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Construction of the subtractive cDNA library of injured adult and fetal rabbit skins
作者姓名:张波  刘大维  王正国  朱佩芳  周继红  蒋建新
作者单位:ResearchInstituteofSurgery,DapingHospital,Chongqing400042,China
摘    要:Objective: Early gestational mammalian fetuses possess the amazing ability to heal cutaneous wounds in a scarless fashion. Over the past years, scientists have been working to decipher the mechanisms underlying this regenerative repair. The remarkable phenotypic differences between fetal and adult healings behoves us to learn their characteristics in genetics, which represents potentially important mechanisms involved in wound repair observed in fetal versus adult tissues. In this sense, it is reasonable to construct subtractive cDNA library for future research. Methods: Middle laparotomy and hysterotomy were performed on pregnant rabbits at 20-day gestation to expose the fetal back, and a longitudinal incision through the skin was made on the back of the fetus. The traumatized fetal skin was harvested 12 hours post-operation, the fetus control and traumatized adult skin specimens were taken at the same time. dscDNA was synthesized from total RNA of skin samples with SMART technology. Taking one of the three samples as Tester respectively and the other two as Drivers, we obtained 1 forward and 2 reverse hybridization products. After being amplified with selective polymerase chain reaction, the products were inserted into a vector,and then transferred into E. coli HB101. The colonies were screened afterwards. Results: The wounded fetuses were alive for a long time even after birth. Every determinant step, such as RNA isolation, cDNA synthesis, Rsa I digestion, adaptor ligation and hybridization, was well-operated. Subtractive efficiency identification demonstrated that the suppression subtractive hybridization (SSH) was successful. Insertion into vector and transferring to E.coli were satisfactory. Conclusions: Instead of classic SSH, an improved SSH with 2 Drivers was applied for the experiment. Results confirmed that the improved program was reasonable and correct in both theory and practice. The subtractive cDNA library we have obtained is going to be used for future researches to reveal scariess healing related gene (s) and its (their) expression.

关 键 词:负cDNA文库  皮肤损伤  组织再生  成人  胎儿  动物实验

Construction of the subtractive cDNA library of injured adult and fetal rabbit skins
ZHANG Bo ,LIU Da wei,WANG Zheng guo,ZHU Pei fang,ZHOU Ji hong and JIANG Jian xin Research Institute of Surgery,Daping Hospital,Chongqing ,China.Construction of the subtractive cDNA library of injured adult and fetal rabbit skins[J].Chinese Journal of Traumatology(English Edition),2004,7(1):13-17.
Authors:ZHANG Bo  LIU Da wei  WANG Zheng guo  ZHU Pei fang  ZHOU Ji hong and JIANG Jian xin Research Institute of Surgery  Daping Hospital  Chongqing  China
Institution:Research Institute of Surgery, Daping Hospital, Chongqing 400042, China
Abstract:Objective: Early gestational mammalian fetuses possess the amazing ability to heal cutaneous wounds in a scarless fashion. Over the past years, scientists have been working to decipher the mechanisms underlying this regenerative repair. The remarkable phenotypic differences between fetal and adult healings behoves us to learn their characteristics in genetics, which represents potentially important mechanisms involved in wound repair observed in fetal versus adult tissues. In this sense, it is reasonable to construct subtractive cDNA library for future research. Methods: Middle laparotomy and hysterotomy were performed on pregnant rabbits at 20 day gestation to expose the fetal back, and a longitudinal incision through the skin was made on the back of the fetus. The traumatized fetal skin was harvested 12 hours post operation, the fetus control and traumatized adult skin specimens were taken at the same time. dscDNA was synthesized from total RNA of skin samples with SMART technology. Taking one of the three samples as Tester respectively and the other two as Drivers, we obtained 1 forward and 2 reverse hybridization products. After being amplified with selective polymerase chain reaction, the products were inserted into a vector, and then transferred into E.coli HB101. The colonies were screened afterwards. Results: The wounded fetuses were alive for a long time even after birth. Every determinant step, such as RNA isolation, cDNA synthesis, Rsa I digestion, adaptor ligation and hybridization, was well operated. Subtractive efficiency identification demonstrated that the suppression subtractive hybridization (SSH) was successful. Insertion into vector and transferring to E.coli were satisfactory. Conclusions: Instead of classic SSH, an improved SSH with 2 Drivers was applied for the experiment. Results confirmed that the improved program was reasonable and correct in both theory and practice. The subtractive cDNA library we have obtained is going to be used for future researches to reveal scarless healing related gene(s) and its (their) expression.
Keywords:Wound healing  Cicatrix  Gene library  Suppression subtractive hybridization genes
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