The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study
Abstract Background Orthodontic tooth movement (OTM) has been shown to induce osteocyte apoptosis in alveolar bone shortly after force application. However, how osteocyte apoptosis affects orthodontic tooth movement is unknown. The goal of this study was to assess the effect of inhibition of osteocy...
Main Authors: | , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
SpringerOpen
2021-07-01
|
Series: | Progress in Orthodontics |
Subjects: | |
Online Access: | https://doi.org/10.1186/s40510-021-00366-4 |
id |
doaj-b087ffd604dd4f6394618602591c3128 |
---|---|
record_format |
Article |
spelling |
doaj-b087ffd604dd4f6394618602591c31282021-08-01T11:27:51ZengSpringerOpenProgress in Orthodontics2196-10422021-07-0122111010.1186/s40510-021-00366-4The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot studyMichele Kaplan0Zana Kalajzic1Thomas Choi2Imad Maleeh3Christopher L. Ricupero4Michelle N. Skelton5Madeleine L. Daily6Jing Chen7Sunil Wadhwa8Division of Orthodontics, College of Dental Medicine, Columbia UniversityDepartment of Oral Health and Diagnostic Sciences, Division of Oral Medicine, UConn HealthDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityDivision of Orthodontics, College of Dental Medicine, Columbia UniversityAbstract Background Orthodontic tooth movement (OTM) has been shown to induce osteocyte apoptosis in alveolar bone shortly after force application. However, how osteocyte apoptosis affects orthodontic tooth movement is unknown. The goal of this study was to assess the effect of inhibition of osteocyte apoptosis on osteoclastogenesis, changes in the alveolar bone density, and the magnitude of OTM using a bisphosphonate analog (IG9402), a drug that affects osteocyte and osteoblast apoptosis but does not affect osteoclasts. Material and methods Two sets of experiments were performed. Experiment 1 was used to specifically evaluate the effect of IG9402 on osteocyte apoptosis in the alveolar bone during 24 h of OTM. For this experiment, twelve mice were divided into two groups: group 1, saline administration + OTM24-h (n=6), and group 2, IG9402 administration + OTM24-h (n=6). The contralateral unloaded sides served as the control. The goal of experiment 2 was to evaluate the role of osteocyte apoptosis on OTM magnitude and osteoclastogenesis 10 days after OTM. Twenty mice were divided into 4 groups: group 1, saline administration without OTM (n=5); group 2, IG9402 administration without OTM (n=5); group 3, saline + OTM10-day (n=6); and group 4, IG9402 + OTM10-day (n=4). For both experiments, tooth movement was achieved using Ultra Light (25g) Sentalloy Closed Coil Springs attached between the first maxillary molar and the central incisor. Linear measurements of tooth movement and alveolar bone density (BVF) were assessed by MicroCT analysis. Cell death (or apoptosis) was assessed by terminal dUTP nick-end labeling (TUNEL) assay, while osteoclast and macrophage formation were assessed by tartrate-resistant acid phosphatase (TRAP) staining and F4/80+ immunostaining. Results We found that IG9402 significantly blocked osteocyte apoptosis in alveolar bone (AB) at 24 h of OTM. At 10 days, IG9402 prevented OTM-induced loss of alveolar bone density and changed the morphology and quality of osteoclasts and macrophages, but did not significantly affect the amount of tooth movement. Conclusion Our study demonstrates that osteocyte apoptosis may play a significant role in osteoclast and macrophage formation during OTM, but does not seem to play a role in the magnitude of orthodontic tooth movement.https://doi.org/10.1186/s40510-021-00366-4Orthodontic tooth movementOsteocyte apoptosisBisphosphonate |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michele Kaplan Zana Kalajzic Thomas Choi Imad Maleeh Christopher L. Ricupero Michelle N. Skelton Madeleine L. Daily Jing Chen Sunil Wadhwa |
spellingShingle |
Michele Kaplan Zana Kalajzic Thomas Choi Imad Maleeh Christopher L. Ricupero Michelle N. Skelton Madeleine L. Daily Jing Chen Sunil Wadhwa The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study Progress in Orthodontics Orthodontic tooth movement Osteocyte apoptosis Bisphosphonate |
author_facet |
Michele Kaplan Zana Kalajzic Thomas Choi Imad Maleeh Christopher L. Ricupero Michelle N. Skelton Madeleine L. Daily Jing Chen Sunil Wadhwa |
author_sort |
Michele Kaplan |
title |
