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DNL 1.9:一种特异性检测所有小鼠B淋巴细胞系细胞的单克隆抗体。

DNL 1.9: a monoclonal antibody which specifically detects all murine B lineage cells.

作者信息

Dessner D S, Loken M R

出版信息

Eur J Immunol. 1981 Apr;11(4):282-5. doi: 10.1002/eji.1830110403.

Abstract

A rat anti-mouse monoclonal antibody, DNL 1.9, has been produced and shown to bind to all cells of the B lineage in mice. By quantitative immunofluorescence, DNL 1.9 binds to approximately 50% of spleen cells, 20-30% of lymph node cells, but no to thymocytes. In bone marrow and neonatal liver, 70-80% of the small cells and 10-20% of the large cells were identified by this antibody. Two-color immunofluorescence studies showed that all immunoglobulin-positive cells were also DNL 1.9-positive, while Thy-1.2-positive cells did not bind the monoclonal antibody. All pre-B cells in bone marrow , as identified by cytoplasmic IgM staining, were labeled by the DNL 1.9 antibody. A significant proportion of lymphocytes in the bone marrow which did not express cell surface immunoglobulin did bind DNL 1.9. Both direct and indirect plaque-forming cells were also shown to bind DNL 1.9 antibody. The antigen recognized by this monoclonal antibody was not immunoglobulin nor was the antigen present in normal mouse serum. All seven mouse strains tested showed similar patterns of antigen expression. These results show that all of the cells indentifiable as being of the B lineage were identified by this monoclonal antibody. It is possible that the cells which bind DNL 1.9 but do not express cell surface immunoglobulin may be very early precursors of B lymphocytes.

摘要

一种大鼠抗小鼠单克隆抗体DNL 1.9已被制备出来,并显示它能与小鼠B淋巴细胞系的所有细胞结合。通过定量免疫荧光分析,DNL 1.9能与大约50%的脾细胞、20%-30%的淋巴结细胞结合,但不与胸腺细胞结合。在骨髓和新生鼠肝脏中,该抗体识别出70%-80%的小细胞和10%-20%的大细胞。双色免疫荧光研究表明,所有免疫球蛋白阳性细胞也都是DNL 1.9阳性,而Thy-1.2阳性细胞不与该单克隆抗体结合。通过胞质IgM染色鉴定的骨髓中所有前B细胞都被DNL 1.9抗体标记。骨髓中相当一部分不表达细胞表面免疫球蛋白的淋巴细胞也能与DNL 1.9结合。直接和间接空斑形成细胞也显示能与DNL 1.9抗体结合。该单克隆抗体识别的抗原既不是免疫球蛋白,也不存在于正常小鼠血清中。所检测的所有七个小鼠品系都显示出相似的抗原表达模式。这些结果表明,所有可鉴定为B淋巴细胞系的细胞都能被这种单克隆抗体识别。那些能与DNL 1.9结合但不表达细胞表面免疫球蛋白的细胞可能是B淋巴细胞的非常早期的前体细胞。

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