Remaining Root Substance Comparing a New Ultrasonic Scaling Device, Hand Instrumentation and Subgingival Air Polishing With Glycine. An in Vivo and in Vitro Study
试验速览
- 阶段
- 2 期
- 状态
- 已完成
- 发起方
- 入组人数
- 48
- 主要终点
- thickness of cementum
研究概览
简要总结
The purpose of this study was to evaluate the residual cementum with the histological measurements and root surface topography with SEM evaluation using four periodontal treatment methods.
详细描述
Cementum is a component of the periodontium, and its major role is to serve as the site of attachment for principal collagen fibers (Sharpey' s fibers). In particular, cementum, by virtue of its structural and dynamic qualities, provides tooth attachment and maintenance of occlusal relationships between the jaws. Its multiple functions are fulfilled by the biological activity and reactivity of cementoblasts, which deposits two collagen-containing varieties of cementum with completely different properties. Periodontal disease is the local inflammation of the supporting tissues of teeth, it causes destruction of gingival tissues, bone loss and loss of connective tissue attachment to cementum. Since the relationship between local bacteria and periodontal disease has been proved and widely recognised, it is generally accepted that removal of pathogenic microorganisms that form plaque and calculus is the major goal of periodontal treatment. This therapy currently consists of scaling and root planing, but in addition to mechanical instrumentation, regeneration and restoration of various periodontal components to their original form, function and consistency should be performed.
Previously it was accepted that bacterial endotoxins or bacteria penetrate the cementum of periodontally diseased root surfaces. Therefore, besides the removal of the subgingival plaque and calculus deposits, the removal of all or most of the cementum was one of the primary endpoints of periodontal healing. The goal of periodontal therapy was to attain a planed root surface with a smooth and hard surface characteristics and free of endotoxins as the cementum of a tooth prior to eruption. While some studies have reported that endotoxins are not located within cementum it has been accepted that the removal of 'diseased' cementum was not necessary for a successful periodontal treatment.
Saygin et al. reported that cementum is the site where soft-tissue attachment has to be re-established, and cementum matrix is a rich source of many growth factors which influence the activities of various periodontal cell types and Grzesik et al. stated that cementum plays a regulatory role in periodontal regeneration. From these studies it can be concluded that non-aggressive periodontal treatment is necessary for optimal periodontal health as well as for periodontal regeneration.
During periodontal therapy subgingival instrumentation by means of the removal of root cementum can be eventually lead to exposure of dentinal tubules, pulp injury and dentin hypersensitivity. The in vitro studies including establishing in vitro experimental models under standardized experimental conditions evaluated the amount of cementum with various instruments or force combinations. Several studies, which showed the effects of different instruments on root surfaces, emphasized that periodontal treatment can be performed less aggressively with respect to the removal of cementum.
Previously reported that the teeth treated by HC and US can present a surface without cementum and the open dentinal tubules.They reported that root surfaces treated by US showed a scaly and rough topography whether the teeth treated with HC presented smooth surfaces. Kawashima and co-workers compared two different piezoelectric US (VectorTM and EnacR scaler) and HC and found that both US groups had significantly more remaining cementum than the HC group. However they observed some areas with thin or absent cementum in the HC group. Ruhling et al. compared the effects of the piezoelectric US, sonic scaler (SS), sonic scaler insert coated with Teflon tube, Periotor insert and HC. They showed that HC and SS group presented greater removal of root cementum and nearly all cementum was removed in 25% of the samples treated with HC.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Factorial
- 主要目的
- Treatment
- 盲法
- Triple (Participant, Investigator, Outcomes Assessor)
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •systemic factors (no systemic diseases; no medications affecting periodontal status in the previous 6 months; no pregnancy or lactation;
- •behavioral factors (no smoking habits);
- •dental and periodontal factors not to have had previous periodontal therapy; no class III dental mobility;
- •a periodontal probing depth (PPD) ≥ 4 mm in at least two sites per tooth with single rooted ;
- •have no caries or restorations on the mesial and distal surfaces and bleeding on probing.
排除标准
- •systemic diseases; medications affecting periodontal status in the previous 6 months; pregnancy or lactation
- •smoking habits
- •have caries or restorations on the mesial and distal surfaces and bleeding on probing.
- •have had previous periodontal therapy; class III dental mobility;
研究组 & 干预措施
Ultrasonic instrumentation
Prior to extraction, the teeth (N = 12) were randomly included into ultrasonic instrumentation (Air Flow Master Piezon®, EMS SA, Nyon - Swiss) treatment group
干预措施: Air Flow Master Piezon®, EMS SA, Nyon, Swiss (Device)
Hand instrumentation
Prior to extraction, the teeth (N = 12) were randomly included into hand curette (Gracey curettes, American Eagle, Missoula, MT, USA) treatment group hand instrumentation (Gracey curettes 5/6, 11/12, 13/14 American Eagle, Missoula, MT, USA)
干预措施: Gracey curettes, American Eagle, Missoula, MT, USA (Device)
subgingival airpolishing with glycine
Prior to extraction, the teeth (N = 12) were randomly included into air-polishing (Air Flow Master Piezon®, EMS SA, Nyon - Swiss) with the glycine powder (Air-flow® Powder Perio, EMS) treatment group.
subgingival airpolishing with glycine(Air-flow® Powder Perio, EMS SA, Nyon, Swiss)
干预措施: Air-flow® Powder Perio, EMS SA, Nyon, Swiss (Device)
ultrasonic following airpolishing
Prior to extraction, the teeth (N = 12) were randomly included into ultrasonic following airpolishing ( Air Flow Master Piezon®, EMS SA, Nyon, Swiss) (Air-flow® Powder Perio, EMS SA, Nyon, Swiss) with the glycine powder treatment group
干预措施: Air Flow Master Piezon®, EMS SA, Nyon, Swiss (Device)
ultrasonic following airpolishing
Prior to extraction, the teeth (N = 12) were randomly included into ultrasonic following airpolishing ( Air Flow Master Piezon®, EMS SA, Nyon, Swiss) (Air-flow® Powder Perio, EMS SA, Nyon, Swiss) with the glycine powder treatment group
干预措施: Air-flow® Powder Perio, EMS SA, Nyon, Swiss (Device)
结局指标
主要结局
thickness of cementum
时间窗: within the first 60 days after extractions
After instrumentations the teeth extractions (n=48) were done and the teeth were stored in the solution of NaCl. Upon extracting the teeth were sectioned perpendicularly to the root axis with a microtome (Leica, RM2245, Wetzlar, Germany) between 10 and 15 µm thickness and stained with hematoxylin and eosin (Leica Autostainer XL, Wetzlar, Germany). Two horizontally root sections of each tooth were taken from coronal and apical part of instrumented area for a total 96 histologic specimens. Coronal sections were taken 1 mm apically from the gingival margin, whereas apical sections were taken 1 mm coronally from the endpoint of periodontal pocket. The teeth were examined by an optic microscope (Nikon Eclipse i5, Tokyo, Japan) connected to a camera (Nikon, DS-Filc, Tokyo, Japan) and finally to a dedicated computer. The thickness of the cementum was measured by a specific software (Nikon, NIS Elements 4.0, Tokyo, Japan).
次要结局
- Remaining calculus index (RCI) with SEM evaluation(within 30 days after extractions)
研究者
Dr.Esra Bozbay
PhD Student
University of Roma La Sapienza
