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Mast cell population in the frog brain: distribution and influence of thyroid status

机译:蛙脑肥大细胞群:甲状腺状况的分布和影响

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摘要

In the developing frog brain, the majority of mast cells (MC) are distributed in the pia mater, and some immature MC are located adjacent to the blood capillaries in and around the neuropil. In the adult brain, MC are more numerous than in pre-and prometamorphic tadpoles; they are mainly located within the pia mater and are particularly numerous in the choroid plexuses. Many MC are found within the brain ventricles juxtaposed to the ependymal lining. MC are rarely observed in the brain parenchyma. In the adult brain, MC number is much higher than in the brain of post-metamorphic froglets. In the latter, MC number is nearly 2-fold over that found in the pre-metamorphic brain. Treatment of pre-and pro-metamorphic tadpoles with 3,5,3'-triiodothyronine (T-3) and thyroxine (T-4) stimulates overall larval development but does not induce a significant change in MC population within the brain. By contrast, treatment with 6-n-propyl-2-thiouracil (PTU) delays larval development and leads to a significant numerical increase of brain MC. In the adult, PTU treatment also has a similar effect whereas hypophysectomy causes a drastic decrease of MC population. The negative effects of hypophysectomy are successfully counteracted by a two-week replacement therapy with homologous pars distalis homogenate. In the adult frog, MC population seems to be refractory to thyroid hormone treatment. The present study on frog brain suggests that pituitary-thyroid axis may be involved in the regulation of MC frequency.
机译:在发育中的青蛙大脑中,大多数肥大细胞(MC)分布在脑脊垫中,而一些未成熟的MC则位于神经毛囊内和周围的毛细血管附近。在成年大脑中,MC比前pre和前变形t更多。它们主要位于皮下组织内,在脉络丛中尤为多见。在与室管膜并列的脑室中发现许多MC。 MC在脑实质中很少观察到。在成年大脑中,MC数量远高于后变态小青蛙的大脑。在后者中,MC数是变态前大脑中MC数的近2倍。用3,5,3'-三碘甲腺氨酸(T-3)和甲状腺素(T-4)治疗变态前和变态t可刺激幼虫的整体发育,但不会引起大脑内MC种群的显着变化。相比之下,用6-正丙基-2-硫尿嘧啶(PTU)治疗会延迟幼虫的发育并导致大脑MC的数量显着增加。在成人中,PTU治疗也具有类似的效果,而垂体切除术会导致MC人群的急剧减少。进行了为期两周的远端同种同种异体匀浆替代治疗,成功地抵消了垂体切除术的负面影响。在成年青蛙中,MC人群似乎对甲状腺激素治疗无效。目前对蛙脑的研究表明垂体-甲状腺轴可能参与了MC频率的调节。

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