Hoben Gwendolyn M, Athanasiou Kyriacos A
Department of Bioengineering, Rice University, Houston, TX, USA.
Cell Tissue Res. 2008 Dec;334(3):469-76. doi: 10.1007/s00441-008-0705-6. Epub 2008 Nov 5.
Modulation of the actin cytoskeleton in chondrocytes has been used to prevent or reverse dedifferentiation and to enhance protein synthesis. We have hypothesized that an actin-modifying agent, staurosporine, could be used with fibrochondrocytes to increase the gene expression and synthesis of critical fibrocartilage proteins. A range of concentrations (0.1-100 nM) was applied to fibrochondrocytes in monolayer and evaluated after 24 h and after 4 days. High-dose staurosporine treatment (10-100 nM) increased cartilage oligomeric matrix protein 60- to 500-fold and aggrecan gene expression two-fold. This effective range of staurosporine was then applied to scaffoldless tissue-engineered fibrochondrocyte constructs for 4 weeks. Whereas glycosaminoglycan synthesis was not affected, collagen content doubled, from 27.6 +/- 8.8 microg in the untreated constructs to 55.2 +/- 12.2 microg per construct with 100 nM treatment. When analyzed for specific collagens, the 10-nM group showed a significant increase in collagen type I content, whereas collagen type II was unaffected. A concomitant dose-dependent reduction was noted in construct contraction, reflecting the actin-disrupting action of staurosporine. Thus, staurosporine increases the gene expression for important matrix proteins and can be used to enhance matrix production and reduce contraction in tissue-engineered fibrocartilage constructs.
软骨细胞中肌动蛋白细胞骨架的调节已被用于预防或逆转去分化,并增强蛋白质合成。我们推测,一种肌动蛋白修饰剂——星形孢菌素,可与纤维软骨细胞一起使用,以增加关键纤维软骨蛋白的基因表达和合成。将一系列浓度(0.1 - 100 nM)应用于单层培养的纤维软骨细胞,并在24小时和4天后进行评估。高剂量星形孢菌素处理(10 - 100 nM)可使软骨寡聚基质蛋白增加60至500倍,聚集蛋白聚糖基因表达增加两倍。然后将这个星形孢菌素的有效浓度范围应用于无支架组织工程化纤维软骨细胞构建体4周。虽然糖胺聚糖的合成未受影响,但胶原蛋白含量增加了一倍,从未处理构建体中的27.6 +/- 8.8微克增加到100 nM处理的构建体中每个构建体55.2 +/- 12.2微克。当分析特定胶原蛋白时,10 nM组的I型胶原蛋白含量显著增加,而II型胶原蛋白未受影响。同时观察到构建体收缩呈剂量依赖性降低,这反映了星形孢菌素对肌动蛋白的破坏作用。因此,星形孢菌素可增加重要基质蛋白的基因表达,并可用于增强组织工程化纤维软骨构建体中的基质产生和减少收缩。