Edvardsen K, Bock E, Jirus S, Frandsen T L, Holst-Hansen C, Moser C, Spang-Thomsen M, Pedersen N, Walsh F S, Vindeløv L L, Brünner N
Research Center for Medical Biotechnology, University of Copenhagen, Panum Institute, Denmark.
APMIS. 1997 Dec;105(12):919-30. doi: 10.1111/j.1699-0463.1997.tb05103.x.
A cDNA encoding the human transmembrane 140 kDa isoform of the neural cell adhesion molecule (NCAM) was transfected into the highly invasive MDA-MB-231 human breast cancer cell line. Transfectants with a homogeneous expression of NCAM showed a restricted capacity for penetration of an artificial basement membrane. However, when injected into nude mice, both control and NCAM-expressing cell lines produced equally invasive tumors. Tumors generated from NCAM-transfected cells were heterogeneous, containing NCAM-positive as well as NCAM-negative areas, indicating the existence of host factors capable of modulating NCAM expression in vivo. In nude mice, NCAM-transfected cells developed tumors with longer latency periods and slower growth rates than tumors induced by NCAM-negative control cells, implying that NCAM may be involved not only in adhesive and motile behavior of tumor cells but also in their growth regulation. There was no indication of differences in cell proliferative characteristics between the different NCAM-transfected and the control transfected cells as determined by flow cytometric DNA analysis, suggesting an increased cell loss as the reason for decreased in vivo growth rate of the NCAM-transfected cells. The fact that NCAM expression influences growth regulation attributes a pivotal role to this cell adhesion molecule during ontogenesis and tumor development.
将编码人神经细胞黏附分子(NCAM)140 kDa跨膜异构体的cDNA转染到高侵袭性的MDA-MB-231人乳腺癌细胞系中。NCAM表达均匀的转染子穿透人工基底膜的能力受限。然而,当注射到裸鼠体内时,对照细胞系和表达NCAM的细胞系产生的肿瘤侵袭性相同。由NCAM转染细胞产生的肿瘤具有异质性,包含NCAM阳性和NCAM阴性区域,表明存在能够在体内调节NCAM表达的宿主因子。在裸鼠中,与NCAM阴性对照细胞诱导的肿瘤相比,NCAM转染细胞形成的肿瘤潜伏期更长,生长速度更慢,这意味着NCAM可能不仅参与肿瘤细胞的黏附与运动行为,还参与其生长调节。通过流式细胞术DNA分析确定,不同的NCAM转染细胞与对照转染细胞之间在细胞增殖特性上没有差异,这表明细胞损失增加是NCAM转染细胞体内生长速度降低的原因。NCAM表达影响生长调节这一事实表明,这种细胞黏附分子在个体发育和肿瘤发生过程中起着关键作用。