Nasevicius A, Ekker S C
University of Minnesota, Biochemistry, Molecular Biology and Biophysics Graduate Program, Arnold and Mabel Beckman Center for Transposon Research, Minneapolis 55455, USA.
Curr Opin Mol Ther. 2001 Jun;3(3):224-8.
Unconventional antisense technology has entered the mainstream for both therapeutic and functional genomics applications in a variety of biological settings. Further development of this approach has been hampered by the high cost and limited information obtained with standard bioassays and animal models. The embryo of the zebrafish Danio rerio offers both biologists and technologists a new strategy that rapidly garners efficacy, toxicity and specificity data in an in vivo setting. This system has been used to optimize current antisense targeting methods, and it provides an ideal initial assay system for the development of new chemistries or other new gene targeting approaches.
非传统反义技术已在各种生物学环境中的治疗和功能基因组学应用中成为主流。这种方法的进一步发展受到标准生物测定和动物模型成本高以及所获信息有限的阻碍。斑马鱼(Danio rerio)胚胎为生物学家和技术专家提供了一种新策略,可在体内环境中快速获取疗效、毒性和特异性数据。该系统已用于优化当前的反义靶向方法,并且为新化学方法或其他新的基因靶向方法的开发提供了理想的初始测定系统。