Heidemann Franziska, Schildt Anna, Schmid Katharina, Bruns Oliver T, Riecken Kristoffer, Jung Caroline, Ittrich Harald, Wicklein Daniel, Reimer Rudolph, Fehse Boris, Heeren Joerg, Lüers Georg, Schumacher Udo, Heine Markus
Department of Anatomy and Experimental Morphology, University Medical Center Hamburg- Eppendorf, Hamburg, Germany.
Institut für Klinische Pathologie, Medizinische Universität Wien, Wien, Austria.
PLoS One. 2014 Apr 3;9(4):e92327. doi: 10.1371/journal.pone.0092327. eCollection 2014.
Metastasis formation is the major reason for the extremely poor prognosis in small cell lung cancer (SCLC) patients. The molecular interaction partners regulating metastasis formation in SCLC are largely unidentified, however, from other tumor entities it is known that tumor cells use the adhesion molecules of the leukocyte adhesion cascade to attach to the endothelium at the site of the future metastasis. Using the human OH-1 SCLC line as a model, we found that these cells expressed E- and P-selectin binding sites, which could be in part attributed to the selectin binding carbohydrate motif sialyl Lewis A. In addition, protein backbones known to carry these glycotopes in other cell lines including PSGL-1, CD44 and CEA could be detected in in vitro and in vivo grown OH1 SCLC cells. By intravital microscopy of murine mesenterial vasculature we could capture SCLC cells while rolling along vessel walls demonstrating that SCLC cells mimic leukocyte rolling behavior in terms of selectin and selectin ligand interaction in vivo indicating that this mechanism might indeed be important for SCLC cells to seed distant metastases. Accordingly, formation of spontaneous distant metastases was reduced by 50% when OH-1 cells were xenografted into E-/P-selectin-deficient mice compared with wild type mice (p = 0.0181). However, as metastasis formation was not completely abrogated in selectin deficient mice, we concluded that this adhesion cascade is redundant and that other molecules of this cascade mediate metastasis formation as well. Using several of these adhesion molecules as interaction partners presumably make SCLC cells so highly metastatic.
转移的形成是小细胞肺癌(SCLC)患者预后极差的主要原因。然而,在SCLC中调节转移形成的分子相互作用伙伴在很大程度上尚未明确,从其他肿瘤实体中已知肿瘤细胞利用白细胞黏附级联反应的黏附分子在未来转移部位附着于内皮细胞。以人OH-1 SCLC细胞系为模型,我们发现这些细胞表达E-和P-选择素结合位点,这部分可归因于选择素结合碳水化合物基序唾液酸化路易斯A。此外,在体外和体内生长的OH1 SCLC细胞中可检测到在其他细胞系中已知携带这些糖基表位的蛋白质骨架,包括PSGL-1、CD44和CEA。通过对小鼠肠系膜血管的活体显微镜观察,我们可以捕捉到SCLC细胞沿血管壁滚动,这表明SCLC细胞在体内选择素和选择素配体相互作用方面模仿白细胞滚动行为,表明这种机制可能确实对SCLC细胞播散远处转移很重要。因此,与野生型小鼠相比,当将OH-1细胞异种移植到E-/P-选择素缺陷小鼠中时,自发远处转移的形成减少了50%(p = 0.0181)。然而,由于在选择素缺陷小鼠中转移形成并未完全消除,我们得出结论,这种黏附级联是冗余的,并且该级联的其他分子也介导转移形成。使用这些黏附分子中的几种作为相互作用伙伴可能使SCLC细胞具有如此高的转移性。