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Thermal injuries induce gene expression of endogenous c-fos, c-myc and bFGF in burned tissues
Authors:Fu Xiaobing  Gu Xiaoman  Sun Tongzhu  Yang Yinhui  Sun Xiaoqing  Sheng Zhiyong
Institution:Key Research Laboratory of Wound Repair of PLA, Burn Institute, 304th Hospital, Trauma Center of Postgraduate Medical College, Beijing 100037, China
Abstract:To investigate the expression sequence and distribution characteristics of the p rotooncogenes c fos, c myc and endogenous basic fibroblast growth factor (bFGF ) genes in burned tissues, and to explore the possible effects of changes in the se genes' functions on wound healing Methods Partial thickness burns of 30% TBSA were established on backs of Wistar rats In situ hybridization and histological methods were used to detect expression of c fos, c myc and bFGF genes in normal and burned tissue at 3 h, 6 h, 1 d, 3 d , 7 d and 14 d postburn Results Although expression of c fos and c myc genes and bFGF gene could be found in n ormal skin, the expression of all three were markedly induced by burn wounds and the expression models in sequence and distribution were quite different Expre ssion of c fos gene increased and peaked at 6 h Signals were mainly localiz ed in both nuclei of dermal fibroblasts and monocytes The expression of bFGF gene increased at 6 h and peaked at 1 d postburn, and was distributed in the cyt oplasm of fibroblasts C myc gene peaked 3 d postburn and was also distributed in the cytoplasm of fibroblasts Conclusions These results indicated that thermal injury could induce the expression of c fo s, c myc and bFGF at gene level, showing phasic control and regional distributi on The phasic expression of these genes suggests that there is an interaction between protooncogenes and bFGF, which may play an important role in wound heali ng The different expressions of c fos and c myc play an inducing role in reg ulating bFGF, and in turn affect wound healing
Keywords:protooncogenes  fibroblast growth factor  burn  network regulation
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