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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Beyond DNA-targeting in Cancer Chemotherapy. Emerging Frontiers - A Review
Simon N Mbugua1, Lydia W Njenga1, Ruth A Odhiambo1
1Department of Chemistry, University of Nairobi, P.O. Box 30197-00100, Nairobi, Kenya.
Abstract:
Modern anti-cancer drugs target DNA specifically for rapid division of malignant cells. One downside of this approach is that they also target other rapidly dividing healthy cells, such as those involved in hair growth leading to serious toxic side effects and hair loss. Therefore, it would be better to develop novel agents that address cellular signaling mechanisms unique to cancerous cells, and new research is now focussing on such approaches. Although the classical chemotherapy area involving DNA as the set target continues to produce important findings, nevertheless, a distinctly discernible emerging trend is the divergence from the cisplatin operation model that uses the metal as the primary active center of the drug. Many successful anti-cancer drugs present are associated with elevated toxicity levels. Cancers also develop immunity against most therapies and the area of cancer research can, therefore, be seen as an area with a high unaddressed need. Hence, ongoing work into cancer pathogenesis is important to create accurate preclinical tests that can contribute to the development of innovative drugs to manage and treat cancer. Some of the emergent frontiers utilizing different approaches include nanoparticles delivery, use of quantum dots, metal complexes, tumor ablation, magnetic hypothermia and hyperthermia by use of Superparamagnetic Iron oxide Nanostructures, pathomics and radiomics, laser surgery and exosomes. This review summarizes these new approaches in good detail, giving critical views with necessary comparisons. It also delves into what they carry for the future, including their advantages and disadvantages.
Insights
New cancer therapies are moving beyond DNA targeting to focus on unique cancer cell mechanisms, aiming to reduce side effects. This research explores innovative approaches like nanoparticles and exosomes for more effective cancer treatment.
Area of Science:
- Oncology
- Nanomedicine
- Biotechnology
Background:
- Current chemotherapy targets DNA, causing severe side effects by affecting healthy rapidly dividing cells.
- Cancers develop resistance to therapies, highlighting an unmet need for innovative treatments.
- Traditional chemotherapy, like cisplatin, often involves metal-based drugs with significant toxicity.
Purpose of the Study:
- To review emerging anti-cancer strategies that target cancer-specific mechanisms.
- To critically evaluate novel therapeutic approaches beyond DNA targeting.
- To compare the advantages and disadvantages of these new frontiers in cancer research.
Main Methods:
- Review of emergent frontiers including nanoparticles, quantum dots, metal complexes, tumor ablation, and hyperthermia.
- Analysis of advanced imaging and diagnostic techniques like pathomics and radiomics.
- Exploration of novel delivery systems such as exosomes and Superparamagnetic Iron oxide Nanostructures.
Main Results:
- Identified a trend diverging from metal-centric chemotherapy towards targeted signaling pathways.
- Highlighted the potential of nanotechnology and advanced physical methods for cancer treatment.
- Discussed the limitations and benefits of various innovative therapeutic modalities.
Conclusions:
- Novel agents targeting cancer-specific signaling pathways offer a promising alternative to traditional chemotherapy.
- Emerging frontiers like nanomedicine and advanced physical therapies present new avenues for cancer management.
- Continued research into cancer pathogenesis is crucial for developing effective preclinical tests and innovative drugs.
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