Natural compounds-based nanomedicines for cancer treatment: Future directions and challenges

Tatiana Andreani1,2, Ruoyu Cheng3,4, Khalil Elbadri3

  • 1Chemistry Research Centre (CIQUP) and Institute of Molecular Sciences (IMS), Department of Chemistry and Biochemistry, Faculty of Sciences of University of Porto, Rua Do Campo Alegre s/n, 4169-007, Porto, Portugal.

Insights

Natural compounds show promise for cancer treatment, but face limitations. Nanotechnology enhances their delivery and effectiveness, though clinical application challenges remain.

Area of Science:

  • Oncology
  • Nanotechnology
  • Natural Products Chemistry

Background:

  • Traditional cancer therapies face challenges like drug resistance and high costs.
  • Natural compounds offer potential anticancer benefits but suffer from poor stability and bioavailability.
  • Nanotechnology presents a solution to overcome natural compound limitations in cancer therapy.

Purpose of the Study:

  • To review recent advances in nanocarriers for natural anticancer compounds.
  • To discuss the role of these nanocarriers in cell signaling pathways.
  • To analyze the clinical status and challenges of nanomedicines for natural compounds.

Main Methods:

  • Literature review of nanocarriers for natural compounds in cancer treatment.
  • Analysis of nanotherapeutics' impact on cell signaling pathways.
  • Evaluation of clinical trials, pre-clinical studies, and regulatory challenges.

Main Results:

  • Nanotherapeutics improve the stability and bioavailability of natural anticancer compounds.
  • Natural compounds delivered via nanocarriers show potential in modulating cancer cell signaling.
  • Significant challenges exist in scaling up production, ensuring long-term stability, and navigating regulatory pathways for clinical use.

Conclusions:

  • Nanotechnology offers a promising approach to enhance the efficacy of natural compounds for cancer treatment.
  • Further clinical trials and research are needed to address challenges in industrial production, stability, and regulatory approval.
  • Optimizing nanocarrier systems is crucial for the successful clinical translation of natural compounds in oncology.

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