Broad-spectrum anti-tumor and anti-metastatic DNA vaccine based on p62-encoding vector
Franco Venanzi1, Victor Shifrin, Michael Sherman
1Laboratory of Translational Biology, Department of Biology MCA, University of Camerino, Italy.
Abstract:
Autophagy plays an important role in neoplastic transformation of cells and in resistance of cancer cells to radio- and chemotherapy. p62 (SQSTM1) is a key component of autophagic machinery which is also involved in signal transduction. Although recent empirical observations demonstrated that p62 is overexpressed in variety of human tumors, a mechanism of p62 overexpression is not known. Here we report that the transformation of normal human mammary epithelial cells with diverse oncogenes (RAS, PIK3CA and Her2) causes marked accumulation of p62. Based on this result, we hypothesized that p62 may be a feasible candidate to be an anti-cancer DNA vaccine. Here we performed a preclinical study of a novel DNA vaccine encoding p62. Intramuscularly administered p62-encoding plasmid induced anti-p62 antibodies and exhibited strong antitumor activity in four models of allogeneic mouse tumors - B16 melanoma, Lewis lung carcinoma (LLC), S37 sarcoma, and Ca755 breast carcinoma. In mice challenged with Ca755 cells, p62 treatment had dual effect: inhibited tumor growth in some mice and prolonged life in those mice which developed tumor size similar to control. P62-encoding plasmid has demonstrated its potency both as a preventive and therapeutic vaccine. Importantly, p62 vaccination drastically suppressed metastasis formation: in B16 melanoma where tumor cells where injected intravenously, and in LLC and S37 sarcoma with spontaneous metastasis. Overall, we conclude that a p62-encoding vector(s) constitute(s) a novel, effective broad-spectrum antitumor and anti-metastatic vaccine feasible for further development and clinical trials.
Insights
A novel DNA vaccine targeting p62 (SQSTM1) shows significant antitumor and anti-metastasis effects. This p62-encoding vaccine demonstrated broad-spectrum efficacy across multiple mouse cancer models, offering potential for clinical development.
Area of Science:
- Oncology
- Immunology
- Cell Biology
Background:
- Autophagy is crucial in cancer development and treatment resistance.
- p62 (SQSTM1) is a key autophagy regulator overexpressed in human tumors.
- The mechanism of p62 overexpression in cancer remains unclear.
Purpose of the Study:
- To investigate the role of oncogenes in p62 accumulation.
- To evaluate a novel DNA vaccine encoding p62 for anti-cancer activity.
- To assess the vaccine's efficacy against primary tumors and metastasis.
Main Methods:
- Transformed human mammary epithelial cells with oncogenes (RAS, PIK3CA, Her2).
- Developed and administered intramuscular p62-encoding DNA vaccine in mouse models.
- Assessed antitumor and anti-metastatic activity in B16 melanoma, LLC, S37 sarcoma, and Ca755 breast carcinoma models.
Main Results:
- Oncogene transformation led to significant p62 accumulation.
- p62 DNA vaccination induced anti-p62 antibodies and strong antitumor responses.
- Vaccination suppressed tumor growth, prolonged survival, and drastically reduced metastasis in multiple models.
- Demonstrated both preventive and therapeutic vaccine potential.
Conclusions:
- p62 accumulation is linked to oncogenic transformation.
- A p62-encoding DNA vaccine is a potent broad-spectrum antitumor and anti-metastatic agent.
- This novel vaccine warrants further development for clinical trials.
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