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Updated: Jun 28, 2026

Anticancer Efficacy of Photodynamic Therapy with Lung Cancer-Targeted Nanoparticles
Published on: December 1, 2016
The prince and the pauper. A tale of anticancer targeted agents
Alfonso Dueñas-González1, Patricia García-López, Luis Alonso Herrera
1Unidad de Investigacion Biomédica en Cáncer, Instituto de Investigaciones Biomedicas, UNAM/Instituto Nacional de Cancerologia, Mexico City, Mexico. alfonso_duenasg@yahoo.com
Abstract:
Cancer rates are set to increase at an alarming rate, from 10 million new cases globally in 2000 to 15 million in 2020. Regarding the pharmacological treatment of cancer, we currently are in the interphase of two treatment eras. The so-called pregenomic therapy which names the traditional cancer drugs, mainly cytotoxic drug types, and post-genomic era-type drugs referring to rationally-based designed. Although there are successful examples of this newer drug discovery approach, most target-specific agents only provide small gains in symptom control and/or survival, whereas others have consistently failed in the clinical testing. There is however, a characteristic shared by these agents: -their high cost-. This is expected as drug discovery and development is generally carried out within the commercial rather than the academic realm. Given the extraordinarily high therapeutic drug discovery-associated costs and risks, it is highly unlikely that any single public-sector research group will see a novel chemical "probe" become a "drug". An alternative drug development strategy is the exploitation of established drugs that have already been approved for treatment of non-cancerous diseases and whose cancer target has already been discovered. This strategy is also denominated drug repositioning, drug repurposing, or indication switch. Although traditionally development of these drugs was unlikely to be pursued by Big Pharma due to their limited commercial value, biopharmaceutical companies attempting to increase productivity at present are pursuing drug repositioning. More and more companies are scanning the existing pharmacopoeia for repositioning candidates, and the number of repositioning success stories is increasing. Here we provide noteworthy examples of known drugs whose potential anticancer activities have been highlighted, to encourage further research on these known drugs as a means to foster their translation into clinical trials utilizing the more limited public-sector resources. If these drug types eventually result in being effective, it follows that they could be much more affordable for patients with cancer; therefore, their contribution in terms of reducing cancer mortality at the global level would be greater.
Insights
Drug repositioning offers a cost-effective strategy to find new cancer treatments. Repurposing existing drugs for cancer may increase survival and reduce global mortality rates.
Area of Science:
- Oncology
- Pharmacology
- Drug Discovery
Background:
- Cancer incidence is rising globally, necessitating innovative treatment strategies.
- Current cancer therapies include traditional cytotoxic drugs and newer, rationally designed post-genomic agents.
- Post-genomic drugs often yield modest survival benefits and are prohibitively expensive due to high research and development costs.
Purpose of the Study:
- To explore drug repositioning as an alternative strategy for developing affordable cancer therapeutics.
- To highlight existing drugs with potential anticancer activities for further research and clinical trials.
- To encourage the use of public-sector resources for drug repositioning to accelerate translation.
Main Methods:
- Reviewing established drugs approved for non-cancerous diseases.
- Identifying drugs with known targets that may also be relevant for cancer.
- Compiling examples of drugs with demonstrated or potential anticancer activities.
Main Results:
- Drug repositioning (also known as drug repurposing or indication switch) is an increasingly adopted strategy in the biopharmaceutical industry.
- Several known drugs have shown potential anticancer activities, offering a more economical development pathway.
- The success of drug repositioning is evidenced by a growing number of positive outcomes.
Conclusions:
- Drug repositioning presents a viable and cost-effective approach to cancer drug development.
- Repurposing approved drugs can lead to more affordable cancer treatments, potentially improving patient access and outcomes.
- Further research into known drugs for anticancer potential can significantly contribute to reducing global cancer mortality.
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