Department of Biotechnology, National Institute of Technology, Raipur, Chhattisgarh, India.
Techno-Commercial Division, Trinity International, New Delhi, India.
Prog Mol Biol Transl Sci. 2023;201:191-201. doi: 10.1016/bs.pmbts.2023.04.008. Epub 2023 Jun 17.
Viruses being the natural carriers of gene have been widely used as drug delivery systems. However, the commonly used eukaryotic viruses such as adenoviruses, retroviruses, and lentiviruses, besides efficiently targeting the cells, can also stimulate immunological response or disrupt tumour suppressor genes leading to cancer. Consequently, there has been an increase interest in the scientific fraternity towards exploring other alternatives, which are safer and equally efficient for drug delivery. Bacteriophages, in this context have been at the forefront as an efficient, reliable, and safer choice. Novel phage dependent technologies led the foundation of peptide libraries and provides way to recognising abilities and targeting of specific ligands. Hybridisation of phage with inorganic complexes could be an appropriate strategy for the construction of carrying bioinorganic carriers. In this chapter, we have tried to cover major advances in the phage species that can be used as drug delivery vehicles.
病毒作为基因的天然载体,已被广泛应用于药物输送系统。然而,常用的真核病毒(如腺病毒、逆转录病毒和慢病毒)在有效靶向细胞的同时,也能刺激免疫反应或破坏肿瘤抑制基因,导致癌症。因此,科学界越来越关注探索其他更安全、同样有效的药物输送替代方法。噬菌体在这方面一直是一种高效、可靠和安全的选择。新型噬菌体依赖技术为肽库的建立奠定了基础,并为识别特定配体的能力和靶向提供了途径。噬菌体与无机配合物的杂交可能是构建携带生物无机载体的一种合适策略。在本章中,我们试图涵盖可作为药物输送载体的噬菌体种类的主要进展。