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临床试验/NCT05335824
NCT05335824已完成不适用

Comparison Between The Effect of Platelet Rich Plasma (PRP) and Injectable Platelet Rich Fibrin (I-PRF) on Orthodontic Tooth Movement

Damascus University1 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2019年2月8日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
60
试验地点
1
主要终点
Change in canine retraction rate

研究概览

简要总结

60 patients needed therapeutic extraction of the maxillary first premolars with subsequent retraction of the maxillary canines were divided to randomly three groups:

(1) PRP group: Received PRP injections, (2) I-PRF group: Received I-PRF injections, (3) Control group: conventional treatment with no injections. TPAs were used as an anchor unit. Coil springs were used to distalize the upper canines on 0.019 x 0.025-inch stainless archwires. Alginate impressions and dental casts of the maxillary arch were done at five-time points over a 4-month follow-up period. The amount of canine movement, canine rotation, and anchorage loss were measured on three-dimensional digital models superimposed on the rugae area.

详细描述

One of the most important goals of orthodontic treatment is to decrease the treatment time via achieving faster tooth movement chiefly in adults. Adults have more bone density and less bone turnover than adolescence, which may be linked to potential root resorption, periodontal problems, and white spot lesions.

Approaches to reduce orthodontic treatment time included surgical and non-surgical techniques. Non-surgical approaches such as systemic and local administration of chemical substances, low-level laser therapy, vibrations, and pulsed electrical stimulation therapy still need more studies to determine their safety and effectiveness.

Surgical procedures such as corticotomy, corticision, and micro-osteoperforations have

, in general high success rates, but they rely on incurring an injury to bone tissues. The latter has been linked to the regional acceleratory phenomenon (RAP). But the invasive nature of these procedures, associated risks of loss of alveolar bone and gingival recession, and the help needed from another specialist limit its routine application. Recently, the possibility of using platelet-based preparations from the patient's blood to accelerate orthodontic tooth movement like platelet-rich plasma (PRP) and platelet-rich fibrin (PRF) has grown. PRF represents the second generation of biological materials derived from blood. It is obtained through a centrifuge of the patient's blood without adding any additives to the tube. The variety of growth factors in PRP and PRF may have the ability to stimulate the activation of osteoblasts and osteoclasts together, which supports the idea that PRP could affect orthodontic tooth movement The study sample consisted of 60 patients and was calculated using (G-power sample size calculator), depending on the rate of canine retraction with a study power of 90%.

After ensuring the patient's compliance with the terms and conditions of this study, the purpose and methods of the study were explained to the patients using Information Sheet. In case of approval to participate, the patients were asked to sign the informed consent. Extra & Intra-oral photographs, impressions and clinical examinations were made.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Single (Outcomes Assessor)

入排标准

年龄范围
18 Years 至 25 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • both male and female subjects
  • 18-25 years old
  • Class II Division 1 malocclusion, treated with extraction of the maxillary first premolars
  • Full permanent dentition
  • Good general and oral health

排除标准

  • extreme skeletal class II malocclusion, overjet > 10 mm ANB>7◦
  • diseases and medications that were likely to affect bone biology
  • poor oral hygiene
  • previous orthodontic treatment
  • coagulation disorders, or being treated with anticoagulants

结局指标

主要结局

Change in canine retraction rate

时间窗: The estimation took place at five time points: the beginning of tooth movement (T0) and at 4, 8, 12, and 16 weeks following T0

The amount of canine retraction per month was calculated by measuring the distance from the canine cusp tip in the baseline model to the canine cusp tip in the next superimposed model. The amount of distance being retracted in millimeters was divided to the duration of retraction in months to give an estimation of the retraction rate.

次要结局

  • Change in the maxillary first molar position (anchorage loss)(T0: before the beginning of canine retraction; T1: after 4 weeks of retraction; T2: after 8 weeks of retraction; T3: after 12 weeks; and T4: after 16 weeks after the start of retraction)
  • Change in canine rotation(T0: before the beginning of canine retraction; T1: after 4 weeks of retraction; T2: after 8 weeks of retraction; T3: after 12 weeks; and T4: after 16 weeks after the start of retraction)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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