| Literature DB >> 31636245 |
Anna Maria Malfitano1, Sarah Di Somma2, Nella Prevete3, Giuseppe Portella4.
Abstract
Virotherapy is a novel cancer treatment based on oncolytic viruses (OVs), which selectively infect and lyse cancer cells, without harming normal cells or tissues. Several viruses, either naturally occurring or developed through genetic engineering, are currently under investigation in clinical studies. Emerging reports suggesting the immune-stimulatory property of OVs against tumor cells further support the clinical use of OVs for the treatment of lesions lacking effective therapies. Poorly differentiated thyroid carcinoma (PDTC) and anaplastic thyroid carcinoma (ATC), have a poor prognosis and limited treatment options. Therefore, several groups investigated the therapeutic potential of OVs in PDTC/ATC models producing experimental data sustaining the potential clinical efficacy of OVs in these cancer models. Moreover, the presence of an immunosuppressive microenvironment further supports the potential use of OVs in ATC. In this review, we present the results of the studies evaluating the efficacy of OVs alone or in combination with other treatment options. In particular, their potential therapeutic combination with multiple kinases inhibitors (MKIs) or immune checkpoint inhibitors are discussed.Entities:
Keywords: anaplastic and poorly differentiated thyroid carcinoma; immunotherapy; oncolytic virus
Year: 2019 PMID: 31636245 PMCID: PMC6826611 DOI: 10.3390/cancers11101532
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639
DNA OVs.
| Family and Type Species | Name | Viral Genetic Modification | Exploited Cancer Pathway | Combination with Other Therapeutics | Refs | Models |
|---|---|---|---|---|---|---|
| Adenoviridae, Human Adenovirus C | E1B-55kDa | p53 deficiency | Doxorubicin, Paclitaxel | 66 | in vitro and mouse models | |
| Ionizing Radiation (IR) | 68 | |||||
| Lovastatin | 72 | |||||
| E1A-CR2 deletion | pRb deficiency | Bevacizumab | 73 | in vitro and mouse models | ||
| AZD1152 | 82 | |||||
| IR | 83 | |||||
| Olaparib | 84 | |||||
| HILMI | TCF/β-catenin responsive promoter insertion | Wnt/ | NO | 93 | in vitro and mouse models | |
| ONYX-411 | E2F promoter insertion controls E1A and E4 gene expression | E2F hyper-expression | NO | 94 | in vitro and mouse models | |
| E3 10.4K, 14.5 K, 14.7 K deletion | NO | 95 | in vitro | |||
| VB-111 (non-replicative) | E1 deletion and insertion of Fas-c gene under a modified PPE-1 promoter | NO | 120 | mouse models | ||
| Poxviridae, Vaccinia Virus | VACV | EGFP insertion | AKT hyperactivation | NO | 99 | in vitro |
| GLV-1h68 | Insertion of RUC-GFP, β -galactosidase, β-glucuronidase into | AKT hyperactivation | NO | 101-103 | in vitro and mouse models | |
| Poxviridae, Tanapox Virus | TANV | EGFP insertion | AKT hyperactivation | NO | 99 | in vitro |
| Herpesviridae, Human herpesvirus 1 | NV1023 | HSV2 genes (US2-2 and US2-5) insertion in the UL/S junction. ICP10, ICP4, γ34.5 gene deletion. | Defective PKR signaling | NO | 108 | mouse models |
| G207 | γ34.5 deletion | Defective PKR signaling | Paclitaxel and Adriamycin | 109 | in vitro and mouse models | |
| G47Δ | γ34.5, ICP47 and US11 promoter deletions | Defective PKR signaling | NO | 110 | in vitro and mouse models |
RNA OVs.
| Family and Type Species | Name | Viral Genetic Modification | Exploited Cancer Pathway | Combination with other therapeutics | Refs | Model |
|---|---|---|---|---|---|---|
| Paramyxoviridae ( | MV-Edm | Live attenuated Edmonston B strain | CD46 expression on cell surface | 104-106 | in vitro and mouse models | |
| MV-NIS | Human NIS insertion | CD46 expression on cell surface | Radio iodine therapy (131I) | 107 | in vitro and mouse models | |
| Paramyxovirus | NDV/FMW | Unmodified oncolytic NDV, FMW strain | RAS hyperactivation | NO | 117 | in vitro, mouse models and clinical studies |
| Paramyxovirus | BioKnife | M gene deletion and insertion of GFP gene | uPA activity | NO | 119 | in vitro and mouse models |
| Reoviridae | REOLYSIN | Unmodified oncolytic Reovirus | Defective (PKR) signaling | Low dose IR (PHASE II study for advanced cancer, partial response in one patient with thyroid carcinoma) | 54 | in vitro and mouse models |