Bakhshinejad Babak, Karimi Marzieh, Sadeghizadeh Majid
Department of Genetics, Faculty of Biological Sciences, Tarbiat Modares University, P.O.Box: 14115-154, Tehran, Iran.
Med Oncol. 2014 Aug;31(8):110. doi: 10.1007/s12032-014-0110-9. Epub 2014 Jul 11.
Targeted gene therapy of cancer is of paramount importance in medical oncology. Bacteriophages, viruses that specifically infect bacterial cells, offer a variety of potential applications in biomedicine. Their genetic flexibility to go under a variety of surface modifications serves as a basis for phage display methodology. These surface manipulations allow bacteriophages to be exploited for targeted delivery of therapeutic genes. Moreover, the excellent safety profile of these viruses paves the way for their potential use as cancer gene therapy platforms. The merge of phage display and combinatorial technology has led to the emergence of phage libraries turning phage display into a high throughput technology. Random peptide libraries, as one of the most frequently used phage libraries, provide a rich source of clinically useful peptide ligands. Peptides are known as a promising category of pharmaceutical agents in medical oncology that present advantages such as inexpensive synthesis, efficient tissue penetration and the lack of immunogenicity. Phage peptide libraries can be screened, through biopanning, against various targets including cancer cells and tissues that results in obtaining cancer-homing ligands. Cancer-specific peptides isolated from phage libraries show huge promise to be utilized for targeting of various gene therapy vectors towards malignant cells. Beyond doubt, bacteriophages will play a more impressive role in the future of medical oncology.
癌症的靶向基因治疗在医学肿瘤学中至关重要。噬菌体是专门感染细菌细胞的病毒,在生物医学中有多种潜在应用。它们具有进行各种表面修饰的遗传灵活性,这是噬菌体展示方法的基础。这些表面操作使噬菌体可用于靶向递送治疗基因。此外,这些病毒出色的安全性为其作为癌症基因治疗平台的潜在应用铺平了道路。噬菌体展示与组合技术的融合导致了噬菌体文库的出现,使噬菌体展示成为一种高通量技术。随机肽文库作为最常用的噬菌体文库之一,提供了丰富的临床有用肽配体来源。肽在医学肿瘤学中是一类有前景的药物,具有合成成本低、组织穿透效率高和缺乏免疫原性等优点。噬菌体肽文库可通过生物淘选针对包括癌细胞和组织在内的各种靶标进行筛选,从而获得归巢至癌症的配体。从噬菌体文库中分离出的癌症特异性肽在将各种基因治疗载体靶向恶性细胞方面显示出巨大的应用前景。毫无疑问,噬菌体在医学肿瘤学的未来将发挥更重要的作用。