Effects of congenital hypothyroidism on the morphology of trigeminal motoneuron assessed by the Golgi staining method in rats
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چکیده
Introduction: Appropriate thyroid hormone (TH) levels are essential during the critical period of brain development, which is associated with the growth of axons and dendrites and synapse formation. In rats, oral motor circuits begin to reach to their adult pattern around 3 weeks after birth, the period in which alteration from sucking to biting and chewing occurs (weaning time). Trigeminal motor nucleus (Mo5) as the supplier of nerves that innervate jaw muscles, shows obvious developmental changes during this period. TH may have an important role in these changes. Methods: Time pregnant female rats received 50 ppm propylthiouracil (PTU) in their drinking water from 16 day of pregnancy, continued to 23 day post partum, while control group received tap water. Brain stems of 6 male 23-dayold pups in each experimental group were processed for Golgi staining method. Using rotary microtome, brain stem paraffin embedded blocks were cut to 70 micron slices. Mo5 tissue sections were selected for photography and morphological analysis. Cell body measurements were performed using Starter image analyzer software. Modified Sholl’s concentric circles technique was used for the morphological analysis of the dendrites. Results: The results of cell body measurements revealed a significant decrease in the soma size of trigeminal motoneurons in hypothyroid pups. Besides, counting of the dendrites showed that the number of secondary, tertiary and higher order dendrites, but not primary dendrites, showed a significant decrease compared to the normal group. Conclusion: The important role of thyroid hormone in motoneurons development and neurofilaments formation suggests that congenital hypothyroidism can alter the cell size and dendritic arborization pattern of trigeminal
منابع مشابه
Effects of congenital hypothyroidism on the morphology of trigeminal motoneuron assessed by the Golgi staining method in rats
Introduction: Appropriate thyroid hormone (TH) levels are essential during the critical period of brain development, which is associated with the growth of axons and dendrites and synapse formation. In rats, oral motor circuits begin to reach to their adult pattern around 3 weeks after birth, the period in which alteration from sucking to biting and chewing occurs (weaning time). Trigeminal ...
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CGRP, which coexists with acetylcholine in trigeminal motoneurons, could be one of the regulatory anterograde factors responsible for the enhanced expression of AChR subunits in neuromuscular junction. It has been also shown that low level of thyroid hormone plasma concentration has influence on the transitional development of muscle fibers and related motoneurons through a sever reduction in A...
متن کاملThe effect of hypothyroidism on the trigeminal calcitonin gene-related peptide containing motoneurons: an immunohisto-chemical study in late neonatal life
CGRP, which coexists with acetylcholine in trigeminal motoneurons, could be one of the regulatory anterograde factors responsible for the enhanced expression of AChR subunits in neuromuscular junction. It has been also shown that low level of thyroid hormone plasma concentration has influence on the transitional development of muscle fibers and related motoneurons through a sever reduction in A...
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متن کاملSpecific and Non-Specific Thalamocortical Afferents to the Whisker–Related Sensory Cortical Region in Rats with Congenital Hypothyroidism
Background & Aims: Thyroid hormones are of great importance in the development of the central nervous system. Congenital hypothyroidism may affect the reorganization of specific and non-specific thalamocortical afferents to whisker–related sensory (wS1) corticol region in rats. Methods: Congenital hypothyroidism was induced by adding propylthiouracil (PTU) (25 ppm) to the rats...
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تاریخ انتشار 2010