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Little or No Response to 24-hr Water-Deprivation of Fos-Like Immunoreactivity in Vasopressinergic Magnocellular Neurons in the Hypothalamus of Hereditary Microphthalmic Rats.

Kunio Sugahara, Katsuya Nagai, Yasushi Isojima, Nobuo Nagai, Shoei Sugita, Hachiro Nakagawa

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Abstract

In normal rats, 24-hr water-deprivation was found to cause a significant increase in the plasma concentration of arginine vasopressin (AVP), and marked induction of Fos in the AVP-positive magnocellular neurons in the paraventricular nucleus (PVN) and the supraoptic nucleus (SON) of the hypothalamus. On the other hand, 24-hr water-deprivation also caused a significant increase in the plasma AVP concentration in hereditary microphthalmic rats, but much less than in normal rats. Consistent with this, the extent of induction of Fos in the nuclei of the PVN and SON of these rats was lesser than in normal rats. These results suggest that hereditary microphthalmic rats have a defect or decrease in the response to water-deprivation of vasopressinergic magnocellular neurons in the PVN and SON.

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In normal rats, 24-hr water-deprivation was found to cause a significant increase in the plasma concentration of arginine vasopressin (AVP), and marked induction of Fos in the AVP-positive magnocellular neurons in the paraventricular nucleus (PVN) and the supraoptic nucleus (SON) of the hypothalamus. On the other hand, 24-hr water-deprivation also caused a significant increase in the plasma AVP concentration in hereditary microphthalmic rats, but much less than in normal rats. Consistent with this, the extent of induction of Fos in the nuclei of the PVN and SON of these rats was lesser than in normal rats. These results suggest that hereditary microphthalmic rats have a defect or decrease in the response to water-deprivation of vasopressinergic magnocellular neurons in the PVN and SON.

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Available abstract

In normal rats, 24-hr water-deprivation was found to cause a significant increase in the plasma concentration of arginine vasopressin (AVP), and marked induction of Fos in the AVP-positive magnocellular neurons in the paraventricular nucleus (PVN) and the supraoptic nucleus (SON) of the hypothalamus. On the other hand, 24-hr water-deprivation also caused a significant increase in the plasma AVP concentration in hereditary microphthalmic rats, but much less than in normal rats. Consistent with this, the extent of induction of Fos in the nuclei of the PVN and SON of these rats was lesser than in normal rats. These results suggest that hereditary microphthalmic rats have a defect or decrease in the response to water-deprivation of vasopressinergic magnocellular neurons in the PVN and SON.

Key concepts: Vasopressin, Endocrinology, Internal medicine, Supraoptic nucleus, Hypothalamus, Magnocellular cell, Arginine, Nucleus

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Little or No Response to 24-hr Water-Deprivation of Fos-Like Immunoreactivity in Vasopressinergic Magnocellular Neurons in the Hypothalamus of Hereditary Microphthalmic Rats. — Research Paper | ScholarLens