Li Qiming, Chen Xinyi, Li Xinyi, Jiang Xiaoge, Li Xingjian, Men Xinrui, Li Yan, Chen Song
State Key Laboratory of Oral Diseases, National Center for Stomatology, National Clinical Research Center for Oral Diseases, Department of Orthodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Department of Stomatology, Inner Mongolia Hulunbuir Yakeshi Municipal People's Hospital, Hulunbuir, China.
J Periodontal Res. 2024 Nov 1. doi: 10.1111/jre.13358.
This study aims to investigate the role of Plexin-B2 in tension-induced osteogenesis of periodontal ligament stem cells (PDLSCs) and its biomechanical mechanism.
In vitro, cyclic tension simulated orthodontic forces to assess Plexin-B2 expression in PDLSCs. We then knocked out Plexin-B2 using lentivirus to explore its role in tension-induced osteogenesis. In vivo, we used nickel-titanium springs to establish orthodontic tooth movement (OTM) models in mice. Local periodontal Plexin-B2 expression was knocked down using adeno-associated viruses (AAVs) to study its influence on new bone formation under mechanical tension in OTM models. Molecular mechanisms were elucidated by manipulating Plexin-B2 and RhoA expression, assessing related proteins, and observing F-actin and Yes-associated protein (YAP) through immunofluorescence.
Plexin-B2 expression in PDLSCs increased under cyclic tension. Decrease of Plexin-B2 reduced the expression of osteogenic protein in PDLSCs and negatively affected new bone formation during OTM. RhoA expression and phosphorylation of ROCK2/LIMK2/Cofilin decreased in Plexin-B2 knockout PDLSCs but were reversed by RhoA overexpression. The level of F-actin decreased in Plexin-B2 knockout PDLSCs but increased after RhoA rescue. Nuclear YAP was reduced in Plexin-B2 knockout PDLSCs but increased after RhoA overexpression.
Plexin-B2 is involved in tension-induced osteogenesis. Mechanistically, the RhoA signaling pathway, the F-actin arrangement, and the nuclear translocation of YAP are involved in the mechanotransduction of Plexin-B2.
本研究旨在探讨丛状蛋白B2(Plexin-B2)在张力诱导的牙周膜干细胞(PDLSCs)成骨过程中的作用及其生物力学机制。
在体外,通过循环张力模拟正畸力,评估PDLSCs中Plexin-B2的表达。然后利用慢病毒敲除Plexin-B2,以探究其在张力诱导成骨中的作用。在体内,使用镍钛弹簧建立小鼠正畸牙移动(OTM)模型。利用腺相关病毒(AAVs)敲低局部牙周组织中Plexin-B2的表达,以研究其对OTM模型中机械张力下新骨形成的影响。通过调控Plexin-B2和RhoA的表达、评估相关蛋白以及通过免疫荧光观察F-肌动蛋白和Yes相关蛋白(YAP),阐明分子机制。
在循环张力作用下,PDLSCs中Plexin-B2的表达增加。Plexin-B2表达降低会减少PDLSCs中成骨蛋白的表达,并对OTM过程中的新骨形成产生负面影响。在敲除Plexin-B2的PDLSCs中,RhoA的表达以及ROCK2/LIMK2/丝切蛋白(Cofilin)的磷酸化水平降低,但RhoA过表达可使其逆转。敲除Plexin-B中的F-肌动蛋白水平降低,但在RhoA挽救后升高。敲除Plexin-B2的PDLSCs中核YAP减少,但在RhoA过表达后增加。
Plexin-B2参与张力诱导的成骨过程。机制上,RhoA信号通路、F-肌动蛋白排列以及YAP的核转位参与了Plexin-B2的机械转导。