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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Nanotechnology based targeted drug delivery systems for breast cancer: challenges, recent advancement and future
Santosh Kumar1,2, Shivam Rathaur1, Debalina Maity1,2
1Division of Pharmaceutics and Pharmacokinetics, CSIR-Central Drug Research Institute, Lucknow, India.
Abstract:
Globally, breast cancer remains a leading causes of cancer-related mortality among women, emphasizing the need for more effective therapies. Nanotechnology-based drug delivery systems have emerged as promising tools for reducing systemic toxicity while enhancing the precision and efficacy of treatments. By engineering nanoparticles to selectively target tumor cells, these systems increase drug accumulation at the tumor site and minimize harm to healthy tissues. This review focuses on the development of nanocarrier systems such as liposomes, polymeric nanoparticles, dendrimers, micelles, metallic nanoparticles, black phosphorus, and protein-based nanoparticles for the targeted delivery of chemotherapeutic agents in breast cancer. Both passive and active targeting mechanisms were explored, including the enhanced permeability and retention (EPR) effect, tumor specific biomarkers to achieve stimuli-responsive drug release. Future directions in research aim to further optimize these nanocarriers to enhance therapeutic efficacy while minimizing toxicity. The integration of personalized medicine with smart nanocarriers, AI-assisted delivery systems, diagnostic tools, and CRISPR/Cas9 gene editing holds great promise for more precise and individualized breast cancer therapies. Despite significant progress, challenges such as regulatory hurdles, tumor heterogeneity, multidrug resistance, issues related to nanoparticle biocompatibility continue to impede clinical translation. This work also addresses these barriers and implementation of nanomedicine in clinical oncology.
Insights
Nanotechnology offers advanced drug delivery for breast cancer, targeting tumors to reduce side effects. This review explores nanocarriers and future innovations for improved cancer therapy and patient outcomes.
Area of Science:
- Oncology
- Nanotechnology
- Biomedical Engineering
Background:
- Breast cancer is a major global health concern, necessitating novel therapeutic strategies.
- Nanotechnology-based drug delivery systems show potential for enhanced precision and reduced toxicity in cancer treatment.
Purpose of the Study:
- To review nanocarrier systems for targeted chemotherapy delivery in breast cancer.
- To explore passive and active targeting mechanisms and stimuli-responsive drug release.
Main Methods:
- Review of various nanocarrier systems (liposomes, polymeric nanoparticles, etc.).
- Analysis of targeting strategies including EPR effect and biomarker utilization.
- Discussion of future directions and challenges in nanomedicine for breast cancer.
Main Results:
- Nanocarriers can increase drug accumulation at tumor sites, minimizing damage to healthy tissues.
- Targeted delivery and stimuli-responsive release enhance therapeutic efficacy.
- Integration with personalized medicine and AI shows promise for advanced therapies.
Conclusions:
- Nanomedicine holds significant promise for improving breast cancer treatment efficacy and safety.
- Overcoming challenges like regulatory hurdles and tumor heterogeneity is crucial for clinical translation.
- Future research should focus on optimizing nanocarriers for personalized and effective cancer therapies.
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