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ENU诱导的大鼠脑肿瘤早期阶段的形态学

Morphology of early stages of ENU-induced brain tumors in rats.

作者信息

Mennel H D, Simon H

出版信息

Exp Pathol. 1985;28(4):207-14. doi: 10.1016/s0232-1513(85)80010-4.

Abstract

Tumors were induced in experimental animals in order to investigate early tumor growth with conventional histology and gliofibrillary acid protein (GFAP) demonstration with the peroxidase-antiperoxidase (PAP) method. In one experiment, the animals were killed after transplacental ENU administration, when microtumors were suspected; in the second experiment, the animals were followed up to their natural death and microtumors found at random were used for analysis. Conventional histology revealed 3 types of microtumors: growth restricted to the subventricular matrix, growth in the neighbourhood of the ventricles with obvious or probable connection to the ventricular zones and small tumors observed exclusively in the white matter. The latter tumors by conventional staining were composed of small round cells, considered to be oligodendrocytes. They did not contain GFA-protein positive cells within the tumor. The tumor in presumable and visible connection with the ventricular lining did contain GFAP-positive astrocytes. In the very small subventricular tumors, the small round cells (oligodendrocytes) were in continuous contact with the identical interfascicular glial cells, while GFAP positive astrocytes seemed to stem from the subventricular astrocytes (tanycytes, ependymoglia). The ependyma itself was always preserved. A twofold origin of these experimental tumors with probable development into one common cytological glial type is assumed.

摘要

为了用传统组织学方法研究早期肿瘤生长,并通过过氧化物酶-抗过氧化物酶(PAP)法检测胶质纤维酸性蛋白(GFAP),在实验动物中诱发肿瘤。在一个实验中,在经胎盘给予ENU后怀疑有微肿瘤时处死动物;在第二个实验中,对动物进行随访直至其自然死亡,并对随机发现的微肿瘤进行分析。传统组织学显示有3种类型的微肿瘤:生长局限于脑室下基质,在脑室附近生长且与脑室区域有明显或可能的联系,以及仅在白质中观察到的小肿瘤。通过传统染色,后一种肿瘤由小圆形细胞组成,被认为是少突胶质细胞。肿瘤内不含GFAP蛋白阳性细胞。与脑室衬里有推测性和可见联系的肿瘤确实含有GFAP阳性星形胶质细胞。在非常小的脑室下肿瘤中,小圆形细胞(少突胶质细胞)与相同的束间神经胶质细胞持续接触,而GFAP阳性星形胶质细胞似乎起源于脑室下星形胶质细胞(伸展细胞、室管膜胶质)。室管膜本身总是保留着。推测这些实验性肿瘤有双重起源,并可能发展为一种共同的细胞学胶质类型。

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