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Release of vasopressin and oxytocin from isolated pituitary glands of adult and new-born rats

机译:成年和新生大鼠垂体垂体释放加压素和催产素

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摘要

1. Pituitary glands of adult rats of both sexes, of lactating female and of new-born rats, incubated in a Locke solution, release both oxytocin and vasopressin. The amount of hormones released, during a measured period of incubation, is related to the actual hormone content of the gland.2. Increasing the concentration of KCl in the incubation medium, with CaCl2 present and in concentration of at least 2·2 mM, produces an enhanced release of both hormones from pituitary glands of adults, but does not affect the release of hormones from glands of new-born animals.3. Addition of ouabain to the incubation medium produces a marked increase of the release of the hormones from glands of both adult and new-born rats. This is accompanied by an extrusion of K ion and an influx of Na ion. The effect of ouabain on the hormone release and the shift of ions can be reversed by subsequent addition of adenosine triphosphate.4. The increased release of hormones produced by ouabain, in glands from new-born rats, is unaffected by the presence or absence of CaCl2. In adults, however, the effect of ouabain, though present, is reduced in the absence of CaCl2.5. It is suggested that in glands from adult animals, the hormones must be freed from their attachment on the protein-carrier, neurophysin and that this can be achieved by the entry of calcium ion into the cell. The subsequent secretion of the `freed' hormones appears to be accompanied by a shift of ions across the cell membrane.6. In glands from neonates up to 3 weeks old, the absence of neurophysin, or its poor capacity for binding the hormones, explains the inability of calcium to operate in the same way as in the glands of adults. There is evidence suggesting that the secretion of the neurohypophysial hormones in the new-born animal consists mainly of their diffusion from the cells, without previous elution of the hormones as in adults.
机译:1.在洛克溶液中孵育的成年雌性,雌性,成年雌性和成年大鼠的垂体均释放催产素和加压素。在一定的孵育时间内释放的激素量与腺体的实际激素含量有关。2。在存在CaCl2且浓度至少为2·2 mM的情况下,增加孵育培养基中KCl的浓度可使成年垂体的两种激素释放增加,但不影响新陈代谢的腺体中激素的释放。出生的动物3。在培养液中加入哇巴因会明显增加成年和新生大鼠腺体中激素的释放。这伴随着K离子的挤出和Na离子的流入。哇巴因对激素释放和离子迁移的影响可以通过随后添加三磷酸腺苷来逆转。4。新生鼠腺中哇巴因产生的激素释放的增加不受CaCl2的存在的影响。然而,在成人中,如果没有CaCl2.5,哇巴因的作用虽然存在,但会降低。建议在成年动物的腺体中,必须使激素脱离其在蛋白质载体,神经物理学上的附着,并且可以通过钙离子进入细胞来实现。随后释放的“游离”激素似乎伴随着离子在细胞膜上的移动。6。在新生儿至三周大的腺体中,缺乏神经元或其结合激素的能力较弱,这解释了钙无法像成年人的腺体一样发挥作用。有证据表明,新生动物中神经垂体激素的分泌主要由它们从细胞中扩散而来,没有像成人那样早先洗脱出激素。

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