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.

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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