Group of Experimental Biotherapy and Diagnostics, Institute for Regenerative Medicine, I.M. Sechenov First Moscow State Medical University, 119991 Moscow, Russia.
Department of Virology, Faculty of Biology, Lomonosov Moscow State University, 119991 Moscow, Russia.
Viruses. 2024 Oct 16;16(10):1621. doi: 10.3390/v16101621.
The virions of plant viruses and their structurally modified particles (SP) represent valuable platforms for recombinant vaccine epitopes and antitumor agents. The possibility of modifying their surface with biological compounds makes them a tool for developing medical biotechnology applications. Here, we applied a new type of SP derived from virions and virus-like particles (VLP) of Alternanthera mosaic virus (AltMV) and well-studied SP from Tobacco mosaic virus (TMV). We have tested the ability of SP from AltMV (AltMV SP) and TMV virions also as AltMV VLP to bind to and penetrate Ewing sarcoma cells. The adsorption properties of AltMV SP and TMV SP are greater than those of the SP from AltMV VLP. Compared to normal cells, AltMV SP adsorbed more effectively on patient-derived sarcoma cells, whereas TMV SP were more effective on the established sarcoma cells. The AltMV SP and TMV SP were captured by all sarcoma cell lines. In the established Ewing sarcoma cell line, the effectiveness of AltMV SP penetration was greater than that of TMV SP. The usage of structurally modified plant virus particles as a platform for drugs and delivery systems has significant potential in the development of anticancer agents.
植物病毒的病毒粒子及其结构修饰颗粒(SP)代表了重组疫苗表位和抗肿瘤剂的有价值的平台。用生物化合物修饰其表面的可能性使它们成为开发医疗生物技术应用的工具。在这里,我们应用了一种新型的 SP,它来源于 Alternanthera mosaic virus(AltMV)的病毒粒子和病毒样颗粒(VLP)以及经过充分研究的 Tobacco mosaic virus(TMV)的 SP。我们已经测试了 AltMV 病毒粒子(AltMV SP)和 TMV 病毒粒子的 SP 以及 AltMV VLP 的 SP 结合和穿透尤因肉瘤细胞的能力。AltMV SP 和 TMV SP 的吸附特性大于 AltMV VLP 的 SP。与正常细胞相比,AltMV SP 更有效地吸附在源自患者的肉瘤细胞上,而 TMV SP 则更有效地作用于已建立的肉瘤细胞上。所有肉瘤细胞系都捕获了 AltMV SP 和 TMV SP。在已建立的尤因肉瘤细胞系中,AltMV SP 的穿透效率大于 TMV SP。结构修饰的植物病毒颗粒作为药物和输送系统的平台,在开发抗癌药物方面具有巨大的潜力。