Takahashi I, Mizoguchi I, Nakamura M, Kagayama M, Mitani H
Department of Orthodontics, School of Dentistry, Tohoku University, Sendai, Japan.
Anat Rec. 1995 Mar;241(3):328-36. doi: 10.1002/ar.1092410306.
The effects of biomechanical stress on the growth and development of the mandibular condyle have been studied by many investigators. However, the role of the lateral pterygoid muscle in this development is not clear.
Hyperfunction of the lateral pterygoid muscles of male 3-week-old Sprague-Dawley rats was induced by electrical stimulation, and the responses of the mandibular condyles were compared to control tissues by a double-fluorescent staining technique using polyclonal antibodies against type I and type II collagen. Electrical stimulation consisted of repeated application (5 seconds on/5 seconds off) of a 5 Hz current for up to 7 days.
In the first 2 days, cartilaginous tissues rich in type II collagen disappeared in the anterior and posterior areas, which were loaded by tensional force due to direct and indirect attachment of the lateral pterygoid muscles. Tissues in these areas were replaced by intramembranous bone that was reactive for type I collagen at 7 days. By the end of the experiment, the trabecula of the condyle was remodeled more perpendicularly, thus resisting the compressive force due to hyperfunction of the lateral pterygoid muscles.
These results suggest that the activity of the lateral pterygoid muscle might play a significant role in the differentiation of progenitor cells and in the maturation and calcification of chondrocytes in mandibular condyles.
许多研究人员已经研究了生物力学应力对下颌髁突生长发育的影响。然而,翼外肌在这一发育过程中的作用尚不清楚。
通过电刺激诱导3周龄雄性Sprague-Dawley大鼠翼外肌功能亢进,并使用抗I型和II型胶原的多克隆抗体,通过双荧光染色技术将下颌髁突的反应与对照组织进行比较。电刺激包括以5Hz电流重复施加(开5秒/关5秒),持续长达7天。
在最初2天,富含II型胶原的软骨组织在前部和后部区域消失,这些区域由于翼外肌的直接和间接附着而受到张力作用。这些区域的组织在7天时被对I型胶原呈反应性的膜内骨所取代。到实验结束时,髁突的小梁重塑得更加垂直,从而抵抗由于翼外肌功能亢进所产生的压缩力。
这些结果表明,翼外肌的活动可能在下颌髁突祖细胞的分化以及软骨细胞的成熟和钙化中起重要作用。