Trojan J, Boutry J M, Hauw J J, Lafarge-Frayssinet C, Deugnier M A, Hajeri-Germond M, Abramsky O, Uriel J
Laboratoire de Chimie des Proteines, CNRS, Villejuif, France.
Dev Neurosci. 1992;14(4):296-307. doi: 10.1159/000111675.
alpha-Fetoprotein (AFP) and AFP-gene transcripts were demonstrated in vitro in Schwann (S) cell and fibroblast (F) cell cultures of neonatal mouse origin. All S and F cells of primary cultures and of established cell lines expressed the AFP gene. AFP mRNA was detected by an in situ hybridization technique using a 35S-AFP-cDNA probe. AFP was localized by immunocytoperoxidase labelling using purified anti-AFP antibodies. The amounts of stained endogenous AFP, estimated semiquantitatively, were about 3-fold higher in S cells than in F cells. After incubating the cultures with exogenous mouse AFP, both S and F cells showed significant ability to take up the protein; the amount of internalized protein was found to be higher in F cells than in S cells. Moreover, the uptake of AFP fluorescein conjugates (FITC-AFP), estimated quantitatively by fluorometry, also gave higher values for F cells. The cytoplasm of F cells exhibited a characteristic fluorescence pattern, strongly illuminated and dispersed grains; the cytoplasm of S cells was regularly labelled. If exogenous FITC-AFP uptake could be used to distinguish labelled F cells from S cells (with application for identification and selection of F cells), the immunocytochemically stained endogenous AFP could allow S cells to be distinguished from F cells (using the dilutions of antibodies still staining the S cells but which lead to the absence of F-cell labelling). The two procedures, which can be used independently or together, may constitute differential markers for S cell and F cultures in, i.e., nerve regeneration of neurofibroma studies using the model of mixed S and F culture also containing other types of cells.
在源自新生小鼠的雪旺氏(S)细胞和成纤维细胞(F)细胞培养物中,体外证实了甲胎蛋白(AFP)和AFP基因转录本。原代培养物和已建立细胞系的所有S细胞和F细胞均表达AFP基因。使用35S-AFP-cDNA探针通过原位杂交技术检测AFP mRNA。使用纯化的抗AFP抗体通过免疫细胞过氧化物酶标记对AFP进行定位。半定量估计,S细胞中染色的内源性AFP量比F细胞高约3倍。用外源性小鼠AFP孵育培养物后,S细胞和F细胞均显示出摄取该蛋白的显著能力;发现内化蛋白的量在F细胞中比在S细胞中更高。此外,通过荧光测定法定量估计的AFP荧光素缀合物(FITC-AFP)的摄取,F细胞的值也更高。F细胞的细胞质呈现出特征性的荧光模式,有强烈照亮和分散的颗粒;S细胞的细胞质被均匀标记。如果外源性FITC-AFP摄取可用于区分标记的F细胞和S细胞(用于F细胞的鉴定和选择),那么免疫细胞化学染色的内源性AFP可用于区分S细胞和F细胞(使用仍能染色S细胞但导致F细胞无标记的抗体稀释液)。这两种方法可单独或一起使用,可能构成S细胞和F细胞培养物的鉴别标志物,例如,在使用还包含其他类型细胞的S和F混合培养模型的神经纤维瘤神经再生研究中。