压力和尾吊对大鼠骨骼肌生长的影响
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教育部中央高校基本科研业务费重点基础研究专项(2010SCU21017)


Effect of pressure and tail suspension on the growth of rat skeletal muscle
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    目的 分别建立尾吊和压力大鼠实验模型,比较压力与尾吊对大鼠骨骼肌生长的不同影响。方法36只雄性SD大鼠随机分为3组:正常对照组、尾吊组和压力组,每组分两个阶段(7、14 d)进行观察。实验结束后测量比目鱼肌与趾长伸肌的湿重体重比、肌纤维横截面积和直径,以及血清中IGF-1浓度。结果 压力作用7 d与尾吊7 d后,比目鱼肌湿重体重比、肌纤维横截面积、肌纤维直径都较对照组显著减少(P<0.05);压力组分别减少23.52%、14.26%、13.47%(P<0.05),尾吊组分别减少23.52%、33.07%、25.09%(P<0.05)。压力作用14 d后,各指标分别减少20.51%、-10.49%、-5.73%,都低于7 d压力组的减少量(P<0.05);而尾吊14 d后,比目鱼肌湿重体重比减少了46.15%,则显著高于7 d尾吊组的减少量。血清IGF-1浓度和趾长伸肌的改变在压力、尾吊组间没有显著性差异。结论 压力对比目鱼肌生长影响的过程不同于尾吊。压力作用初期是以炎症反应为主的组织损伤过程,待肌细胞适应压力环境后,可能产生一定的功能适应性生长。因此,在临床上,无论假肢接受腔设计还是康复训练,考虑接受腔压力对内部肌肉损伤的影响,将有助于对残端肌肉组织的保护。

    Abstract:

    Objective To investigate effects of pressure and tail suspension on the growth of rat skeletal muscles by establishing the tail-suspended rat model and pressure-induced rat model, respectively. Methods Thirty-six male Sprague-Dawley rats were randomly divided into three groups: the control-group (CON), the tail-suspended group (SUS), the pressure group (PRE), and each group was undergoing two stages (7, 14 d) for observation. At the end of the experiment, the muscle wet weight/body weight (Mww/Bw), muscle fiber cross-sectional area (MFCSA), muscle fiber diameter (MFD) of soleus and extensor digitorum longus (EDL) and the IGF-1 concentration were measured, respectively. Results For both the SUS group and PRE group with 7d, their Mww/Bw, MFCSA and MFD of soleus were significantly reduced (P<0.05) as compared to the CON group, which were reduced by 23.52%, 14.26%, 13.47% in PRE group, respectively , while these indexes in SUS group were reduced by 23.52%, 33.07%, 25.09%, respectively. Meanwhile, the decrease of Mww/Bw, MFCSA and MFD in PRE group with 14d was reduced by 20.51%, -10.49%, -5.73%, respectively, which was less than that in PRE group with 7d. However, the decrease of Mww/Bw in SUS group with 14d reached 46.15%, showing significantly higher than that of the SUS group with 7d. For the IGF-1 concentration and EDL changes, no remarkable differences were found among the CON, PRE and SUS groups. Conclusions The impact of pressure on the process of soleus growth is different from that of the suspension (disuse). During the early stage of pressure application, the deep tissue injury mainly with inflammatory responses can be found in the muscle. When the muscle cells adapt to the pressure environment, they may produce a functional adaptation to growth. Therefore, such effect of socket pressure on skeletal muscle should be considered in clinic for prosthetic socket design or rehabilitation training, which will help protect the muscle tissues.

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但建波,蒋文涛,刘展,钟振东,樊瑜波.压力和尾吊对大鼠骨骼肌生长的影响[J].医用生物力学,2013,28(2):189-194

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  • 收稿日期:2012-03-28
  • 最后修改日期:2012-08-27
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