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关于缺氧和低氧血症对幼兔神经上皮小体影响的交叉循环研究。

Cross-circulation studies on the influence of hypoxia and hypoxaemia on neuro-epithelial bodies in young rabbits.

作者信息

Lauweryns J M, Cokelaere M, Lerut T, Theunynck P

出版信息

Cell Tissue Res. 1978 Oct 30;193(3):373-86. doi: 10.1007/BF00225336.

Abstract

The reactions of the previously described neuro-epithelial bodies (NEB)(Lauweryns et al., 1969, 1970, 1972a, b, 1973a, b, c 1974, 1975) in young rabbits to: (1) hypoxia with normoxaemia in the arteria pulmonalis on the one hand, and (2) hypoxaemia in the arteria pulmonalis with normoxic aeration on the other hand, has been investigated by means of cross-circulation experiments and light microscopical, electron microscopical and morphometrical techniques. Hypoxically aerated young rabbits, which received normoxaemic blood in their arteria pulmonalis from a donor rabbit by means of an arterio-arterial cross-circulation with mutal exchange transfusion, revealed an increased exocytosis of the dense-core vesicles of their NEB. Normoxically aerated young rabbits which received hypoxaemic blood in an identical manner, did not exhibit an increased exocytosis. It is concluded that the NEB apparently react directly to the hypoxia of the inhaled air and not to the hypoxaemia of the pulmonary blood. By the release of serotonin and a polypeptide substance, they may produce a local vasoconstriction in hypoxically aerated lung areas, enabling an intrapulmonary regulation of the V/Q ratio. This is regarded as additional proof that the NEB--while being modulated by the CNS--probably are intrapulmonary chemoreceptors with local secretory activities, reacting to the composition of the inhaled air.

摘要

先前描述的幼兔神经上皮小体(NEB)(Lauweryns等人,1969年、1970年、1972a、b、1973a、b、c、1974年、1975年)对以下情况的反应:(1)一方面是肺动脉血氧正常时的低氧,以及(2)另一方面是肺动脉低氧血症伴正常氧通气,已通过交叉循环实验以及光学显微镜、电子显微镜和形态计量学技术进行了研究。通过动脉-动脉交叉循环和相互交换输血,从供体兔的肺动脉向低氧通气的幼兔输入血氧正常的血液,结果显示其NEB的致密核心囊泡胞吐作用增强。以相同方式接受低氧血症血液的正常氧通气幼兔,未表现出胞吐作用增强。得出的结论是,NEB显然直接对吸入空气的低氧作出反应,而不是对肺血的低氧血症作出反应。通过释放5-羟色胺和一种多肽物质,它们可能在低氧通气的肺区域产生局部血管收缩,从而实现肺内V/Q比值的调节。这被视为额外的证据,证明NEB虽然受中枢神经系统调节,但可能是具有局部分泌活动的肺内化学感受器,并对吸入空气的成分作出反应。

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