The Institute of Chemical Biology and Fundamental Medicine of the Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.
Int J Mol Sci. 2020 Dec 30;22(1):314. doi: 10.3390/ijms22010314.
The combination of the unique properties of cancer cells makes it possible to find specific ligands that interact directly with the tumor, and to conduct targeted tumor therapy. Phage display is one of the most common methods for searching for specific ligands. Bacteriophages display peptides, and the peptides themselves can be used as targeting molecules for the delivery of diagnostic and therapeutic agents. Phage display can be performed both in vitro and in vivo. Moreover, it is possible to carry out the phage display on cells pre-enriched for a certain tumor marker, for example, CD44 and CD133.
For this work we used several methods, such as phage display, sequencing, cell sorting, immunocytochemistry, phage titration.
We performed phage display using different screening systems (in vitro and in vivo), different phage libraries (Ph.D-7, Ph.D-12, Ph.D-C7C) on CD44+/CD133+ and without enrichment U-87 MG cells. The binding efficiency of bacteriophages displayed tumor-targeting peptides on U-87 MG cells was compared in vitro. We also conducted a comparative analysis in vivo of the specificity of the accumulation of selected bacteriophages in the tumor and in the control organs (liver, brain, kidney and lungs).
The screening in vivo of linear phage peptide libraries for glioblastoma was the most effective strategy for obtaining tumor-targeting peptides providing targeted delivery of diagnostic and therapeutic agents to glioblastoma.
癌细胞的独特特性使得能够找到与肿瘤直接相互作用的特定配体,并进行靶向肿瘤治疗成为可能。噬菌体展示是寻找特定配体的最常见方法之一。噬菌体展示肽,并且肽本身可以用作递送至诊断和治疗剂的靶向分子。噬菌体展示可以在体外和体内进行。此外,可以对预先富集了特定肿瘤标志物的细胞(例如 CD44 和 CD133)进行噬菌体展示。
对于这项工作,我们使用了几种方法,例如噬菌体展示、测序、细胞分选、免疫细胞化学、噬菌体滴定。
我们使用不同的筛选系统(体外和体内)、不同的噬菌体文库(Ph.D-7、Ph.D-12、Ph.D-C7C)在 CD44+/CD133+和未富集 U-87 MG 细胞上进行了噬菌体展示。比较了噬菌体展示的肿瘤靶向肽在 U-87 MG 细胞上的结合效率。我们还在体内进行了比较分析,研究了选定噬菌体在肿瘤和对照器官(肝、脑、肾和肺)中的积累特异性。
对脑胶质瘤进行线性噬菌体肽文库的体内筛选是获得肿瘤靶向肽的最有效策略,可为脑胶质瘤提供靶向递送至诊断和治疗剂。