Suppr超能文献

用于研究的最先进的慢病毒载体:风险评估和生物安全建议。

State-of-the-art lentiviral vectors for research use: risk assessment and biosafety recommendations.

机构信息

Scientific Institute of Public Health, Division of Biosafety and Biotechnology, B-1050 Brussels, Belgium.

出版信息

Curr Gene Ther. 2009 Dec;9(6):459-74. doi: 10.2174/156652309790031120.

Abstract

Lentiviral vectors (LV) are competent gene transfer vehicles, as used for both research and gene therapy applications, because of their stable integration in non-dividing and dividing cells and long-term transgene expression. Along with our understanding that LV offer solutions for gene therapy, biosafety concerns have uncovered risks due to insertional mutagenesis, the generation of replication competent lentiviruses (RCL) and vector mobilization. Researchers therefore continue to devote significant efforts in designing LV with improved efficacy and biosafety features. The choice of a particular LV system for experimental studies is often driven by functional considerations, including increased productivity and/or transduction efficiency. The design of safer vectors has also directly benefited researchers allowing them to conduct experimental studies with lower risk. Currently, vectors combine improved safety features (that decrease the risk of recombination and vector mobilization) with increased transduction efficiency. Hence, risks associated with the inadvertent transduction of cells of the investigator gain greater importance in assessing the overall risk of these vectors and become an important biosafety concern. This review outlines the different strategies used to improve LV biosafety by comparing state-of-the-art and emerging LV production systems and highlighting biosafety issues that can arise during their contained use. The few existing national and international biosafety recommendations that specifically address the use of LV in research are discussed and recommendations for most common research activities using LV are proposed.

摘要

慢病毒载体(LV)是一种有效的基因转移载体,因其能够在非分裂和分裂细胞中稳定整合,并实现长期转基因表达,所以既用于研究也用于基因治疗应用。随着我们对 LV 可以解决基因治疗问题的认识不断加深,生物安全性方面的担忧也揭示了由于插入突变、产生复制型慢病毒(RCL)和载体转导而带来的风险。因此,研究人员继续致力于设计具有更高疗效和生物安全性特征的 LV。在选择特定的 LV 系统进行实验研究时,通常会受到功能方面的考虑驱动,包括提高生产力和/或转导效率。更安全载体的设计也直接使研究人员受益,使他们能够以更低的风险进行实验研究。目前,载体将改进的安全性特征(降低重组和载体转导的风险)与更高的转导效率相结合。因此,在评估这些载体的总体风险时,与研究人员无意中转导细胞相关的风险变得更加重要,成为一个重要的生物安全问题。本综述通过比较最先进和新兴的 LV 生产系统,概述了通过提高 LV 生物安全性的不同策略,并强调了在其封闭使用过程中可能出现的生物安全问题。讨论了少数专门针对 LV 在研究中使用的国家和国际生物安全建议,并提出了使用 LV 进行最常见研究活动的建议。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验