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A long-term evaluation of periodontal phenotypes before and after the periodontal-orthodontic-orthognathic combined treatment of lower anterior teeth in patients with skeletal Angle class Ⅲ malocclusion
Received date: 2022-10-10
Online published: 2023-01-31
Supported by
the Capital Characteristic Clinical Application Research Project(Z181100001718111)
Objective: To evaluate the changes of periodontal phenotype (width of keratinized gingiva, thickness and height of alveolar bone) of lower anterior teeth in patients with skeletal class Ⅲ malocclusion before and after the periodontal-orthodontic-orthognathic combined treatment. Methods: In the study, 20 patients with skeletal class Ⅲ malocclusion (6 males and 14 females) completed the periodontal-orthodontic-orthognathic combined treatment were included from March 2017 to June 2022, with 39 central incisors, 40 lateral incisors and 40 canines. The mean age was (25.40±4.27) years (20-34 years). The mean follow-up time was (3.70±1.05) years from the beginning of periodontal corticotomy regenerative surgery (PCRS) to the end of the combined treatment. Cone-beam computed tomography (CBCT) was used to measure the thickness, area and height of alveolar bone by the same researcher, taken before the PCRS (T0), 6 months after the PCRS (T1), 12 months after the PCRS (T2), before the orthognathic surgery (T3), and after the periodontal-orthodontic-orthognathic combined treatment (T4). The periodontal clinical parameters were used to evaluate changes in the soft tissue by another researcher, measured before the PCRS (T0) and after the combined treatment (T4). Changes of soft and hard tissue were evaluated by the periodontal phenotype. Results: The width of keratinized gingiva increased significantly (all P < 0.001) in lower anterior teeth, the central incisors, lateral incisors and canines increased by (1.82±1.57) mm, (2.03±1.48) mm and (2.05±1.27) mm, respectively. The proportion of thick periodontal biotype in the central and lateral incisors increased significantly (all P < 0.001), while the changes of periodontal biotypes in the lower canines were not obvious. The thickness of labial alveolar bone of lower anterior teeth all increased significantly after periodontal corticotomy regenerative surgery and the combined treatment (all P < 0.001). The area of labial alveolar bone of lower anterior teeth also increased significantly after the combined treatment (all P < 0.001). The whole area of labial and lingual alveolar bone of central and lateral incisors increased (P < 0.001), while the whole area of canines remained the same. All The height of the alveolar bone increased (all P < 0.001) on the labial side after the treatment. Conclusion: The periodontal phenotypes of lower anterior teeth were significantly improved after the periodontal-orthodontic-orthognathic combined treatment in patients with skeletal Angle class Ⅲ malocclusion. The improvement was long-termly stable, and the periodontal risk was reduced.
Meng-qiao PAN , Jian LIU , Li XU , Xiao XU , Jian-xia HOU , Xiao-tong LI , Xiao-xia WANG . A long-term evaluation of periodontal phenotypes before and after the periodontal-orthodontic-orthognathic combined treatment of lower anterior teeth in patients with skeletal Angle class Ⅲ malocclusion[J]. Journal of Peking University(Health Sciences), 2023 , 55(1) : 52 -61 . DOI: 10.19723/j.issn.1671-167X.2023.01.008
| 1 | 傅民魁, 林久祥. 口腔正畸学[M]. 北京: 北京大学医学出版社, 2014: 270- 271. |
| 2 | Kaya Y , Alkan ? , Keskin S . An evaluation of the gingival biotype and the width of keratinized gingiva in the mandibular anterior region of individuals with different dental malocclusion groups and levels of crowding[J]. Korean J Orthod, 2017, 47 (3): 176- 185. |
| 3 | 毛铭馨, 徐莉, 靖无迪, 等. 骨性安氏Ⅲ类错 畸形患者前牙唇侧牙槽嵴顶位置及相关因素分析[J]. 北京大学学报(医学版), 2020, 52 (1): 77- 82. |
