Hurst Robert E, Kyker Kimberly D, Bonner Rebecca B, Bowditch Ron D, Hemstreet George P
Departments of Urology, Biochemistry and Molecular Biology, Physiology (REH), University of Oklahoma Health Sciences Center, 140 BMSB, 940 S.L. Young Blvd, Oklahoma City, OK 73104, USA.
Anticancer Res. 2003 Jul-Aug;23(4):3119-28.
The purpose of this study was to investigate the effect of cancer- and normal basement membrane-derived extracellular matrix to modulate the phenotype of bladder cancer cell lines. Five lines, varying in malignancy from papilloma to highly undifferentiated and invasive and immortalized human urothelial cells, were grown on two extracellular matrix preparations, Matrigel and SISgel. Matrigel represents matrix remodeled by malignancy while SISgel, obtained from small intestine submucosa (SIS), represents the normal matrix supporting differentiated cell growth. On Matrigel, regardless of the content of growth factors, the invasive lines displayed an invasive phenotype, while the low grade lines grew as papillary structures. In contrast, when the same cells were grown on SISgel, they grew as a layer of cells one to 5 cells thick, failed to invade, and expressed cell-surface E-cadherin. Unlike breast cancer cells, neutralization of beta 1, beta 4 and alpha 6 integrins altered cell-cell and cell-matrix adhesiveness but did not alter the phenotype. When invasive cells were grown on mixtures of SISgel and Matrigel, the phenotype changed gradually, not abruptly, indicating that factors within the gel reversibly alter the phenotypic expression of invasion. In summary, the phenotype of bladder cancer cells growing in tissue-like 3-dimensional culture is highly plastic, and malignant properties such as invasion and papillary growth can be suppressed by the matrix.
本研究的目的是调查源自癌症和正常基底膜的细胞外基质对膀胱癌细胞系表型的调节作用。五种细胞系,恶性程度从乳头状瘤到高度未分化、侵袭性以及永生化的人尿路上皮细胞不等,在两种细胞外基质制剂Matrigel和SISgel上生长。Matrigel代表由恶性肿瘤重塑的基质,而从小肠黏膜下层(SIS)获得的SISgel代表支持分化细胞生长的正常基质。在Matrigel上,无论生长因子的含量如何,侵袭性细胞系均表现出侵袭性表型,而低级别细胞系则呈乳头状结构生长。相比之下,当相同的细胞在SISgel上生长时,它们生长为一层1至5个细胞厚的细胞层,无法侵袭,并表达细胞表面E-钙黏蛋白。与乳腺癌细胞不同,β1、β4和α6整合素的中和改变了细胞间和细胞与基质的黏附性,但没有改变表型。当侵袭性细胞在SISgel和Matrigel的混合物上生长时,表型逐渐改变,而非突然改变,这表明凝胶中的因子可逆地改变侵袭的表型表达。总之,在组织样三维培养中生长的膀胱癌细胞的表型具有高度可塑性,侵袭和乳头状生长等恶性特性可被基质抑制。