Dayashankar Chaurasia Priya, Deepika P C, Siddaramaiah Basavarajaiah
Department of Periodontology, JSS Dental College and Hospital, Jagadguru Sri Shivarathreeshwara University, Mysore, Karnataka, India.
Department of Polymer Science and Technology, Sri Jayachamarajendra College of Engineering, Mysore, Karnataka, India.
Contemp Clin Dent. 2017 Jul-Sep;8(3):380-386. doi: 10.4103/ccd.ccd_213_17.
Conventional periodontal therapy with various bone grafts has limited scope and the results are not predictable. To improve their utility, the hybridization of bioceramics and biodegradable polymers has been widely adopted to reform the mechanical properties of bone grafts. One such biodegradable polymer is POC (Poly 1,8 octanediol). Secondly, citric acid is considered as the key material in bone mineralization, which is related to the overall stability, strength and fracture resistance of bone. Hence citric acid is incorporated in a polymer and Nano hydroxyapatite to form a composite graft, for periodontal bone regeneration. This study attempts to evaluate the efficacy of citric acid based Nano-hydroxyapatite composite graft for the treatment of intrabony defects in chronic periodontitis patients over 12 months.
A split mouth study, which consists of 10 systemically healthy patients, were randomly treated with Citric acid based Nano hydroxyapatite composite graft (test sites, n=18) or with Nano hydroxyapatite alone (control sites, n=15). Plaque index, gingival index, gingival bleeding index, probing pocket depth (PPD), clinical attachment level (CAL), bone probing depth (BPD) and hard tissue parameters such as amount of defect fill, percentage of defect fill, and changes in alveolar crest were assessed over a period of 12 months. Statistical analysis used was student's -test and One-Way ANOVA.
Both test and control sites demonstrated statistically significant reduction of PD, BPD, gain in CAL and radiographic bone fill. Nevertheless the test sites showed Statistically significant improvements in all the parameters as compared to control sites at 12 months.
Citric acid based Nano hydroxyapatite composite graft can be considered as a newer material for periodontal regeneration.
采用各种骨移植材料的传统牙周治疗范围有限,且效果不可预测。为提高其效用,生物陶瓷与可生物降解聚合物的杂化已被广泛应用于改善骨移植材料的机械性能。一种这样的可生物降解聚合物是聚1,8 -辛二醇(POC)。其次,柠檬酸被认为是骨矿化的关键物质,这与骨的整体稳定性、强度和抗骨折能力有关。因此,将柠檬酸掺入聚合物和纳米羟基磷灰石中以形成用于牙周骨再生的复合移植材料。本研究旨在评估基于柠檬酸的纳米羟基磷灰石复合移植材料在12个月内治疗慢性牙周炎患者骨内缺损的疗效。
一项包括10名全身健康患者的双侧对照研究,随机对一侧使用基于柠檬酸的纳米羟基磷灰石复合移植材料(试验部位,n = 18),另一侧单独使用纳米羟基磷灰石(对照部位,n = 15)。在12个月的时间内评估菌斑指数、牙龈指数、牙龈出血指数、探诊袋深度(PPD)、临床附着水平(CAL)、骨探诊深度(BPD)以及诸如缺损填充量、缺损填充百分比和牙槽嵴变化等硬组织参数。所使用的统计分析方法为学生t检验和单因素方差分析。
试验部位和对照部位在PD、BPD降低以及CAL增加和影像学骨填充方面均显示出统计学上的显著差异。然而,在12个月时,试验部位与对照部位相比,所有参数均显示出统计学上的显著改善。
基于柠檬酸的纳米羟基磷灰石复合移植材料可被视为一种用于牙周再生的新型材料。