首页> 外文期刊>Obstetrics and Gynecology: Journal of the American College of Obstetricians and Gynecologists >Brain ionized magnesium and calcium levels during magnesium supplementation and deficiency in female Long-Evans rats.
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Brain ionized magnesium and calcium levels during magnesium supplementation and deficiency in female Long-Evans rats.

机译:雌性Long-Evans大鼠补充镁和缺乏镁时脑中的镁离子和钙离子水平。

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OBJECTIVE: To examine the effect of changes in the state of magnesium balance on ionized magnesium and ionized calcium in serum and brain tissue of female rats. METHODS: Forty-two mature rats were used in the study. To induce hypermagnesemia, 12 rats received 270 mg/kg of magnesium sulfate intraperitoneally, followed every 20 minutes for 2 hours with 27 mg/kg magnesium sulfate. Ten control rats received an equal volume of saline. To induce hypomagnesemia, ten rats were placed on a magnesium-deficient diet for 4 (n = 5) or 8 (n = 5) days. Ten control rats were placed on basal diets of equal duration. Following treatment, rats were euthanized and serum and brain tissue were analyzed for ionized magnesium and calcium content. RESULTS: Hypermagnesemia produced a significant increase in serum ionized magnesium (P < .05) and calcium (P < .05). In addition, brain levels of ionized magnesium were significantly increased (P < .05), whereas calcium levels significantly decreased (P < .05) particularly in the hippocampus, parietal cortex, and cerebellum. Hypomagnesemia induced by 4 days on a magnesium-deficient diet led to decreased serum ionized magnesium (P < .01) and total magnesium (P < .05) but did not affect brain magnesium levels. Brain levels remained unaltered even after 8 days of hypomagnesemia. Serum and brain ionized calcium were not affected during peripheral magnesium deficiency. CONCLUSION: During peripheral magnesium deficiency, brain levels of ionized magnesium and ionized calcium are tightly regulated and appear unaffected. However, central levels of these electrolytes are altered under hypermagnesemic conditions. Thus, magnesium administration may change biologically active portions of magnesium and calcium in the brain.
机译:目的:探讨镁平衡状态的变化对雌性大鼠血清和脑组织中离子镁和离子钙的影响。方法:42只成年大鼠用于研究。为诱发高镁血症,有12只大鼠腹膜内接受270 mg / kg硫酸镁,然后每20分钟给予27 mg / kg硫酸镁2小时。十只对照大鼠接受等体积的盐水。为了诱发低镁血症,将十只大鼠缺镁饮食放置4(n = 5)或8(n = 5)天。将十只对照大鼠置于等长的基础饮食中。治疗后,对大鼠实施安乐死,并分析血清和脑组织中镁和钙的离子含量。结果:高镁血症使血清中的离子化镁(P <.05)和钙(P <.05)显着增加。此外,尤其是在海马,顶叶皮层和小脑中,大脑中离子化镁的水平显着增加(P <.05),而钙水平显着降低(P <.05)。缺镁饮食中的4天引起的低镁血症导致血清离子化镁(P <.01)和总镁(P <.05)降低,但不影响脑部镁水平。低镁血症8天后,大脑水平仍保持不变。外周血镁缺乏期间,血清和脑离子钙不受影响。结论:在周围镁缺乏期间,脑中离子化镁和离子化钙的水平受到严格调节,并且似乎不受影响。但是,这些电解质的中心含量在高镁条件下会发生变化。因此,镁的施用可以改变大脑中镁和钙的生物活性部分。

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