Kim Soon Hee, Ha Hyun Jung, Ko Youn Kyung, Yoon Sun Jung, Rhee John M, Kim Moon Suk, Lee Hai Bang, Khang Gilson
BK-21 Polymer BIN Fusion Research Team, Chonbuk National University, 664-14 Dukjin, Jeonju 561-756, South Korea.
J Biomater Sci Polym Ed. 2007;18(5):609-22. doi: 10.1163/156856207780852514.
In order to find a correlation between cell adhesion, growth and biological response with different wettability, NIH/3T3 fibroblast cells were cultured on plasma-treated low-density polyethylene (LDPE) film generated with radio frequency. Different surface wettabilities (water contact angle 90-40 degrees ) were created by varying the duration of plasma treatment between 0 and 15 s, respectively. Growth and proliferation rate of cells on LDPE surfaces was evaluated by MTT assay, and cell morphology, by means of spreading and adhesion, was characterized by scanning electron microscopy (SEM). The expression of particular genes in cells contacted on films with different wettability was analyzed by RT-PCR. Using the MTT assay, we confirmed that the amount of cell adhesion was higher on surface of film with a water contact angle of 60 degrees than with other water contact angle. Also, the proliferation rate of cells was highest with a water contact angle of 60 degrees . It was confirmed by SEM that the morphology of cells adhered with a water contact angle of 50-60 degrees was more flattened and activated than on other surfaces. Furthermore, c-fos mRNA in cells showed maximum expression on the film with contact angle range of 50-60 degrees and c-myc mRNA expressed highly on the film with a contact angle of 50 degrees . Finally, p53 gene expression increased as wettability increase. These results indicate that a water contact angle of the polymer surfaces of 50-60 degrees was suitable for cell adhesion and growth, as well as biological responses, and the surface properties play an important role for the morphology of adhesion, growth and differentiation of cells.
为了找出细胞黏附、生长与不同润湿性之间的生物学反应的相关性,将NIH/3T3成纤维细胞培养在通过射频产生的经等离子体处理的低密度聚乙烯(LDPE)薄膜上。通过分别改变等离子体处理时间在0至15秒之间,产生了不同的表面润湿性(水接触角90 - 40度)。通过MTT法评估细胞在LDPE表面的生长和增殖率,通过扫描电子显微镜(SEM)表征细胞形态,包括铺展和黏附情况。通过RT-PCR分析与不同润湿性薄膜接触的细胞中特定基因的表达。使用MTT法,我们证实水接触角为60度的薄膜表面上的细胞黏附量高于其他水接触角的薄膜表面。而且,水接触角为60度时细胞的增殖率最高。通过SEM证实,水接触角为50 - 60度时黏附的细胞形态比在其他表面上更扁平且更具活性。此外,细胞中的c-fos mRNA在接触角范围为50 - 60度的薄膜上表达量最高,c-myc mRNA在接触角为50度的薄膜上高表达。最后,p53基因表达随着润湿性增加而增加。这些结果表明,聚合物表面的水接触角为50 - 60度适合细胞黏附、生长以及生物学反应,并且表面性质对细胞黏附、生长和分化的形态起着重要作用。