Knüchel R, Feichtinger J, Recktenwald A, Hollweg H G, Franke P, Jakse G, Rammal E, Hofstädter F
Department of Pathology, RWTH Aachen, Federal Republic of Germany.
J Urol. 1988 Mar;139(3):640-5. doi: 10.1016/s0022-5347(17)42550-x.
Multicellular tumor spheroids (MCTS) are a reliable model of nonvascularized tumor cell aggregates showing a well defined three-dimensional growth pattern and are comparable with small metastatic cancer cell complexes in blood circulation. In the present study we have established a co-culture system of multicellular bladder tumor spheroids with human endothelial cells on extracellular matrix (ECM) in order to investigate morphological and proliferative changes of endothelial and tumor cells within a defined time of cell-cell interaction. The MCTS--endothelial cell--extracellular matrix complex was observed within coculture periods from 1/2 to seven days. Morphological changes (light microscopy, scanning and electron microscopy) indicated that MCTS are not influenced by cocultured endothelial cells. The tumor cells invaded into the ECM after degradation of endothelial cells in the center of the contact zone. Endothelial cells, however, showed degenerative changes as well as a complex reaction in their proliferation activities. We could recognize an initial increase of proliferation of endothelial cells next to the MCTS. Later on, endothelial cells next to invading tumor cells showed changes in morphological polarity. The model system used has the advantage of using human tumor tissue. It distinguishes between basic cellular mechanisms like adherence, migration, DNA synthesis and proliferation in the study of the contact of tumor cells and vascular endothelial cells as an important event in hematogenous tumor spread.
多细胞肿瘤球体(MCTS)是无血管化肿瘤细胞聚集体的可靠模型,呈现出明确的三维生长模式,并且与血液循环中的小转移癌细胞复合体具有可比性。在本研究中,我们建立了多细胞膀胱肿瘤球体与人类内皮细胞在细胞外基质(ECM)上的共培养系统,以研究在特定细胞 - 细胞相互作用时间内内皮细胞和肿瘤细胞的形态和增殖变化。在共培养1/2至7天的时间段内观察到MCTS - 内皮细胞 - 细胞外基质复合体。形态学变化(光学显微镜、扫描和电子显微镜观察)表明MCTS不受共培养内皮细胞的影响。在接触区中心的内皮细胞降解后,肿瘤细胞侵入ECM。然而,内皮细胞显示出退行性变化以及其增殖活动中的复杂反应。我们可以识别出MCTS旁边内皮细胞增殖的初始增加。后来,侵入肿瘤细胞旁边的内皮细胞显示出形态极性的变化。所使用的模型系统具有使用人类肿瘤组织的优势。在研究肿瘤细胞与血管内皮细胞的接触作为血行性肿瘤扩散中的一个重要事件时,它区分了诸如黏附、迁移、DNA合成和增殖等基本细胞机制。