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短期减少镁的饮食摄入量会导致脑内细胞内游离镁离子(Mg2+)和细胞内氢离子浓度([H+]i)降低,但不会像通过体内31P-核磁共振观察到的那样导致高能磷酸盐减少。

Short-term reduction in dietary intake of magnesium causes deficits in brain intracellular free Mg2+ and [H+]i but not high-energy phosphates as observed by in vivo 31P-NMR.

作者信息

Altura B M, Gebrewold A, Zhang A, Altura B T, Gupta R K

机构信息

Department of Physiology, State University of New York, Health Science Center at Brooklyn, 11203, USA.

出版信息

Biochim Biophys Acta. 1997 Aug 21;1358(1):1-5. doi: 10.1016/s0167-4889(97)00077-3.

Abstract

31P-NMR spectroscopic studies were performed in vivo on brains of rats fed 30-35% normal dietary Mg intake for 6 weeks. Within 2 weeks of the moderately restricted Mg diet serum Mg fell 50%, and brain intracellular free [Mg2+]i fell 15%; within 3 weeks of restricted diet, brain [Mg2+]i fell 40% and remained at this level for the additional 3 weeks. Intracellular pH (pH[i]) progressively rose in a reciprocal manner for 4 weeks. At no interval of time did brain phosphocreatine (PCr), [ATP], or inorganic phosphate change despite the fall in brain [Mg2+]i, brain pH(i) and serum Mg. The Mg-deficiency-induced cytosolic loss of protons (resulting in an alkaline cytosol) could be a compensatory mechanism to stabilize [PCr], [ATP] and [ADP] levels via creatine kinase, thus maintaining cytosolic phosphorylation potential. The rise in pH(i) associated with Mg-deficiency would also account for increased cerebral vascular muscle contractility under these conditions. Lastly, these studies indicate that brain [Mg2+]i may change without a concomitant change in cell [ATP], and that brain [Mg2+]i may be a useful marker for total body Mg2+ status.

摘要

对摄入正常饮食镁摄入量30 - 35%达6周的大鼠大脑进行了体内31P - NMR光谱研究。在适度限制镁饮食的2周内,血清镁下降50%,脑内细胞内游离[Mg2+]i下降15%;在限制饮食3周内,脑内[Mg2+]i下降40%,并在接下来的3周内维持在这一水平。细胞内pH值(pH[i])以相反的方式逐渐上升了4周。尽管脑内[Mg2+]i、脑pH(i)和血清镁下降,但在任何时间段脑磷酸肌酸(PCr)、[ATP]或无机磷酸盐均未发生变化。镁缺乏诱导的质子从细胞质中丢失(导致细胞质呈碱性)可能是一种通过肌酸激酶稳定[PCr]、[ATP]和[ADP]水平的补偿机制,从而维持细胞质磷酸化电位。在这些条件下,与镁缺乏相关的pH(i)升高也可解释脑血管平滑肌收缩性增加。最后,这些研究表明脑内[Mg2+]i可能在细胞[ATP]未伴随变化的情况下发生改变,并且脑内[Mg2+]i可能是全身Mg2+状态的一个有用标志物。

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