Combined anticancer therapies: an overview of the latest applications
Maria Teresa Piccolo, Ciro Menale, Stefania Crispi1
1Stefania Crispi Gene Expression & Molecular Genetics Laboratory, Institute of Biosciences and BioResources, CNR via P. Castellino, 111- 80131 Naples Italy. stefania.crispi@cnr.it.
Abstract:
Tumor resistance and low drug efficacy prompt to investigate new therapeutic strategies that have high efficacy and low toxicity, especially for cancers with poor prognosis. This goal has been recently achieved using particular pharmaceutical combination or nanotechnologies to specifically deliver drugs at the tumor site. Novel combined treatments employ either naturally active ingredients or drugs already intended for other uses, with the aim to increase cell sensitivity to therapy and reduce drug toxicity. Combined treatments usually improve the overall therapeutic efficacy of the single drug. Drug-drug interactions allow synergistic effects. Several evidences indicate that synergy can be affected by drug-drug ratio and drug administration order. Therapeutic efficacy can be enhanced through drug entrapment in nanocarriers that allow a site-specific targeting, resulting in a build-up of the drug in the tumor with a significant toxicity reduction. Several studies investigated combined entrapment of two or more drugs each one characterized by different mechanisms of action. These nanosystems improve synergistic efficacy and could be a device to resolve toxicity and multi-drug resistance. Nano-encapsulation of anticancer agents by targeting specific tumor tissues significantly optimizes drug bioavailability, biocompatibility and therapeutic efficacy. The efficacy of these formulations results from receptor-mediated endocytosis and prolonged circulation time. Drug encapsulation also allows using limited final concentration while avoiding its activity within the blood circulation. In this review we report recent findings about novel combined treatment focusing on synergistic effects and mechanisms of action. We will also overview the latest drug delivery system and their therapeutic benefits in cancer treatment.
Insights
Novel combined cancer therapies and nanotechnology enhance drug efficacy and reduce toxicity. These strategies, including drug combinations and nano-encapsulation, offer improved outcomes for difficult-to-treat cancers.
Area of Science:
- Oncology
- Nanotechnology
- Pharmacology
Background:
- Tumor resistance and low drug efficacy necessitate advanced therapeutic strategies for poor-prognosis cancers.
- Current approaches focus on pharmaceutical combinations and nanotechnology for targeted drug delivery.
- Novel treatments aim to increase cancer cell sensitivity while minimizing drug toxicity.
Purpose of the Study:
- To review recent findings on novel combined cancer treatments.
- To focus on synergistic effects and mechanisms of action in these combined therapies.
- To overview the latest drug delivery systems and their therapeutic benefits in cancer treatment.
Main Methods:
- Investigating combined pharmaceutical treatments, including naturally active ingredients and repurposed drugs.
- Exploring drug entrapment in nanocarriers for site-specific targeting and reduced toxicity.
- Analyzing studies on co-encapsulation of multiple drugs with different mechanisms of action.
Main Results:
- Combined treatments generally improve therapeutic efficacy compared to single drugs.
- Nanocarrier-based drug delivery enhances tumor targeting, leading to drug accumulation and reduced systemic toxicity.
- Nano-encapsulation optimizes drug bioavailability, biocompatibility, and therapeutic outcomes, potentially overcoming multi-drug resistance.
Conclusions:
- Novel combined therapies, particularly those utilizing nanotechnology, show significant promise for improving cancer treatment efficacy and reducing toxicity.
- Drug combinations and nano-encapsulation strategies can overcome challenges like tumor resistance and low drug efficacy.
- Targeted nano-delivery systems offer a promising avenue for optimizing anticancer agent delivery and patient outcomes.
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