华西口腔医学杂志

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不同静压力对大鼠髁突软骨细胞生物学特性的影响

郭维华1, 李松2, 徐芸1   

  1. 1.昆明医学院口腔医学院正畸学教研室; 2.口腔生理解剖学教研室, 云南昆明650031
  • 收稿日期:2007-12-25 修回日期:2007-12-25 出版日期:2007-12-20 发布日期:2007-12-20
  • 通讯作者: 李松,Tel:0871- 5329708
  • 作者简介:郭维华( 1976-),男,云南人,住院医师,硕士
  • 基金资助:

    云南省科学与技术后备人才基金资助项目( 2003RC10)

Effects of differ ent static compr essive str ess on biological char acter istics of condylar chondrocytes of neonatal SD r ats GUO Wei- hua1, LI Song2, XU Yun1

GUO Wei- hua1, LI Song2, XU Yun1   

  1. 1. Dept. of Orthodontics, College of Stomatology, Kunming Medical College, Kunming 650031, China; 2. Dept. of Oral Physiology and Anatomy, College of Stomatology, Kunming Medical College, Kunming 650031, China
  • Received:2007-12-25 Revised:2007-12-25 Online:2007-12-20 Published:2007-12-20
  • Contact: LI Song,Tel:0871- 5329708

摘要:

目的探讨不同静压力对髁突软骨细胞生物学特性的影响。方法对培养到第3代的新生SD大鼠髁突软骨细胞加载12、24、36 kPa的静压力,1 h后立即收集样本,同时设不加载力的对照组,用免疫组织化学技术对样本细胞进行染色,用病理图像分析仪分析细胞胞浆中胶原表达强度的变化。结果对于对照组、12、24 kPa组,随着压力的增加,髁突软骨细胞表达Ⅰ、Ⅱ、Ⅲ型胶原及蛋白多糖( PG)增加。与24 kPa组相比,36 kPa组髁突软骨细胞表达Ⅰ型胶原及PG减弱,而Ⅱ、Ⅲ型胶原表达则增加。结论适当的压力刺激可能会使髁突软骨细胞分化更加成熟,但是过大的应力则可能导致髁突软骨细胞生物学特性减弱,从而表现出去分化的某些特征。

关键词: 髁突软骨细胞, 静压力, 生物学特性

Abstract:

Objective To investigate the effects of different static compressive stress on the biological characteristics of the mandibular condylar chondrocyt(es MCC). Methods The static compressive stress with a magnitude of 12, 24, 36 kPa were exerted on the third passage of MCC for one hour. The MCC was dyed by immunohisto- chemical method. The changes of the expression of collagen type Ⅰ , Ⅱ , Ⅲ and proteoglycan ( PG) were evaluated by a pathologic portraits analytic system. Results The static compressive stress with a magnitude from 12 to 24 kPa can enforce the expression of collagen type Ⅰ, Ⅱ, Ⅲ and PG of MCC. However, the decrease of expression of collagen type Ⅰ and PG of MCC was detected when exerted by the static compressive stress with a magnitude from 24 kPa to 36 kPa. Conclusion The static stress of proper magnitude can make MCC more differentiate. However, the static stress of over- magnitude may make the biological characteristics of MCC weaken and express some characteristics of dedifferentiation.

Key words: mandibular condylar chondrocytes, compressive stress, biological characteristics