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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Bridging the gap for diverse applications of parasites as advanced cancer therapeutics: current progress and future
Maha M Eissa1, Marwa H El-Faham2, Nahla El Skhawy2
1Department of Medical Parasitology, Faculty of Medicine, Alexandria University, Alexandria, Egypt. maha.eissa@alexmed.edu.eg.
Abstract:
Cancer research is constantly evolving to yield successful innovations. A plethora of pre-clinical studies have illustrated the promising potential utility of parasites and parasite-derived molecules in cancer therapy. In this review, we underscore, for the first time, the possible multifaceted applications of parasites in the field of oncology, aiming to draw attention to the vital role of parasite-derived cancer therapy and offer novel insights for the evolution of advanced cancer therapeutics. Several studies have demonstrated that parasites offer a variety of strategies for cancer therapy. These include acting as immunotherapeutics such as cancer vaccines, therapeutic antibodies, adjuvants, immunomodulators, oncolytic agents, and NF-κB inhibitors. Additionally, they can be utilized in targeted therapy, gene therapy, and in combination with current cancer treatments to synergistically enhance their effectiveness. A notable strategy is parasites' ability to overcome tumor resistance to chemotherapy, a significant obstacle in cancer therapy. There is still much to explore about parasite-based anti-cancer therapies. With further research and the translation of parasitological discoveries into effective cancer interventions, parasites may hold the key to effectively treat cancer in the near future.
Insights
Parasites and their molecules show promise in cancer therapy, acting as immunotherapeutics and overcoming chemotherapy resistance. Further research could unlock parasite-derived treatments for effective cancer intervention.
Area of Science:
- Oncology
- Parasitology
- Immunotherapy
Background:
- Pre-clinical studies highlight the potential of parasites and parasite-derived molecules in cancer treatment.
- Parasites offer diverse strategies for oncology, including immunomodulation and overcoming drug resistance.
Purpose of the Study:
- To review the multifaceted applications of parasites in oncology.
- To emphasize the role of parasite-derived cancer therapy and inspire novel therapeutic insights.
Main Methods:
- Literature review of pre-clinical studies on parasite applications in cancer therapy.
- Analysis of various parasite-based anti-cancer strategies.
Main Results:
- Parasites can function as immunotherapeutics (vaccines, antibodies, adjuvants, immunomodulators, oncolytic agents, NF-κB inhibitors).
- Parasites can be used in targeted therapy, gene therapy, and combination treatments.
- Parasites demonstrate potential in overcoming tumor resistance to chemotherapy.
Conclusions:
- Parasite-derived therapies represent a promising avenue for advanced cancer treatment.
- Further research and translation of parasitological discoveries are crucial for developing effective cancer interventions.
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