| 4 | Guo R , Zhang L , Hu M , et al. Alveolar bone changes in maxillary and mandibular anterior teeth during orthodontic treatment: A systematic review and meta-analysis[J]. Orthod Craniofac Res, 2021, 24 (2): 165- 179. |
| 5 | Lee KM , Kim YI , Park SB , et al. Alveolar bone loss around lower incisors during surgical orthodontic treatment in mandibular prognathism[J]. Angle Orthod, 2012, 82 (4): 637- 644. |
| 6 | Ma H , Li W , Xu L , et al. Morphometric evaluation of the alveolar bone around central incisors during surgical orthodontic treatment of high-angle skeletal class Ⅲ malocclusion[J]. Orthod Craniofac Res, 2021, 24 (1): 87- 95. |
| 7 | Jing WD , Jiao J , Xu L , et al. Periodontal soft- and hard-tissue changes after augmented corticotomy in Chinese adult patients with skeletal Angle class Ⅲ malocclusion: A non-randomized controlled trial[J]. J Periodontol, 2020, 91 (11): 1419- 1428. |
| 8 | Xu X , Wu JQ , Jiang JH , et al. Periodontal effect of periodontally accelerated osteogenic orthodontics in skeletal Angle class Ⅲ: A nonrandomized, controlled trial[J]. Int J Periodontics Restorative Dent, 2020, 40 (4): e169- e177. |
| 9 | Wang B , Shen G , Fang B , et al. Augmented corticotomy-assisted surgical orthodontics decompensates lower incisors in Class Ⅲ malocclusion patients[J]. J Oral Maxillofac Surg, 2014, 72 (3): 596- 602. |
| 10 | Brugnami F , Meuli S , Caiazzo A , et al. Three-dimensional digital planning of class Ⅲ decompensation with clear aligners: Hard and soft tissue augmentation with concomitant corticotomy to stretch the limits of safe orthodontic treatment[J]. J Oral Biol Craniofac Res, 2021, 11 (2): 297- 302. |
| 11 | Malpartida-Carrillo V , Tinedo-Lopez PL , Guerrero ME , et al. Periodontal phenotype: A review of historical and current classifications evaluating different methods and characteristics[J]. J Esthet Restor Dent, 2021, 33 (3): 432- 445. |
| 12 | Chapple ILC , Mealey BL , van Dyke TE , et al. Periodontal health and gingival diseases and conditions on an intact and a reduced periodontium: Consensus report of workgroup 1 of the 2017 World Workshop on the Classification of Periodontal and Peri-Implant Diseases and Conditions[J]. J Clin Periodontol, 2018, 45 (Suppl 20): S68- S77. |
| 13 | 徐筱, 靖无迪, 侯建霞, 等. 牙周组织再生结合骨皮质切开术辅助骨性Ⅲ类错 正畸-正颌治疗一例[J]. 中华口腔医学杂志, 2019, 54 (10): 686- 690. |
| 14 | 韩烨, 苗莉莉, 靖无迪, 等. 牙周组织再生结合骨皮质切开术对骨性Ⅲ类错 牙龈厚度影响的数字化评估[J]. 中华口腔医学杂志, 2020, (2): 73- 79. |
| 15 | 徐筱, 徐莉, 江久汇, 等. 改良骨皮质切开术对牙周组织影响的临床观察[J]. 中华口腔医学杂志, 2014, 49 (6): 343- 346. |
| 16 | 马慧敏, 张婕, 徐莉, 等. 骨性Ⅲ类错 畸形患者正畸正颌联合治疗前后前牙区牙槽骨厚度的变化[J]. 中华口腔正畸学杂志, 2018, 25 (3): 121- 124. |
| 17 | Choi YJ , Chung CJ , Kim KH . Periodontal consequences of mandibular incisor proclination during presurgical orthodontic treatment in class Ⅲ malocclusion patients[J]. Angle Orthod, 2015, 85 (3): 427- 433. |
| 18 | Sun L , Yuan L , Wang B , et al. Changes of alveolar bone dehiscence and fenestration after augmented corticotomy-assisted orthodontic treatment: A CBCT evaluation[J]. Prog Orthod, 2019, 20 (1): 7. |
| 19 | Wang CW , Yu SH , Mandelaris GA , et al. Is periodontal phenotype modification therapy beneficial for patients receiving ortho-dontic treatment? An American Academy of Periodontology best evidence review[J]. J Periodontol, 2020, 91 (3): 299- 310. |
| 20 | Zweers J , Thomas RZ , Slot DE , et al. Characteristics of periodontal biotype, its dimensions, associations and prevalence: A systematic review[J]. J Clin Periodontol, 2014, 41 (10): 958- 971. |
| 21 | 王高南, 焦剑, 周彦恒, 等. 正畸牙齿位置的移动对角化龈宽度的影响[J]. 北京大学学报(医学版), 2019, 51 (5): 931- 936. |
| 22 | Vlachodimou E , Fragkioudakis I , Vouros I . Is there an association between the gingival phenotype and the width of keratinized gingiva? A systematic review[J]. Dent J (Basel), 2021, 9 (3): 34. |
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