De Laporte Laura, Cruz Rea Jennifer, Shea Lonnie D
Department of Chemical and Biological Engineering, Northwestern University, 2145 Sheridan Road E156, Evanston, IL 60208-3120, USA.
Biomaterials. 2006 Mar;27(7):947-54. doi: 10.1016/j.biomaterials.2005.09.036. Epub 2005 Oct 21.
Gene delivery has numerous potential applications both clinically and for basic science research. Non-viral vectors represent the long-term future of gene therapy and biomaterials are a critical component for the development of efficient delivery systems. Biomaterial development combined with fundamental studies of virus function and cellular processes will enable the molecular level design of modular vectors. Vectors are being developed based on cationic polymers or lipids that contain functional groups to mediate appropriate interactions with the extracellular environment or to interface with specific cellular processes. This review describes recent progress on the development of biomaterials for non-viral vectors and highlights opportunities for future development. Ultimately, efficient vectors will expand the traditional applications of gene therapy within the clinic and may enable numerous other opportunities within diagnostics, biotechnology, and basic science research.
基因递送在临床和基础科学研究方面都有众多潜在应用。非病毒载体代表了基因治疗的长远未来,而生物材料是高效递送系统开发的关键组成部分。生物材料的开发与病毒功能及细胞过程的基础研究相结合,将实现模块化载体的分子水平设计。基于含有官能团的阳离子聚合物或脂质开发载体,这些官能团可介导与细胞外环境的适当相互作用或与特定细胞过程相衔接。本文综述了非病毒载体生物材料开发的最新进展,并突出了未来发展的机遇。最终,高效载体将扩大基因治疗在临床中的传统应用,并可能在诊断、生物技术和基础科学研究中带来众多其他机遇。