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[大鼠小肠膜水解与转运系统的时空组织]

[Space-time organization of systems of membrane hydrolysis and transport in rat small intestine].

作者信息

Loginov G I

出版信息

Biull Eksp Biol Med. 1977 May;83(5):556-8.

PMID:884259
Abstract

Glucose transport by the concentration gradient with the incubation for 90 min in 0.2% glucose and soluble starch solutions was studied in Wistar rats in 5 segments of the small intestine by the "sac turned inside out" method. Serous fluid was completely replaced by a new portion of Ringer's solution every 15 or 30 min. Substrate load synchronized the enterocyte population and stabilized the transport systems. The changes of glucose absorption during the period of about an hour proved to differ in the 5 segments against the background of continuous and interrupted substrate load. These differences were due to the properties of the transported systems autocontrol and the reactivity level of the given enterocyte population. Areas with different reactivity were found to alternate along the intestine. Between the 8th and 16th hour (rats were sacrificed every 2 hours) starch glucose transport fell sharply in the proximal, and, to a lesser extent, in the middle segments. On the contrary, absorption between the 8th and the 12th hour was considerably intensified in the distal segments. The changes of the strach glucose transport during the period of about an hour along the intestine differed. The data obtained are discussed with consideration to the possible role of the undulating processes in the individual enterocyte population and in the small intestine as an integral system.

摘要

采用“肠襻外翻”法,在Wistar大鼠小肠的5个节段中,研究了在0.2%葡萄糖和可溶性淀粉溶液中孵育90分钟时,葡萄糖通过浓度梯度的转运情况。每15或30分钟用新的林格氏溶液完全替换一次浆液。底物负荷使肠上皮细胞群体同步化并稳定了转运系统。在持续和间断底物负荷的背景下,约一小时内葡萄糖吸收的变化在5个节段中被证明是不同的。这些差异是由于转运系统自身控制的特性和给定肠上皮细胞群体的反应水平所致。发现具有不同反应性的区域沿肠道交替出现。在第8至16小时(每2小时处死一只大鼠)期间,近端节段淀粉葡萄糖转运急剧下降,中间节段下降程度较小。相反,在第8至12小时期间,远端节段的吸收显著增强。约一小时内沿肠道的淀粉葡萄糖转运变化不同。结合波动过程在单个肠上皮细胞群体和作为一个整体系统的小肠中可能发挥的作用,对所获得的数据进行了讨论。

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