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营养供应与椎间盘代谢。

Nutrient supply and intervertebral disc metabolism.

作者信息

Grunhagen Thijs, Wilde Geoffrey, Soukane Dahbia Mokhbi, Shirazi-Adl Saeed A, Urban Jill P G

机构信息

University Laboratory of Physiology, Oxford University, Parks Road, Oxford OX1 3PT, United Kingdom.

出版信息

J Bone Joint Surg Am. 2006 Apr;88 Suppl 2:30-5. doi: 10.2106/JBJS.E.01290.

Abstract

The metabolic environment of disc cells is governed by the avascular nature of the tissue. Because cellular energy metabolism occurs mainly through glycolysis, the disc cells require glucose for survival and produce lactic acid at high rates. Oxygen is also necessary for cellular activity, although not for survival; its pathway of utilization is unclear. Because the tissues are avascular, disc cells depend on the blood supply at the margins of the discs for their nutrients. The nucleus and inner anulus of the disc are supplied by capillaries that arise in the vertebral bodies, penetrate the subchondral bone, and terminate at the bone-disc junction. Small molecules such as glucose and oxygen then reach the cells by diffusion under gradients established by the balance between the rate of transport through the tissue to the cells and the rate of cellular demand. Metabolites such as lactic acid are removed by the reverse pathway. The concentrations of nutrients farthest from the source of supply can thus be low; oxygen concentrations as low as 1% have been measured in the discs of healthy animals. Although gradients cannot be measured easily in humans, they can be calculated. Measured concentrations in surgical patients are in agreement with calculated values.

摘要

椎间盘细胞的代谢环境受该组织无血管特性的支配。由于细胞能量代谢主要通过糖酵解进行,椎间盘细胞需要葡萄糖来维持生存,并大量产生乳酸。氧气对于细胞活动也是必需的,尽管并非细胞生存所必需;其利用途径尚不清楚。由于组织无血管,椎间盘细胞依靠椎间盘边缘的血液供应来获取营养。椎间盘的髓核和内环由起源于椎体、穿透软骨下骨并终止于骨 - 椎间盘交界处的毛细血管供应。然后,诸如葡萄糖和氧气之类的小分子在由通过组织向细胞的运输速率与细胞需求速率之间的平衡所建立的梯度下通过扩散到达细胞。诸如乳酸之类的代谢产物通过相反的途径被清除。因此,距离供应源最远的营养物质浓度可能较低;在健康动物的椎间盘中已测得氧气浓度低至1%。尽管在人类中不容易测量梯度,但可以进行计算。手术患者的测量浓度与计算值相符。

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