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bFGF-induced dedifferentiation of epidermal cells into epidermal progenitor stem cells / 第三军医大学学报
Journal of Third Military Medical University ; (24)2003.
Article in Chinese | WPRIM | ID: wpr-564496
ABSTRACT
Objective To investigate the dedifferentiation of epidermal cells into their progenitor stem cells induced by basic fibroblasts growth factors(bFGF) in vitro.Methods HEKa cells obtained from Cascade were found flattening and formation of cell-to-cell contacts after 6 to 7 passages,which resembled differentiated epidermal cells in vivo.To examine the effect of growth factors on the cell proliferative alterations,bFGF(100 ng/ml) was added into the culture medium for different periods(6,12,24,48,or 72 h),then the cell proliferation was measured by MTT assay.Phenotypic changes and the cell-fate determination of HEKa cells after bFGF treatment were detected by immunocytochemical assays,flow cytometry and RT-PCR analysis.HEK cells with no intervention treatment were used as a control.Results MTT assay proved that the optimal culture condition to induce the dedifferentiation of epidermal cells into their progenitors was to culture HEKa cells for 36 to 48 h when the addition of bFGF was 100 ng/ml.After treatment with bFGF for 48 h,clusters of round-shaped cells appeared around differentiated epidermal cells,and expanded progressively thereafter.These cells were smaller in shape and with larger nuclear/cytoplasm ratio,and had not only clonogenicity but also ability to form a cutaneous ridge-like structure.Immunohistochemical staining revealed that the expression levels of ?1 integrin,CK19 and CK14 were up-regulated,while the expression of CK10 was significant down-regulated after bFGF treatment.Flow cytometry indicated that there were more CK19-positive and CK14-positive cells in the treatment group than in the control(74.77% vs 15.74%,and 87.14% vs 67.26%respectively),but much lesser CK10-positive cells(4.56% vs 98.56%).Additionally,the mRNA expression levels of ?1 integrin,CK19 and CK14 were up-regulated after bFGF treatment,but that of CK10 was down-regulated.Conclusion bFGF can reverse the differentiated process of epidermal cells and induce them to produce immature,stem-like cells,which can proliferate and be used in the wound repair and regeneration of skin tissues.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Journal of Third Military Medical University Year: 2003 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Journal of Third Military Medical University Year: 2003 Type: Article