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A Comprehensive Procedure to Evaluate the In Vivo Performance of Cancer Nanomedicines
Published on: March 4, 2017
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.
Abstract:
Several efforts have been extensively accomplished for the amelioration of the cancer treatments using different types of new drugs and less invasives therapies in comparison with the traditional therapeutic modalities, which are widely associated with numerous drawbacks, such as drug resistance, non-selectivity and high costs, restraining their clinical response. The application of natural compounds for the prevention and treatment of different cancer cells has attracted significant attention from the pharmaceuticals and scientific communities over the past decades. Although the use of nanotechnology in cancer therapy is still in the preliminary stages, the application of nanotherapeutics has demonstrated to decrease the various limitations related to the use of natural compounds, such as physical/chemical instability, poor aqueous solubility, and low bioavailability. Despite the nanotechnology has emerged as a promise to improve the bioavailability of the natural compounds, there are still limited clinical trials performed for their application with various challenges required for the pre-clinical and clinical trials, such as production at an industrial level, assurance of nanotherapeutics long-term stability, physiological barriers and safety and regulatory issues. This review highlights the most recent advances in the nanocarriers for natural compounds secreted from plants, bacteria, fungi, and marine organisms, as well as their role on cell signaling pathways for anticancer treatments. Additionally, the clinical status and the main challenges regarding the natural compounds loaded in nanocarriers for clinical applications were also discussed.
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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