in fewer constituent enamel alterations. Thus, commercial availability of the constituents of tooth whitening materials can be achieved.
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