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Updated: Feb 15, 2026

Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
HPV-16 targeted DNA vaccine expression: The role of purification
Ana M Almeida1, Joana Tomás1, Patrícia Pereira1
1CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, Av. Infante D. Henrique, Covilhã, 6200-506, Portugal.
Abstract:
DNA vaccines have come to light in the last decades as an alternative method to prevent many infectious diseases, but they can also be used for the treatment of specific diseases, such as cervical cancer caused by Human Papillomavirus (HPV). This virus produces E6 and E7 oncoproteins, which alter the cell cycle regulation and can interfere with the DNA repairing system. These features can ultimately lead to the progression of cervical cancer, after cell infection by HPV. Thus, the development of a DNA vaccine targeting both proteins arises as an interesting option in the treatment of this pathology. Nonetheless, before evaluating its therapeutic potential, the purity levels of a biopharmaceutical must meet the regulatory agency specifications. Previously, our research group successfully purified the supercoiled isoform of the recombinant HPV-16 E6/E7 DNA vaccine with virtual 100% purity by affinity chromatography. The present work was designed to evaluate the effect that pDNA sample purity levels may exert in the expression of a target protein. Thus, in vitro studies were performed to assess the vaccine ability to produce the target proteins and to compare the expression efficiency between the pDNA sample obtained by affinity chromatography, which only presents the sc isoform and fulfils the regulatory agency recommendations, and the same DNA vaccine retrieved by a commercial purification kit, which contains different pDNA isoforms. Our achievements suggest that the E6/E7 DNA vaccine purified by affinity chromatography promotes higher E6 and E7 mRNA and protein expression levels than the DNA vaccine purified with the commercial kit. Overall, these results underline the importance that a purification strategy may present in the therapeutic outcome of recombinant DNA vaccines, envisaging their further application as biopharmaceuticals. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:546-551, 2018.
Insights
High-purity DNA vaccines targeting Human Papillomavirus (HPV) E6 and E7 oncoproteins show increased therapeutic potential. Affinity chromatography purification enhances DNA vaccine expression for cervical cancer treatment.
Area of Science:
- Biotechnology
- Vaccine Development
- Molecular Biology
Background:
- DNA vaccines offer a promising approach for infectious disease prevention and cancer treatment.
- Human Papillomavirus (HPV) E6 and E7 oncoproteins disrupt cell cycle regulation, contributing to cervical cancer.
- Therapeutic DNA vaccines require high purity levels to meet regulatory standards.
Purpose of the Study:
- To evaluate the impact of plasmid DNA (pDNA) purity on target protein expression for DNA vaccines.
- To compare the expression efficiency of an HPV E6/E7 DNA vaccine purified by affinity chromatography versus a commercial kit.
Main Methods:
- In vitro studies were conducted to assess protein expression.
- Plasmid DNA (pDNA) samples purified by affinity chromatography (supercoiled isoform only) were compared with those from a commercial kit (multiple isoforms).
- E6 and E7 mRNA and protein expression levels were quantified.
Main Results:
- The HPV-16 E6/E7 DNA vaccine purified by affinity chromatography demonstrated significantly higher E6 and E7 mRNA and protein expression.
- The affinity-purified DNA vaccine met virtual 100% purity, fulfilling regulatory agency recommendations.
- Commercial kit purification resulted in lower expression levels due to the presence of different pDNA isoforms.
Conclusions:
- Purification strategy critically influences the therapeutic efficacy of recombinant DNA vaccines.
- High-purity DNA vaccines, specifically the supercoiled isoform, enhance protein expression for potential biopharmaceutical applications.
- Optimized purification is essential for the successful development of DNA vaccines as therapeutic agents.
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