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首页> 外文期刊>Seminars in dialysis >Does Uremia Protect against the Demyelination Associated with Correction of Hyponatremia during Hemodialysis? A Case Report and Literature Review.
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Does Uremia Protect against the Demyelination Associated with Correction of Hyponatremia during Hemodialysis? A Case Report and Literature Review.

机译:尿毒症在血液透析过程中是否能防止脱髓鞘与低钠血症的纠正相关?病例报告和文献复习。

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摘要

Rapid correction of chronic hyponatremia is known to cause demyelination syndromes, which are attributed to the rapid shift of water out of the brain. In uremic patients with hyponatremia, depending on the dialysate sodium concentration and delivered Kt/V, serum sodium levels may be rapidly corrected inadvertently during the hemodialysis (HD) session. It is not known whether uremic patients are as susceptible to the development of demyelination as patients with normal renal function. Since urea diffuses slowly across the blood-brain barrier, it can act as an effective osmole between plasma and the brain if levels are changed abruptly. During HD, blood urea levels drop suddenly and significantly and cerebral edema may develop (dialysis disequilibrium syndrome). This effect may counteract the fluid shift out of the brain during correction of hyponatremia. Therefore, theoretically, uremic patients may be less prone to develop demyelination. We present a patient with renal failure whose hyponatremia was corrected rapidly during HD to illustrate the potential problem. The patient tolerated rapid correction of hyponatremia without sustaining any neurologic damage. We performed a literature search looking for similar case reports and reviewed the scientific evidence behind the above hypothesis.
机译:众所周知,慢性低钠血症的快速纠正会引起脱髓鞘综合征,这是由于水分迅速从大脑中排出所致。在患有低钠血症的尿毒症患者中,根据透析液钠浓度和输送的Kt / V,在血液透析(HD)期间可能会无意中迅速校正血清钠水平。尚不知道尿毒症患者是否像肾功能正常的患者一样容易发生脱髓鞘。由于尿素缓慢扩散穿过血脑屏障,因此如果水平突然改变,它可以作为血浆和大脑之间的有效渗透压。在HD期间,血液尿素水平突然下降且显着下降,并可能发展为脑水肿(透析失衡综合征)。在纠正低钠血症期间,这种作用可能会抵消液体从大脑中流出。因此,从理论上讲,尿毒症患者可能较不容易发生脱髓鞘。我们介绍了一名肾衰竭患者,其低钠血症在高清期间得到了迅速纠正,以说明潜在的问题。该患者耐受低钠血症的快速矫正,而没有受到任何神经系统损害。我们进行了文献搜索,寻找类似的病例报告,并回顾了上述假设背后的科学证据。

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