The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
title_short |
The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
title_full |
The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
title_fullStr |
The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
title_full_unstemmed |
The role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
title_sort |
role of inhibition of osteocyte apoptosis in mediating orthodontic tooth movement and periodontal remodeling: a pilot study |
publisher |
SpringerOpen |
series |
Progress in Orthodontics |
issn |
2196-1042 |
publishDate |
2021-07-01 |
description |
Abstract Background Orthodontic tooth movement (OTM) has been shown to induce osteocyte apoptosis in alveolar bone shortly after force application. However, how osteocyte apoptosis affects orthodontic tooth movement is unknown. The goal of this study was to assess the effect of inhibition of osteocyte apoptosis on osteoclastogenesis, changes in the alveolar bone density, and the magnitude of OTM using a bisphosphonate analog (IG9402), a drug that affects osteocyte and osteoblast apoptosis but does not affect osteoclasts. Material and methods Two sets of experiments were performed. Experiment 1 was used to specifically evaluate the effect of IG9402 on osteocyte apoptosis in the alveolar bone during 24 h of OTM. For this experiment, twelve mice were divided into two groups: group 1, saline administration + OTM24-h (n=6), and group 2, IG9402 administration + OTM24-h (n=6). The contralateral unloaded sides served as the control. The goal of experiment 2 was to evaluate the role of osteocyte apoptosis on OTM magnitude and osteoclastogenesis 10 days after OTM. Twenty mice were divided into 4 groups: group 1, saline administration without OTM (n=5); group 2, IG9402 administration without OTM (n=5); group 3, saline + OTM10-day (n=6); and group 4, IG9402 + OTM10-day (n=4). For both experiments, tooth movement was achieved using Ultra Light (25g) Sentalloy Closed Coil Springs attached between the first maxillary molar and the central incisor. Linear measurements of tooth movement and alveolar bone density (BVF) were assessed by MicroCT analysis. Cell death (or apoptosis) was assessed by terminal dUTP nick-end labeling (TUNEL) assay, while osteoclast and macrophage formation were assessed by tartrate-resistant acid phosphatase (TRAP) staining and F4/80+ immunostaining. Results We found that IG9402 significantly blocked osteocyte apoptosis in alveolar bone (AB) at 24 h of OTM. At 10 days, IG9402 prevented OTM-induced loss of alveolar bone density and changed the morphology and quality of osteoclasts and macrophages, but did not significantly affect the amount of tooth movement. Conclusion Our study demonstrates that osteocyte apoptosis may play a significant role in osteoclast and macrophage formation during OTM, but does not seem to play a role in the magnitude of orthodontic tooth movement. |
topic |
Orthodontic tooth movement Osteocyte apoptosis Bisphosphonate |
url |
https://doi.org/10.1186/s40510-021-00366-4 |
work_keys_str_mv |
AT michelekaplan theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT zanakalajzic theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT thomaschoi theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT imadmaleeh theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT christopherlricupero theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT michellenskelton theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT madeleineldaily theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT jingchen theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT sunilwadhwa theroleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT michelekaplan roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT zanakalajzic roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT thomaschoi roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT imadmaleeh roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT christopherlricupero roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT michellenskelton roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT madeleineldaily roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT jingchen roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy AT sunilwadhwa roleofinhibitionofosteocyteapoptosisinmediatingorthodontictoothmovementandperiodontalremodelingapilotstudy |
_version_ |
1721245915923087360 |