Middleton C A, Brown A F, Brown R M, Karavanova I D, Roberts D J, Vasiliev J M
Department of Anatomy, University of Leeds, UK.
J Cell Sci. 1989 Sep;94 ( Pt 1):25-32. doi: 10.1242/jcs.94.1.25.
Fibroblasts in culture apparently require an intact system of microtubules in order to adopt and maintain a polarized morphology. In contrast, the polarization of a number of epithelial cell types has been shown to be microtubule-independent. Reconciliation of these apparently contradictory data is difficult, however, because the epithelial cells were studied in short-term primary cultures while the fibroblasts were studied in secondary or longer-term cultures. To clarify the situation we have examined the effects of the microtubule-disrupting drugs, colcemid and nocodazole, on the polarization of a single cell type, the chick heart fibroblast (HF), maintained in both primary (1 degree) and secondary (2 degree) cultures. Immunofluorescence observations of both types of culture showed that in control medium the cells contained abundant microtubules, which were absent if the cells were cultured in medium containing either colcemid or nocodazole. The effects of microtubule-disrupting drugs on the polarization of the cells were quantified using two measures of cell shape, elongation and dispersion, both of which increase with increasing polarization. The results show that microtubule-disrupting drugs do not have a significant effect on the polarization of HF spreading in 1 degree culture but significantly reduce the polarization of HF spreading in 2 degree cultures. The effects of microtubule disruption on HF that had been maintained in 1 degree culture for 6 h, 24 h or 48 h were also quantified.(ABSTRACT TRUNCATED AT 250 WORDS)
培养中的成纤维细胞显然需要完整的微管系统才能形成并维持极化形态。相比之下,已证明许多上皮细胞类型的极化与微管无关。然而,调和这些明显矛盾的数据很困难,因为上皮细胞是在短期原代培养中研究的,而成纤维细胞是在传代或长期培养中研究的。为了阐明这种情况,我们研究了微管破坏药物秋水仙酰胺和诺考达唑对单一细胞类型——鸡心脏成纤维细胞(HF)在原代(1°)和传代(2°)培养中极化的影响。对两种类型培养物的免疫荧光观察表明,在对照培养基中,细胞含有丰富的微管,而如果细胞在含有秋水仙酰胺或诺考达唑的培养基中培养,则微管不存在。使用细胞形状的两种测量方法——伸长和分散来量化微管破坏药物对细胞极化的影响,这两种测量方法都随着极化程度的增加而增加。结果表明,微管破坏药物对在1°培养中铺展的HF的极化没有显著影响,但显著降低了在2°培养中铺展的HF的极化。还量化了微管破坏对在1°培养中维持6小时、24小时或