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大容量人天然噬菌体单链抗体库的构建
引用本文:潘贰,汪道新,范锟铻,黄江鸿,张力勇,李伟萍,朱志祥.大容量人天然噬菌体单链抗体库的构建[J].中国医药导报,2008,5(12):11-13.
作者姓名:潘贰  汪道新  范锟铻  黄江鸿  张力勇  李伟萍  朱志祥
作者单位:1. 广州医学院,广东广州,510182
2. 深圳市第二人民医院烧伤整形美容科,广东深圳,518035
基金项目:广东省深圳市科技局重点计划项目课题《超滑微型烧伤透析引流管及临床应用研究》.
摘    要:目的:构建大容量和具有良好多样性的人天然噬菌体单链抗体库。方法:从人外周血分离淋巴细胞,提取mRNA后用RT—PCR技术采用新设计的引物扩增VH和VL基因片段,两者分别与Linker连接后,采用改进的重叠延伸PCR法将VH基因和VL基因连接成人单链抗体(scFv)基因(VH—Linker—VL片段),继而连接到噬菌粒载体pCANTAB5E中,连接产物通过电转化方法转入大肠杆菌TG1,构建噬菌体scFv抗体库。结果:所有VH、VL亚类基因都得到了扩增和有效的连接.经电转化E.coli TG1和噬菌体的超感染,构建了总库容达到了6×10^8的单链抗体库。结论:成功地构建了一个多样性良好的人源天然噬菌体抗体库,可用于制备具有应用前景的人源抗体。

关 键 词:单链抗体(scFv)  噬菌体抗体库  重叠延伸拼接
文章编号:1673-7210(2008)04(c)-011-03
修稿时间:2007年12月27

The study of electrolyte and microenvironment in electrical injury tissue dealed with local tissue dialysis
PAN Er,WANG Dao-xin,FAN Kun-wu,HUANG Jiang-hong,ZHANG Li-yong,LI Wei-ping,ZHU Zhi-xiang.The study of electrolyte and microenvironment in electrical injury tissue dealed with local tissue dialysis[J].China Medical Herald,2008,5(12):11-13.
Authors:PAN Er  WANG Dao-xin  FAN Kun-wu  HUANG Jiang-hong  ZHANG Li-yong  LI Wei-ping  ZHU Zhi-xiang
Institution:PAN Er1,WANG Dao-xin2,FAN Kun-wu2,HUANG Jiang-hong2,ZHANG Li-yong2,LI Wei-ping2,ZHU Zhi-xiang2
Abstract:Objective: To construct a human natural phage single -chain antibody (scFv) library with diversity.Methods: Total RNA was extracted from the peripheral blood lymphocytes of the non-immunized healthy donors, VH and VL genes were amplified by RT-PCR and were assembled to form scFv by overlap PCR and cloned into phagemid pCANTAB5E, and then transformed into E. coli TG1 by electroporation to construct a human natural phage scFv antibody library. Results:VH gene families and VL gene families were successfully amplified. A large human antibody library containing 6×10^8 clones was created after rescuing the recombinant phagemids from the transformed E. coli TG1 cells.Conclusion:A human scFv antibody library is successfully constructed finally. In the future, we can try to obtain antibody by panning purposely using related antigens.
Keywords:Local tissue dialysis  Electrical injury  Electrolyte
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