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Published on: March 8, 2012
Small Molecule Inhibitors of Human Papillomavirus: A Review of Research from 1997 to 2021
Caitlin L Duncan1, Hendra Gunosewoyo2, Mauro Mocerino1
1School of Molecular and Life Sciences, Curtin University, GPO Box U1987, Perth, WA, 6845, Australia.
Abstract:
Human papillomavirus (HPV) infections are the cause of warts, lesions and cancer, with different types of HPV causing different symptoms. HPV infections are the primary cause of cervical cancer. There are over 220 different types of HPV, and only nine of these can currently be vaccinated. There is a need to treat these viral infections without just treating the symptoms of the infection, as is currently the main method. There is a wide range of small molecules that have been used to inhibit various stages of the HPV infectious cycle. This review examined 132 small molecules from 121 studies that specifically target aspects of HPV infections. HPV DNA encodes for six early genes (E1 to E7, skipping E3) and two late genes (L1 and L2). According to the results, these targets for small molecule inhibitors fall into three categories: those targeting E1 and E2, targeting E6 and E7 and, finally, targeting L1 and L2. Inhibitors of E6 and E7 are the most widely studied targets, with the majority of HPV inhibition in this area. While compounds targeting both E1/E2 and E6/E7 have made it to clinical trials, there has been no significant advancement on the topic.
Insights
Small molecules offer a new way to treat human papillomavirus (HPV) infections by targeting viral genes. Research reviews 132 molecules inhibiting HPV
Area of Science:
- Virology
- Oncology
- Drug Discovery
Background:
- Human papillomavirus (HPV) causes warts, lesions, and cancers, notably cervical cancer.
- Over 220 HPV types exist, with vaccines available for only nine.
- Current treatments focus on symptom management, not direct viral inhibition.
Purpose of the Study:
- To review small molecules developed to inhibit the human papillomavirus (HPV) infectious cycle.
- To categorize and analyze small molecule inhibitors targeting specific HPV genes.
Main Methods:
- Systematic review of 121 studies involving 132 small molecules.
- Analysis of small molecules targeting HPV early genes (E1, E2, E6, E7) and late genes (L1, L2).
Main Results:
- Small molecule inhibitors target three main categories: E1/E2, E6/E7, and L1/L2.
- Inhibitors targeting E6 and E7 are the most extensively studied.
- Compounds targeting E1/E2 and E6/E7 have advanced to clinical trials without significant breakthroughs.
Conclusions:
- Small molecules represent a promising therapeutic strategy against HPV infections.
- Targeting viral genes offers a potential alternative to symptom-based treatments.
- Further research and development are needed for clinical advancement.
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