Review
Copyright ©The Author(s) 2021.
World J Virol. Sep 25, 2021; 10(5): 229-255
Published online Sep 25, 2021. doi: 10.5501/wjv.v10.i5.229
Table 1 Genetic modifications in the adenovirus
Ref.
Virus
Updates
Aim
Rojas et al[219]COVIR -7/-15Insertion of E2F-binding sites in the gene E1ASpecific targeting to the tumor cells, which express E2F and increase viral replication rate and antitumor action
Sarkar et al[220]CTV-m 7Insertion of the transgene MDA-7/IL-24Expression of the protein MDA-7/IL-24 increases the cytotoxic action in the tumor sites and lyse the metastatic cells. The studies have shown greater effectiveness in the therapy of prostate cancer
Sarkar et al[220]tCCN1 -CTV - m 7Replacement of E1A by tCCN1Specific targeting and cytotoxicity against the tumor cells, which express the promoter tCCN1 in prostate cancer
Choi et al[221]Ads armed with inhibitors of tumoral angiogenesisIncorporation of the gene FP3 Increase of the antiangiogenic capacity, which decreases the vascular endothelial growth factor production and suppresses the rate of tumor growth
Lucas et al[222]Ad5 armed with the peptide CKS17Replacement of HVR5 by the peptide CKS17Specific target to the TGFBRII in the liver cancer cells, increasing the viral cytotoxic action and decreasing the liver sequestration
Garofalo et al[223]AdV-D24-ICOSL-CD40LInsertion of D24, ICOSL and CD40 genes in the chimeric virus, AdV-D24, serotype 5/3Selectivity to infect the cancer cells through DSG-2 receptor and stimulation of the immune system by ICOSL and ICOS, both contributing to the immunogenic cell death in melanoma
Vera et al[224]VCN-01Selectivity to the pRB pathway and ability to express hyaluronidaseSpecific viral replication, decreasing the side effects and degradation of the extracellular matrix by the enzyme hyaluronidase in solid tumors
Yang et al[225]Ad5/3-CXCR4-TIMP2Replacing Ad5 knob with Ad3 knob and incorporating the gene TIMP2Selective replication in the cancer cells, which reduces the action over the normal cells and the expression of inhibitors of metalloproteinases, contributing to the degradation and remodeling of the extracellular matrix, preventing tumor growth and metastasis
Table 2 Genetic modifications in the vaccinia virus
Ref.
Virus
Updates
Aim
Parato et al[226]JX-594Express GM-CSF and lacZ transgenesIncrease lytic activity and antitumor immunity
John et al[227]vvDD-GFPInsertion of an Ab specific for the costimulatory molecule 4-1BB Increase antitumor responses with myeloid cells, greater infiltration of CD8+ effector T and NK cells
Zhang et al[228]GLV-1 h68Insertion of three expression cassettes into the A56R, F14.5L, and J2RIncreased tumor targeting specificity and reduced toxicity
Yoo et al[229]CVVDeletion of viral thymidine kinase genesRegression of liver tumorigenicity and metastasis to the colon
Ricordel et al[230]deVV5TK-deleted chimeric VV armed with the suicide gene FCU1 Union of different VV strains, with increased oncolytic properties, with more efficient replication in human tumor cells
Ge et al[231]vvDD-IL-12Oncolytic VV delivering tethered IL-12 Increase tumor infiltration of activated CD4+ and CD8+ T cells, decrease the transforming growth factor β and increase interferon γ
Deng et al[232]VG9The oncolytic potency of VG9 was evaluated in various cell linesEvaluate replication and cytotoxicity in vitro, antitumor effects and process of biodistribution of VG9 in a B16 tumor model
Table 3 Genetic modifications in the herpes simplex virus-1
Ref.
Virus
Updates
Aim
Liu et al[61]T-VECInsertion of GM-CSF and deletion of γ34.5, US12Increase lytic activity and antitumor immunity
Ushijima et al[233]HF10Insertion of UL53, UL54 and deletionof UL43, UL49.5, UL55, UL56, LATReduce neurovirulence and increase immunogenicity
Ebright et al[234]NV1020Incorporation of the HSV-1 TK gene and deletion of α0, α4, γ34.5, UL56, UL24Reduce neurovirulence and provide susceptibility to antiviral chemotherapy
MacKie et al[235]HSV 1716Incorporation of γ34.5Reduce neurovirulence
Mineta et al[236]G207Insertion of lacZ and deletion of γ34.5Avoid ribonucleotide reductase encoding and reduce neurovirulence