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Published on: January 7, 2019
Towards targeted cancer therapy: Aptamer or oncolytic virus?
Kei X Tan1, Michael K Danquah1, Amandeep Sidhu2
1Department of Chemical Engineering, Curtin University, Sarawak 98009, Malaysia.
Abstract:
Cancer is a leading cause of global mortality. Whilst anticancer awareness programs have increased significantly over the years, scientific research into the development of efficient and specific drugs to target cancerous cells for enhanced therapeutic effects has not received much clinical success. Chemotherapeutic agents are incapable of acting specifically on cancerous cells, thus causing low therapeutic effects accompanied by toxicity to surrounding normal tissues. The search for smart, highly specific and efficient cancer treatments and delivery systems continues to be a significant research endeavor. Targeted cancer therapy is an evolving treatment approach with great promise in enhancing the efficacy of cancer therapies via the delivery of therapeutic agents specifically to and into desired tumor cells using viral or non-viral targeting elements. Viral oncotherapy is an advanced cancer therapy based on the use of oncolytic viruses (OV) as elements to specifically target, replicate and kill malignant cancer cells selectively without affecting surrounding healthy cells. Aptamers, on the other hand, are non-viral targeting elements that are single-stranded nucleic acids with high specificity, selectivity and binding affinity towards their cognate targets. Aptamers have emerged as a new class of bioaffinity targeting elements can be generated and molecularly engineered to selectively bind to diverse targets including proteins, cells and tissues. This article discusses, comparatively, the potentials and impacts of both viral and aptamer-mediated targeted cancer therapies in advancing conventional drug delivery systems through enhanced target specificity, therapeutic payload, bioavailability of the therapeutic agents at the target sites whilst minimizing systemic cytotoxicity. This article emphasizes on effective site-directed targeting mechanisms and efficacy issues that impact on clinical applications.
Insights
Targeted cancer therapies, including viral oncotherapy and aptamer-based systems, offer improved specificity and efficacy over traditional chemotherapy. These advanced methods aim to deliver drugs directly to cancer cells, minimizing harm to healthy tissues and enhancing treatment outcomes.
Area of Science:
- Oncology
- Biotechnology
- Drug Delivery
Background:
- Cancer remains a major global health challenge with limited success in developing specific and effective drugs.
- Conventional chemotherapy lacks specificity, leading to low efficacy and significant toxicity to normal tissues.
- Targeted cancer therapy offers a promising approach to enhance treatment efficacy by directing therapeutic agents to tumor cells.
Purpose of the Study:
- To comparatively analyze the potential and impact of viral oncotherapy and aptamer-mediated targeted cancer therapies.
- To evaluate how these targeted approaches can advance conventional drug delivery systems.
- To highlight mechanisms for site-directed targeting and discuss efficacy for clinical application.
Main Methods:
- Review and comparison of viral oncotherapy (oncolytic viruses) and aptamer-mediated targeted delivery systems.
- Analysis of targeting mechanisms, specificity, and binding affinity of both viral and non-viral elements.
- Evaluation of therapeutic payload, bioavailability, and systemic cytotoxicity.
Main Results:
- Viral oncotherapy utilizes oncolytic viruses to selectively target, replicate within, and destroy cancer cells.
- Aptamers, as single-stranded nucleic acids, offer high specificity and affinity for molecularly engineered targets.
- Both viral and aptamer-mediated therapies demonstrate potential for enhanced target specificity and reduced systemic toxicity compared to conventional methods.
Conclusions:
- Viral oncotherapy and aptamer-based systems represent significant advancements in targeted cancer drug delivery.
- These novel approaches promise improved therapeutic efficacy and reduced side effects by targeting cancer cells specifically.
- Further research into site-directed targeting mechanisms and clinical efficacy is crucial for successful application.
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