Appearance of Beta-2-Microglobulin in Rat Hypothalamic Magnocellular Neurons after Hypophysectomy
Motoo Shinoda, Yoshihide Ohe, Kenji Katakai, Kenji Kabeya, Masatomo Watanabe, Toyohiko Miura, Koichi Ishikawa
Abstract
Motoo Shinoda, Yoshihide Ohe, Kenji Katakai, Kenji Kabeya, Masatomo Watanabe, Toyohiko Miura, Koichi Ishikawa
Abstract
To clarify the relationship between neuronal cell degeneration and MHC class-I complex expression, we have immunohistochemically examined the distribution of beta(2)-microglobulin in the hypophysectomized rat hypothalamus. In the sham-operated control rats, positive stainings were distributed only in blood vessels in the hypothalamic areas where magnocellular neurons were localized. Three days after hypophysectomy, positive stainings appeared in a large number of magnocellular neurons in the paraventricular and supraoptic nuclei. Most of such beta(2)-microglobulin-positive cells were simultaneously stained with antivasopressin serum. The pattern of distribution of positive cells and the intensity of the stainings remained unchanged at least until the 14th day. These morphological findings suggest that the process of degeneration of hypothalamic magnocellular neurons after hypophysectomy is a useful model to investigate the role of MHC class I complex in the brain.
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To clarify the relationship between neuronal cell degeneration and MHC class-I complex expression, we have immunohistochemically examined the distribution of beta(2)-microglobulin in the hypophysectomized rat hypothalamus. In the sham-operated control rats, positive stainings were distributed only in blood vessels in the hypothalamic areas where magnocellular neurons were localized. Three days after hypophysectomy, positive stainings appeared in a large number of magnocellular neurons in the paraventricular and supraoptic nuclei. Most of such beta(2)-microglobulin-positive cells were simultaneously stained with antivasopressin serum. The pattern of distribution of positive cells and the intensity of the stainings remained unchanged at least until the 14th day. These morphological findings suggest that the process of degeneration of hypothalamic magnocellular neurons after hypophysectomy is a useful model to investigate the role of MHC class I complex in the brain.
Key concepts: Hypophysectomy, Internal medicine, Endocrinology, Hypothalamus, Magnocellular cell, Beta-2 microglobulin, Supraoptic nucleus, Biology