Liberti Edson A, Fontes Ricardo B V, Fuggi Verginia M, Maifrino Laura B M, Souza Romeu R
Autonomic Nervous System Laboratory (VQM), Department of Anatomy, Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.
World J Gastroenterol. 2007 Jul 14;13(26):3598-604. doi: 10.3748/wjg.v13.i26.3598.
To evaluate the effects of protein deprivation on the myenteric plexus of the esophagus of weanling rats.
Pregnant female Wistar rats were divided into 2 groups: nourished (N), receiving normal diet, and undernourished (D), receiving a protein-deprived diet, which continued after birth. At twenty-one days of age, 13 esophagi from each group were submitted to light microscopy and morphometrical analysis employing the NADH diaphorase, NADPH diaphorase and acetylcholinesterase techniques. Three other esophagi from each group were evaluated with transmission electron microscopy (TEM).
In both the NADH- and the NADPH-reactive mounts, the neurons of the N mounts were more intensely stained, while in the D esophagi only the larger neurons were reactive. Many myenteric neurons of N were intensely reactive for AChE activity but only a few neurons of D exhibited these aspects. Ultrastructural analysis revealed that the granular reticulum of N showed large numbers of ribosomes aligned on the outer surface of its regularly arranged membrane while the ribosomes of D were disposed in clusters. The chromatin was more homogeneously scattered inside the neuron nucleus of N as well as the granular component of the nucleolus was evidently more developed in this group. Statistically significant differences between N and D groups were detected in the total estimated number of neurons stained by the NADPH technique.
The morphological and quantitative data shows that feeding with protein-deprived diet in 21-d old rats induces a delay in the development of the myenteric neurons of the esophagus.
评估蛋白质缺乏对断奶大鼠食管肌间神经丛的影响。
将怀孕的雌性Wistar大鼠分为2组:营养充足组(N),给予正常饮食;营养不足组(D),给予蛋白质缺乏饮食,出生后继续该饮食。在21日龄时,每组13个食管进行光镜检查和采用NADH黄递酶、NADPH黄递酶和乙酰胆碱酯酶技术的形态计量分析。每组另外3个食管用透射电子显微镜(TEM)评估。
在NADH和NADPH反应标本中,N组的神经元染色更深,而在D组食管中只有较大的神经元有反应。N组许多肌间神经元对AChE活性有强烈反应,但D组只有少数神经元表现出这些特征。超微结构分析显示,N组的粗面内质网在其规则排列的膜外表面有大量排列的核糖体,而D组的核糖体成簇分布。N组神经元核内的染色质分布更均匀,该组核仁的颗粒成分明显更发达。在通过NADPH技术染色的神经元总数估计中,检测到N组和D组之间存在统计学显著差异。
形态学和定量数据表明,给21日龄大鼠喂食蛋白质缺乏饮食会导致食管肌间神经元发育延迟。