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母体营养剥夺和再喂养后大鼠比目鱼肌和趾长伸肌中的卫星细胞和肌核群体

Satellite cell and myonuclei populations in rat soleus and extensor digitorum longus muscles after maternal nutritional deprivation and realimentation.

作者信息

Beermann D H, Hood L F, Liboff M

出版信息

J Anim Sci. 1983 Dec;57(6):1618-25. doi: 10.2527/jas1983.5761618x.

DOI:10.2527/jas1983.5761618x
PMID:6674294
Abstract

The manner and rate of nuclear proliferation and accumulation in rat skeletal muscle was investigated using a model of induced permanent growth impairment in rats to gain additional insight into the regulation of skeletal muscle growth. Comparisons were made at 1, 21 and 175 d between control progeny and progeny of dams restricted during gestation and lactation to 50% the daily feed intake of ad libitum fed controls, followed by realimentation after weaning. Estimates of total satellite cells/muscle were lower (P less than .01) in soleus and extensor digitorum longus (EDL) of restricted progeny at 21 and 175 d. Estimates of total satellite cells/muscle increased nearly twofold between 21 and 175 d in the soleus and decreased slightly in EDL in both treatment groups. Satellite cell concentration expressed as a percentage of total muscle nuclei was not different between restricted and control progeny at either 1 or 175 d. However, while satellite cell percentages decreased about 50% between 1 and 21 d in controls, they remained at initial levels in restricted progeny. Incidence of satellite cells/muscle fiber (satellite cell concentration) decreased between 1 and 21 d in control soleus and EDL, but remained unchanged or was slightly higher in soleus and EDL of restricted progeny at 21 d. Incidence of satellite cells continued to decrease between 21 and 175 d in restricted and control EDL and restricted soleus, but was unchanged in control soleus. Incidence of myonuclei/fiber (myonuclei concentration) increased with age (P less than .005), was not affected by growth impairment either before or after realimentation and was higher (P less than .005) in soleus than EDL.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用大鼠永久性生长障碍诱导模型,研究了大鼠骨骼肌细胞核增殖和积累的方式及速率,以进一步深入了解骨骼肌生长的调节机制。在1、21和175日龄时,对对照组后代以及在妊娠和哺乳期饲料摄入量限制为自由采食对照组每日摄入量50%的母鼠后代进行比较,断奶后再进行恢复喂养。在21日龄和175日龄时,限食后代的比目鱼肌和趾长伸肌(EDL)中卫星细胞总数/肌肉的估计值较低(P<0.01)。在两个处理组中,比目鱼肌卫星细胞总数/肌肉的估计值在21日龄至175日龄之间增加了近两倍,而EDL中略有下降。在1日龄或175日龄时,限食后代和对照后代中卫星细胞浓度占总肌核的百分比没有差异。然而,对照组中卫星细胞百分比在1日龄至21日龄之间下降了约50%,而限食后代则保持在初始水平。对照组比目鱼肌和EDL中卫星细胞/肌纤维发生率(卫星细胞浓度)在1日龄至21日龄之间下降,但限食后代的比目鱼肌和EDL在21日龄时保持不变或略高。在限食和对照的EDL以及限食的比目鱼肌中,卫星细胞发生率在21日龄至175日龄之间持续下降,但对照比目鱼肌中保持不变。肌核/纤维发生率(肌核浓度)随年龄增加(P<0.005),在恢复喂养前后均不受生长障碍影响,且比目鱼肌中的发生率高于EDL(P<0.005)。(摘要截断于250字)

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Satellite cell and myonuclei populations in rat soleus and extensor digitorum longus muscles after maternal nutritional deprivation and realimentation.母体营养剥夺和再喂养后大鼠比目鱼肌和趾长伸肌中的卫星细胞和肌核群体
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