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Published on: April 3, 2018
Insight into Oncogenic Viral Pathways as Drivers of Viral Cancers: Implication for Effective Therapy
Ahmed M E Elkhalifa1,2, Showkat Ul Nabi3, Ovais Shabir Shah4
1Department of Public Health, College of Health Sciences, Saudi Electronic University, Riyadh 11673, Saudi Arabia.
Abstract:
As per a recent study conducted by the WHO, 15.4% of all cancers are caused by infectious agents of various categories, and more than 10% of them are attributed to viruses. The emergence of COVID-19 has once again diverted the scientific community's attention toward viral diseases. Some researchers have postulated that SARS-CoV-2 will add its name to the growing list of oncogenic viruses in the long run. However, owing to the complexities in carcinogenesis of viral origin, researchers across the world are struggling to identify the common thread that runs across different oncogenic viruses. Classical pathways of viral oncogenesis have identified oncogenic mediators in oncogenic viruses, but these mediators have been reported to act on diverse cellular and multiple omics pathways. In addition to viral mediators of carcinogenesis, researchers have identified various host factors responsible for viral carcinogenesis. Henceforth owing to viral and host complexities in viral carcinogenesis, a singular mechanistic pathway remains yet to be established; hence there is an urgent need to integrate concepts from system biology, cancer microenvironment, evolutionary perspective, and thermodynamics to understand the role of viruses as drivers of cancer. In the present manuscript, we provide a holistic view of the pathogenic pathways involved in viral oncogenesis with special emphasis on alteration in the tumor microenvironment, genomic alteration, biological entropy, evolutionary selection, and host determinants involved in the pathogenesis of viral tumor genesis. These concepts can provide important insight into viral cancers, which can have an important implication for developing novel, effective, and personalized therapeutic options for treating viral cancers.
Insights
Viruses cause over 10% of cancers, with SARS-CoV-2 potentially becoming oncogenic. Understanding viral carcinogenesis requires integrating systems biology, evolutionary, and thermodynamic concepts for new cancer therapies.
Area of Science:
- Oncology
- Virology
- Systems Biology
Background:
- Infectious agents cause 15.4% of cancers; viruses are implicated in over 10%.
- The COVID-19 pandemic has refocused attention on viral diseases and their oncogenic potential.
- Current understanding of viral carcinogenesis is complex, with diverse viral mediators and host factors involved.
Purpose of the Study:
- To provide a holistic view of pathogenic pathways in viral oncogenesis.
- To emphasize the role of tumor microenvironment alterations, genomic changes, and host determinants.
- To integrate systems biology, evolutionary, and thermodynamic perspectives for a comprehensive understanding.
Main Methods:
- Review and synthesis of existing literature on viral carcinogenesis.
- Exploration of classical and emerging pathways of viral oncogenesis.
- Focus on interdisciplinary approaches including systems biology, cancer microenvironment, evolutionary perspective, and thermodynamics.
Main Results:
- Viral oncogenesis involves complex interactions between viral and host factors.
- Alterations in the tumor microenvironment, genomic instability, biological entropy, and evolutionary selection are key.
- A singular mechanistic pathway for viral carcinogenesis remains elusive.
Conclusions:
- A comprehensive understanding of viral carcinogenesis necessitates integrating diverse biological concepts.
- Insights into viral cancers can lead to novel, effective, and personalized therapeutic strategies.
- Further research integrating systems biology and evolutionary perspectives is crucial for combating viral-induced cancers.
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