INSTM (Italian National Consortium for Materials Science and Technology), Research Unit Milano Politecnico, Milano, Italy.
J Appl Biomater Funct Mater. 2012 Sep 27;10(2):82-91. doi: 10.5301/JABFM.2012.9707.
Gene therapy is emerging as a revolutionary alternative to conventional therapeutic approaches. However, its clinical application is still hampered by the lack of safe and effective gene delivery techniques. Among the plethora of diverse approaches used to ferry nucleic acids into target cells, non-viral vectors represent promising and safer alternatives to viruses and physical techniques. Both cationic lipids and polymers spontaneously wrap and shrink the genetic material in complexes named lipoplexes and polyplexes, respectively, thereby protecting it and shielding its negative charges. The development of non-viral vectors commenced more than two decades ago. Since then, some major classes of interesting molecules have been identified and modified to optimize their properties. However, the way towards the final goal of gene delivery, i.e. protein expression or gene silencing, is filled with obstacles and current non-viral carriers still have concerns about their overall efficiency. We strongly believe that the future of non-viral gene delivery relies on the development of multifunctional vectors specifically tailored with diverse functionalities that act more like viruses. Although these vectors are still a long way from clinical practice they are the ideal platform to effectively shuttle the genetic material to target cells in a safe and controlled way. In this review, after briefly introducing the basis of gene delivery and therapeutic applications we discuss the main polymeric and lipidic vectors utilized for gene delivery, focusing on the strategies adopted to overcome the major weaknesses inherent to their still limited activity, on the way towards ideal multifunctional vectors.
基因治疗作为一种替代传统治疗方法的革命性方法正在兴起。然而,由于缺乏安全有效的基因传递技术,其临床应用仍然受到限制。在将核酸递送到靶细胞的众多不同方法中,非病毒载体是病毒和物理技术的有前途且更安全的替代品。阳离子脂质体和聚合物分别自发地将遗传物质包裹并收缩成称为脂质体和聚合物的复合物,从而保护其并屏蔽其负电荷。非病毒载体的开发始于二十多年前。从那时起,已经确定并修饰了一些主要类别的有趣分子,以优化它们的性质。然而,通往基因传递的最终目标(即蛋白质表达或基因沉默)的道路充满了障碍,并且当前的非病毒载体仍然存在对其整体效率的担忧。我们坚信,非病毒基因传递的未来依赖于专门设计的多功能载体的开发,这些载体具有多种功能,更类似于病毒。尽管这些载体距离临床实践还有很长的路要走,但它们是有效将遗传物质安全且受控地递送到靶细胞的理想平台。在这篇综述中,在简要介绍基因传递和治疗应用的基础之后,我们讨论了用于基因传递的主要聚合物和脂质体载体,重点讨论了克服其仍然有限的活性所固有的主要弱点的策略,以及朝着理想的多功能载体的发展方向。