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欧洲玉米螟滞育和非滞育幼虫的超微结构及血脑屏障比较

Comparative ultrastructure and blood-brain barrier in diapause and nondiapause larvae of the European corn borer Ostrinia nubilalis (Hübner).

作者信息

Houk E J, Beck S D

出版信息

Cell Tissue Res. 1975 Oct 27;162(4):499-510. doi: 10.1007/BF00209349.

Abstract

Ultrastructural examination of diapause and nondiapause larval brains of the European corn borer disclosed anatomical differences that may be related to the insect's "blood-barrier". The perineurial type I cells are quite closely appressed in the diapause brain, but thrown into extensive folds with large intercellular spaces in the nondiapause brain. The perineurial type II cells of diapause and nondiapause larvae are basically similar in general ultrastructure, and most likely form the basis for the "blood-brain barrier." Horseradish peroxidase penetration studies indicated that the outer margin of the perineurial type II cells constitute the limits of infiltration into the brain. An enzymatic component of the "blood-brain barrier" is postulated in this insect. The localization of ATPase in the perineurial type II cells indicates that energy-requiring regulatory mechanisms may be localized here. Metabolic studies with isolated brains, coupled with recent evidence from mammalian systems, suggest that glial cells may be of importance in an enzymatic "blood-brain barrier."

摘要

对欧洲玉米螟滞育和非滞育幼虫大脑的超微结构检查揭示了一些解剖学差异,这些差异可能与昆虫的“血脑屏障”有关。在滞育大脑中,I型围神经细胞紧密贴靠在一起,但在非滞育大脑中则形成广泛的褶皱,细胞间隙很大。滞育和非滞育幼虫的II型围神经细胞在一般超微结构上基本相似,很可能构成了“血脑屏障”的基础。辣根过氧化物酶渗透研究表明,II型围神经细胞的外缘构成了渗入大脑的界限。推测这种昆虫存在“血脑屏障”的一种酶成分。II型围神经细胞中ATP酶的定位表明,需要能量的调节机制可能定位于此处。对分离大脑的代谢研究,再加上来自哺乳动物系统的最新证据,表明神经胶质细胞可能在酶性“血脑屏障”中起重要作用。

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