Bakhshinejad Babak, Sadeghizadeh Majid
Tarbiat Modares University, Department of Genetics, Faculty of Biological Sciences , Tehran , Iran.
Expert Opin Drug Deliv. 2014 Oct;11(10):1561-74. doi: 10.1517/17425247.2014.927437. Epub 2014 Jun 23.
The identification of more efficient gene delivery vehicles (GDVs) is essential to fulfill the expectations of clinical gene therapy. Bacteriophages, due to their excellent safety profile, extreme stability under a variety of harsh environmental conditions and the capability for being genetically manipulated, have drawn a flurry of interest to be applied as a newly arisen category of gene delivery platforms.
The incessant evolutionary interaction of bacteriophages with human cells has turned them into a part of our body's natural ecosystem. However, these carriers represent several barriers to gene transduction of mammalian cells. The lack of evolvement of specialized machinery for targeted cellular internalization, endosomal, lysosomal and proteasomal escape, cytoplasmic entry, nuclear localization and intranuclear transcription poses major challenges to the expression of the phage-carried gene. In this review, we describe pros and cons of bacteriophages as GDVs, provide an insight into numerous barriers that bacteriophages face for entry into and subsequent trafficking inside mammalian cells and elaborate on the strategies used to bypass these barriers.
Tremendous genetic flexibility of bacteriophages to undergo numerous surface modifications through phage display technology has proven to be a turning point in the uncompromising efforts to surmount the limitations of phage-mediated gene expression. The revelatory outcomes of the studies undertaken within the recent years have been promising for phage-mediated gene delivery to move from concept to reality.
鉴定更高效的基因传递载体(GDV)对于实现临床基因治疗的期望至关重要。噬菌体因其出色的安全性、在各种恶劣环境条件下的极端稳定性以及可进行基因操作的能力,已引发了人们对将其作为新兴基因传递平台应用的浓厚兴趣。
噬菌体与人类细胞持续的进化相互作用已使其成为我们身体自然生态系统的一部分。然而,这些载体对哺乳动物细胞的基因转导存在若干障碍。缺乏用于靶向细胞内化、从内体、溶酶体和蛋白酶体逃逸、进入细胞质、核定位和核内转录的专门机制,对噬菌体携带基因的表达构成了重大挑战。在本综述中,我们描述了噬菌体作为基因传递载体的优缺点,深入探讨了噬菌体进入哺乳动物细胞并在细胞内后续运输所面临的众多障碍,并详细阐述了用于绕过这些障碍的策略。
噬菌体通过噬菌体展示技术进行多种表面修饰的巨大遗传灵活性已被证明是克服噬菌体介导基因表达局限性的不懈努力中的一个转折点。近年来所开展研究的启示性结果对于噬菌体介导的基因传递从概念走向现实很有前景。