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大鼠和人周围神经中凝集素结合的比较。

A comparison of lectin binding in rat and human peripheral nerve.

作者信息

Gulati A K, Zalewski A A, Sharma K B, Ogrowsky D, Sohal G S

出版信息

J Histochem Cytochem. 1986 Nov;34(11):1487-93. doi: 10.1177/34.11.3772078.

Abstract

Eleven different fluorescein- or peroxidase-conjugated lectins with different sugar-binding affinities were employed to analyze and compare glycoconjugates of rat and human peripheral nerves at the light microscopic level. A majority of lectins showed a distinct binding pattern in different structures of the nerve. Lectin binding was similar but not identical in rat and human nerves. Limulus polyhemus agglutinin did not stain any structures in rat or human nerves. In both species, all other lectins bound to the perineurium. Perineurial staining was intense with Canavalia ensiformis (Con A), Triticum vulgaris (WGA), Maclura pomifera (MPA); moderate with Glycine max (SBA), Griffonia simplicifolia-I (GS-I) and GS-II; weak with Ulex europaeus (UEA), Dolichos biflorus (DBA), and Ricinus communis (RCA). In the endoneurium of both species, ConA staining was intense, MPA and WGA moderate, SBA, GS-II, PNA, and RCA weak, and UEA and DBA absent. Interestingly, GS-I stained rat but not human endoneurium. Most lectins bound to blood vessels. GS-I bound to rat but not human, whereas UEA bound to human but not rat vessels. The results show that lectins can be used to reveal heterogeneity in sugar residues of glycoconjugates within neural and vascular components of nerves. They may therefore be potentially useful in detecting changes in glycoconjugates during nerve degeneration and subsequent regeneration after trauma or in pathological states.

摘要

使用11种具有不同糖结合亲和力的荧光素或过氧化物酶偶联凝集素,在光学显微镜水平分析和比较大鼠和人类外周神经的糖缀合物。大多数凝集素在神经的不同结构中呈现出独特的结合模式。大鼠和人类神经中的凝集素结合相似但不完全相同。鲎试剂凝集素未对大鼠或人类神经中的任何结构染色。在这两个物种中,所有其他凝集素均与神经束膜结合。刀豆球蛋白A(Con A)、小麦胚芽凝集素(WGA)、桑科植物凝集素(MPA)对神经束膜的染色强烈;大豆凝集素(SBA)、非洲相思子凝集素-I(GS-I)和GS-II染色中等;荆豆凝集素(UEA)、双花扁豆凝集素(DBA)和蓖麻凝集素(RCA)染色较弱。在这两个物种的神经内膜中,ConA染色强烈,MPA和WGA染色中等,SBA、GS-II、花生凝集素(PNA)和RCA染色较弱,UEA和DBA无染色。有趣的是,GS-I对大鼠神经内膜染色而对人类神经内膜不染色。大多数凝集素与血管结合。GS-I与大鼠血管结合而不与人类血管结合,而UEA与人类血管结合而不与大鼠血管结合。结果表明,凝集素可用于揭示神经和血管成分中糖缀合物糖残基的异质性。因此,它们可能在检测创伤后神经变性及随后再生过程中或病理状态下糖缀合物的变化方面具有潜在用途。

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