Korfage J A M, Helmers R, Matignon M de Goüyon, van Wessel T, Langenbach G E J, van Eijden T M G J
Department of Functional Anatomy, Academic Center for Dentistry Amsterdam, University of Amsterdam and Free University, Amsterdam, The Netherlands.
Cells Tissues Organs. 2009;190(1):42-52. doi: 10.1159/000155226. Epub 2008 Sep 11.
We examined the difference in fiber type composition and cross-sectional areas during postnatal development in male rabbit jaw muscles and compared these with changes in leg muscles. The myosin heavy chain (MyHC) content of the fibers was determined by immunohistochemistry. No fiber type difference was found between the jaw muscles in 20-week-old rabbits. However, the way this adult fiber type composition was reached differed between the muscles. The deep temporalis, medial pterygoid, and superficial masseter displayed an increase in alpha fibers during early and a decrease during late postnatal development. Other jaw muscles displayed an increase in alpha fibers during early development only. In contrast, alpha fibers were not found in the soleus, in which fiber type changes were completed at week 4. The gastrocnemius muscle did not change its fiber type composition. Initially, fibers in jaw-opening muscles had larger cross-sectional areas than in other muscles, but they increased less during development. Although there were no large differences in the fiber type composition of muscles in young adult rabbits, large differences were found in the jaw muscles, but not in the leg muscles, during development. In part, these developmental changes in fiber percentages within the jaw muscles can be explained by functional modifications in this muscle group. In the present study, the deep temporalis, medial pterygoid, and superficial masseter showed the most dramatic percent changes in fibers during postnatal development.
我们研究了雄性兔颌部肌肉出生后发育过程中纤维类型组成和横截面积的差异,并将其与腿部肌肉的变化进行了比较。通过免疫组织化学法测定纤维的肌球蛋白重链(MyHC)含量。在20周龄的兔子中,颌部肌肉之间未发现纤维类型差异。然而,不同肌肉达到这种成年纤维类型组成的方式有所不同。颞深肌、翼内肌和咬肌浅层在出生后早期α纤维增加,后期减少。其他颌部肌肉仅在早期发育过程中α纤维增加。相比之下,比目鱼肌中未发现α纤维,其纤维类型变化在第4周时完成。腓肠肌的纤维类型组成没有变化。最初,开颌肌中的纤维横截面积比其他肌肉中的大,但在发育过程中增加较少。虽然成年幼兔肌肉的纤维类型组成没有很大差异,但在发育过程中,颌部肌肉存在很大差异,而腿部肌肉则没有。颌部肌肉中纤维百分比的这些发育变化部分可以通过该肌肉群的功能改变来解释。在本研究中,颞深肌、翼内肌和咬肌浅层在出生后发育过程中纤维的百分比变化最为显著。