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Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
Therapeutic vaccines for high-risk HPV-associated diseases
Aleyo Chabeda1, Romana J R Yanez1, Renate Lamprecht1
1Biopharming Research Unit, Department of Molecular and Cell Biology, University of Cape Town, Rondebosch 7701, South Africa.
Abstract:
Cancer is the second leading cause of death worldwide, and it is estimated that Human papillomavirus (HPV) related cancers account for 5% of all human cancers. Current HPV vaccines are extremely effective at preventing infection and neoplastic disease; however, they are prophylactic and do not clear established infections. Therapeutic vaccines which trigger cell-mediated immune responses for the treatment of established infections and malignancies are therefore required. The E6 and E7 early genes are ideal targets for vaccine therapy due to their role in disruption of the cell cycle and their constitutive expression in premalignant and malignant tissues. Several strategies have been investigated for the development of therapeutic vaccines, including live-vector, nucleic acid, peptide, protein-based and cell-based vaccines as well as combinatorial approaches, with several vaccine candidates progressing to clinical trials. With the current understanding of the HPV life cycle, molecular mechanisms of infection, carcinogenesis, tumour biology, the tumour microenvironment and immune response mechanisms, an approved HPV therapeutic vaccine seems to be a goal not far from being achieved. In this article, the status of therapeutic HPV vaccines in clinical trials are reviewed, and the potential for plant-based vaccine production platforms described.
Insights
Therapeutic vaccines targeting Human papillomavirus (HPV) E6 and E7 genes are needed to treat existing infections and cancers. Research is advancing, with several HPV therapeutic vaccine candidates in clinical trials.
Area of Science:
- Oncology
- Immunology
- Vaccinology
Background:
- Human papillomavirus (HPV) causes a significant percentage of human cancers.
- Current HPV vaccines are prophylactic and do not treat established infections or malignancies.
- Therapeutic vaccines are required to target established HPV infections and associated cancers.
Purpose of the Study:
- To review the status of therapeutic HPV vaccines in clinical trials.
- To explore plant-based vaccine production platforms for HPV therapy.
Main Methods:
- Investigated various therapeutic vaccine strategies: live-vector, nucleic acid, peptide, protein-based, cell-based, and combinatorial approaches.
- Reviewed clinical trial progress for HPV therapeutic vaccine candidates.
- Examined the potential of plant-based production systems.
Main Results:
- Several HPV therapeutic vaccine candidates targeting E6 and E7 oncoproteins have advanced to clinical trials.
- Diverse vaccine development strategies are being explored.
- Plant-based platforms show potential for vaccine production.
Conclusions:
- An approved HPV therapeutic vaccine is a realistic future goal.
- Understanding HPV infection, carcinogenesis, and immune responses is crucial for therapeutic vaccine development.
- Plant-based production offers a promising avenue for scalable vaccine manufacturing.
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