Mimura Hiroaki, Takaya Tatsuo, Matsuda Saeka, Nakano Keisuke, Muraoka Rina, Tomida Mihoko, Okafuji Norimasa, Fujii Takeo, Kawakami Toshiyuki
1. Department of Oral Health Promotion, Matsumoto Dental University Graduate School of Oral Medicine, Shiojiri, Japan.
2. Department of Hard Tissue Research, Matsumoto Dental University Graduate School of Oral Medicine, Shiojiri, Japan.
Int J Med Sci. 2016 Feb 20;13(4):248-54. doi: 10.7150/ijms.14129. eCollection 2016.
We carried out an experiment to induce traumatic occlusion in mice periodontal tissue and analyzed the expression of HSP47. Continuous traumatic occlusion resulted to damage and remodeling of periodontal ligament as well as increase in osteoclasts and bone resorption. Four days after traumatic occlusion, osteoclasts did not increase but Howship's lacunae became enlarged. That is, the persistent occlusal overload can destroy collagen fibers in the periodontal ligament. This was evident by the increased in HSP47 expression with the occlusal overload. HSP47 is maintained in fibroblasts for repair of damaged collagen fibers. On the other hand, osteoclasts continue to increase although the load was released. The osteoclasts that appeared on the alveolar bone surface were likely due to sustained activity. The increase in osteoclasts was estimated to occur after load application at day 4. HSP47 continued to increase until day 6 in experiment 2 but then reduced at day 10. Therefore, HSP47 appears after a period of certain activities to repair damaged collagen fibers, and the activity was returned to a state of equilibrium at day 30 with significantly diminished expression. Thus, the results suggest that HSP47 is actively involved in homeostasis of periodontal tissue subjected to occlusal overload.
我们进行了一项实验,在小鼠牙周组织中诱导创伤性咬合,并分析热休克蛋白47(HSP47)的表达。持续的创伤性咬合导致牙周韧带损伤和重塑,以及破骨细胞增加和骨吸收增加。创伤性咬合4天后,破骨细胞没有增加,但豪氏陷窝变大。也就是说,持续的咬合超负荷会破坏牙周韧带中的胶原纤维。咬合超负荷时HSP47表达增加就证明了这一点。HSP47在成纤维细胞中维持表达以修复受损的胶原纤维。另一方面,尽管负荷已解除,但破骨细胞仍继续增加。牙槽骨表面出现的破骨细胞可能是由于持续的活性所致。破骨细胞的增加估计在第4天施加负荷后发生。在实验2中,HSP47持续增加直到第6天,但在第10天减少。因此,HSP47在经过一段时间的特定活动后出现以修复受损的胶原纤维,并且在第30天活性恢复到平衡状态,表达明显减少。因此,结果表明HSP47积极参与承受咬合超负荷的牙周组织的稳态。