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未成熟肾小管对缺氧具有耐受性。

Immature tubules are tolerant of oxygen deprivation.

作者信息

Gaudio K M, Thulin G, Siegel N J

机构信息

Department of Pediatrics, Yale University School of Medicine, New Haven, Connecticut 06520-8064, USA.

出版信息

Pediatr Nephrol. 1997 Dec;11(6):757-60. doi: 10.1007/s004670050384.

Abstract

The tolerance of immature tissues to injury has been noted over the past several decades. Traditional teaching relates this tolerance to energy derived from anaerobic glycolysis. This mini-review describes investigations of the hypothesis that the immature kidney is less susceptible to oxygen deprivation than the mature kidney. Utilizing proximal tubule suspensions from immature and mature rats, studies assessing ATP levels as an index of cellular energy and lactate dehydrogenase (LDH) release as a determinant of plasma membrane damage demonstrate the developing kidney is resistant to prolonged anoxia. ATP is maintained at twofold higher levels during anoxia in the immature tubule compared with the mature tubule. The contribution of anaerobic glycolysis to the tolerance of the immature renal tubules is investigated by two inhibitors of the glycolytic pathway, L-glucose and iodoacetate. Following 70%-90% inhibition of glycolysis, ATP is decreased to similar levels in immature and mature tubules. However, immature tubules remain resistant to anoxic damage with no significant change in LDH release. Therefore, enhanced glycolytic activity does not play a dominant role in the tolerance of the developing kidney to anoxia, and this tolerance is not primarily dependent on preservation of cellular ATP.

摘要

在过去几十年中,人们已经注意到未成熟组织对损伤的耐受性。传统理论认为这种耐受性与无氧糖酵解产生的能量有关。这篇综述描述了关于未成熟肾脏比成熟肾脏对缺氧更不敏感这一假说的研究。利用未成熟和成熟大鼠的近端肾小管悬浮液,通过评估ATP水平作为细胞能量指标以及乳酸脱氢酶(LDH)释放作为质膜损伤的决定因素的研究表明,发育中的肾脏对长时间缺氧具有抗性。与成熟肾小管相比,未成熟肾小管在缺氧期间ATP水平维持在高两倍的水平。通过糖酵解途径的两种抑制剂L-葡萄糖和碘乙酸来研究无氧糖酵解对未成熟肾小管耐受性的贡献。在糖酵解受到70%-90%抑制后,未成熟和成熟肾小管中的ATP水平下降到相似水平。然而,未成熟肾小管对缺氧损伤仍具有抗性,LDH释放没有显著变化。因此,增强的糖酵解活性在发育中的肾脏对缺氧的耐受性中不发挥主导作用,并且这种耐受性并不主要依赖于细胞ATP的维持。

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