There is a tight structural relation and functional co-operation between the nervous, endocrine and immune systems. A dense network of soluble neuro-endocrine and immune mediators exists to ensure close interactions. These hormones, cytokines and neurotransmitters all interact through positive and negative feed-forward and feedback loops. The mediators, once considered specific to the central nervous system (CNS), the endocrine system (ES) or the immune system (IS), do in fact act in all three systems, forming that way the united neuro-endocrine-immune system. The complex neuro-endocrine-immune networks operate under both physiological and pathological conditions. In the presented study microscopical analyses of selected immune organs (the thymus, spleen, inguinal and subscapular lymph nodes) and of the adrenal gland of the neurodeficient Lurcher mutant mice and control C3H mice were performed. In the neurodeficient mice the morphology of the immune organs was impaired. The changes followed in the spleen, especially the increased number of megakaryocytes, lead to the hypothesis of enhanced extramedullar hemopoiesis in the neurodeficient Lurcher mutant mice. Histopathological analysis of the adrenal gland showed the relative hypertrophy of the adrenal medulla. Regarding the adrenal cortex, the three cortical zones, zona glomerularis, fasciculata and reticularis, are difficult to be distinguished. It has been supposed that structural changes of adrenal medulla could document the increased secretion of catecholamines in the neurodeficient animals. Our observations confirm the idea of the tight cooperation of neuro-endocrine-immune structures and contribute to its better understanding, specifically in the conditions of postnatally progressing neurodeficiency.
CITATION STYLE
Beranová, M., Manďáková, P., Šíma, P., Slípka, J., Vožeh, F., Kočová, J., … Sýkora, J. (2002). Morphology of adrenal gland and lymph organs is impaired in neurodeficient lurcher mutant mice. Acta Veterinaria Brno, 71(1). https://doi.org/10.2754/avb200271010023
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