Jang A, Hill R P
Ontario Cancer Institute, and Department of Medical Biophysics, University of Toronto, Canada.
Clin Exp Metastasis. 1997 Sep;15(5):469-83. doi: 10.1023/a:1018470709523.
Tumor cells exposed to a growth stress such as low pH, glucose starvation and hypoxia have been shown to exhibit a transient increase in experimental metastatic potential, particularly when allowed to recover under normal growth conditions for a period of 24-48 h. In this study we examined whether this increase in metastatic ability could be explained by changes in the expression of a number of different metastasis-associated genes, when the cells were exposed to similar conditions (24-48 h exposure to the stress condition followed by 0-48 h recovery under normal growth conditions). Although the cell lines used (KHT fibrosarcoma, SCC VII squamous cell carcinoma, and B16F1 melanoma) demonstrated altered metastatic ability after the treatment, no overall temporal correlation between changes in the mRNA levels for cathepsin B, cathepsin L, nm23, TIMP-1, osteopontin, or VEGF and metastatic ability in the three cell lines was observed. The production of gelatinase A (72 kDa collagenase) and gelatinase B (92 kDa collagenase) was also measured by gelatin zymography. There was an increase in production of these enzymes with increasing recovery time, but it did not parallel changes in metastatic potential. Although these results suggest that the products of most of the genes studied may not be involved in the transient metastatic changes, further studies are required to establish whether changes in protein levels track with changes in mRNA levels for these genes.
已证明,暴露于低pH值、葡萄糖饥饿和缺氧等生长应激下的肿瘤细胞,其实验转移潜能会出现短暂增加,尤其是当它们在正常生长条件下恢复24 - 48小时时。在本研究中,我们检测了在细胞暴露于相似条件下(暴露于应激条件24 - 48小时,随后在正常生长条件下恢复0 - 48小时),这种转移能力的增加是否可以用多种不同的转移相关基因表达变化来解释。尽管所使用的细胞系(KHT纤维肉瘤、SCC VII鳞状细胞癌和B16F1黑色素瘤)在处理后显示出转移能力改变,但在三种细胞系中,组织蛋白酶B、组织蛋白酶L、nm23、TIMP - 1、骨桥蛋白或VEGF的mRNA水平变化与转移能力之间未观察到总体时间相关性。还通过明胶酶谱法测定了明胶酶A(72 kDa胶原酶)和明胶酶B(92 kDa胶原酶)的产生。随着恢复时间的增加,这些酶的产生有所增加,但这与转移潜能的变化并不平行。尽管这些结果表明所研究的大多数基因产物可能不参与短暂的转移变化,但仍需要进一步研究来确定这些基因的蛋白质水平变化是否与mRNA水平变化一致。