利用凝集素和内切-半乳糖苷酶消化技术对人甲状腺肿瘤中不同类型的聚n -乙酰乳胺结构进行组织化学论证。

The Histochemical Journal Pub Date : 1995-08-01
N Ito, M Yokota, S Kawahara, C Nagaike, Y Morimura, T Hirota, T Matsunaga
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引用次数: 0

摘要

在人甲状腺乳头状癌和其他类型的肿瘤中表达的血型相关抗原已被证明由含有易被内切-半乳糖苷酶消化的线性结构域的聚n -乙酰乳胺携带。为了更准确地明确主链聚N-乙酰乳胺结构,我们将标记凝集素用于这些结构的不同类型,以及针对N-和o-连接糖蛋白的β 1-6GlcNAc分支的核心结构,并结合先前的内切- β -半乳糖苷酶切,用于人甲状腺的福尔马林固定石蜡包埋肿瘤。在乳头状癌中,曼陀罗凝集素(DSA)和琥珀酰小麦胚芽凝集素(su - wga)与所有被检查个体的乳头状癌反应最为一致和频繁。美洲商陆丝裂原(PWM)同样染色了所有被检查个体的乳头状癌细胞,但在某些个体中,凝集素反应细胞的数量非常少。番茄凝集素(LEA)、龙葵凝集素(STA)、绿豆凝集素L (PHA-L)和石竹凝集素(jacalin)与大多数个体的癌细胞结合相似,在这些情况下,反应细胞的数量通常比DSA或PWM的情况受到更多的限制。在腺瘤和其他类型的癌(如滤泡癌)中,这些聚n -乙酰乳胺特异性凝集素与细胞表现出轻微或无反应性,而PHA-L和jacalin则与大多数被检查个体的腺瘤和癌细胞相似地结合。在乳头状癌中,先用内切-半乳糖苷酶消化完全消除或显著降低与PWM和LEA的反应性。与DSA, su - wga, STA, PHA-L和jacalin的反应性略有降低或完全不受酶切的影响。这些结果证实了乳头状癌中发现的聚n -乙酰乳胺与其他类型甲状腺肿瘤中发现的聚n -乙酰乳胺种类有很大的不同,表明在这些细胞中至少产生三种不同类型的聚n -乙酰乳胺,即线性无支链的短序列和长序列以及高度支链的序列。
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Histochemical demonstration of different types of poly-N-acetyllactosamine structures in human thyroid neoplasms using lectins and endo-beta-galactosidase digestion.

Blood-group-related antigens expressed in papillary carcinomas and other types of neoplasm of the human thyroid glands have been shown to be carried by poly-N-acetyllactosamines containing a linear domain susceptible to endo-beta-galactosidase digestion. To make clear more precisely the backbone poly-N-acetyllactosamine structures, labelled lectins specific to different types of these structures and specific to core structures with beta 1-6GlcNAc branching of N- and O-linked glycoproteins were employed in conjunction with prior endo-beta-galactosidase digestion on formalin-fixed, paraffin-embedded neoplasms of the human thyroid glands. In papillary carcinomas, Datura stramonium agglutinin (DSA) and succinyl wheat germ agglutinin (Suc-WGA) reacted most consistently and frequently with papillary carcinomas from all the individuals examined. Pokeweed mitogen (PWM) likewise stained the cells of papillary carcinomas from all the individuals examined, but in some individuals the number of lectin-reactive cells were very small. Lycoperscion esculentum aggultinin (LEA), Solanum tuberosum agglutinin (STA), Phaseolus vulgaris agglutinin L (PHA-L) and Artocarpus integrifolia agglutinin (jacalin) similarly bound to the cancer cells from most of the individuals, and in these cases the number of reactive cells was usually much more restricted than was the case with DSA or PWM. In adenoma and other types of carcinoma, such as follicular carcinomas, these lectins specific to poly-N-acetyllactosamine exhibited slight or no reactivity with the cells, whereas PHA-L and jacalin similarly bound to the cells of adenomas and carcinomas from most of the individuals examined. Prior digestion with endo-beta-galactosidase completely eliminated or markedly reduced the reactivity with PWM and LEA in papillary carcinomas. Reactivity with DSA, Suc-WGA, STA, PHA-L and jacalin was slightly reduced or not at all affected by enzyme digestion. These results confirmed that poly-N-acetyllactosamine species found in papillary carcinomas are quite different from those in other types of thyroid neoplasm, suggesting that at least three different types of poly-N-acetyllactosamine, that is, linear unbranched short and long sequences and highly branched ones are produced in these cells.

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