Institute of Physiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Physiol Res. 2010;59(5):783-801. doi: 10.33549/physiolres.931827. Epub 2010 Apr 20.
We analyzed fiber type composition of soleus and extensor digitorum longus (EDL) muscles of 3- to 19-month-old male and female inbred Lewis rats using histochemical demonstration of mATPase activity. The rats were divided into four groups of the mean age of 3, 6, 9 and 14 months. We found that the soleus muscle of 3-month-old rats contained significantly more of fast 2A fibers and less of slow type 1 fibers compared to older rats, while no significant difference was found between female and male rats at any age group. In contrast, we found no significant difference in the EDL fiber type composition among the age groups, but we found that the EDL muscle of female rats contained significantly less 2A fibers and more 2B fibers than that of male animals. Our results thus revealed an age difference in the soleus muscle and a sex difference in the EDL muscle among postnatal Lewis rats. The number of slow type 1 fibers in the soleus muscle varied between 87 and 100% and that of 2A fibers between 13 and 0%. In the EDL the percentage of type 1 fibers varied between 2.6 and 8.7%, that of 2A fibers between 12.6 and 25.8% and that of 2B fibers between 70.4 and 81.6%. Both muscles thus exhibited a considerable degree of variability among individual animals even in the same age group. Furthermore, a comparison of the Lewis rats with literature data of other rat strains showed that the number of fast 2A fibers in the soleus muscle of 4-month-old and older animals decreased in this order: SHR>Lister Hooded>Fisher 344>Sprague-Dawley>Wistar>WBN/Kob>Lewis strain, being almost 20% in the SHR and less than 2% in the Lewis rats. In contrast, the "fastest" composition (judged according to the percentage of the fastest 2B fibers) of the EDL muscle was demonstrated by Lewis, Wistar and Fisher 344 rats (about 75%), while Sprague-Dawley and WBN/Kob rats contained only about 50% of 2B fibers. The percentage of slow type 1 fibers in the EDL was low in all strains (about 5%). Our results thus show that the individual, age and sex as well as inter-strain differences in muscle fiber type composition should not be ignored when comparing results of different studies. We also demonstrated that the inbred Lewis strain appears to have more "specialized" muscle composition, as its soleus is the "slowest" and its EDL is the "fastest" among the routinely used rat strains.
我们使用 mATPase 活性的组织化学显色法分析了 3 至 19 月龄雄性和雌性近交 Lewis 大鼠比目鱼肌和趾长伸肌的纤维类型组成。大鼠分为 4 组,平均年龄分别为 3、6、9 和 14 个月。我们发现,与年龄较大的大鼠相比,3 月龄大鼠的比目鱼肌中快速 2A 纤维的含量明显更多,而慢速 1 型纤维的含量明显更少,但在任何年龄组中,雌雄大鼠之间均无显著差异。相比之下,我们在不同年龄组之间未发现趾长伸肌纤维类型组成的显著差异,但发现雌性大鼠的 2A 纤维和 2B 纤维明显少于雄性动物。因此,我们的研究结果表明,出生后 Lewis 大鼠的比目鱼肌存在年龄差异,而趾长伸肌存在性别差异。比目鱼肌中慢型 1 纤维的数量在 87%至 100%之间,2A 纤维的数量在 13%至 0%之间。在趾长伸肌中,1 型纤维的百分比在 2.6%至 8.7%之间,2A 纤维的百分比在 12.6%至 25.8%之间,2B 纤维的百分比在 70.4%至 81.6%之间。即使在同一年龄组中,两个肌肉在个体动物之间也表现出相当大的可变性。此外,将 Lewis 大鼠与其他大鼠品系的文献数据进行比较表明,4 月龄及以上动物比目鱼肌中快速 2A 纤维的数量按以下顺序减少:SHR>Lister Hooded>Fisher 344>Sprague-Dawley>Wistar>WBN/Kob>Lewis 品系,SHR 中接近 20%,而 Lewis 大鼠中少于 2%。相比之下,根据最快 2B 纤维的百分比,Lewis、Wistar 和 Fisher 344 大鼠的趾长伸肌具有最快的“组成”(判断)(约 75%),而 Sprague-Dawley 和 WBN/Kob 大鼠仅含有约 50%的 2B 纤维。所有品系的趾长伸肌中慢型 1 纤维的百分比均较低(约 5%)。因此,我们的研究结果表明,在比较不同研究结果时,个体、年龄和性别以及品系间的肌肉纤维类型组成差异不容忽视。我们还证明,近交 Lewis 品系似乎具有更“专业化”的肌肉组成,因为其比目鱼肌是最“慢”的,而其趾长伸肌是最“快”的,在常规使用的大鼠品系中。