Emerging Combinatorial Drug Delivery Strategies for Breast Cancer: A Comprehensive Review
Harshita Singhai1, Sarjana Raikwar1,2, Sunny Rathee1,3
1Department of Pharmaceutical Sciences, Pharmaceutics Research Projects Laboratory, Dr. Harisingh Gour Vishwavidyalaya, Sagar (M.P.), 470003, India.
Abstract:
Breast cancer remains the second most prevalent cancer among women in the United States. Despite advancements in surgical, radiological, and chemotherapeutic techniques, multidrug resistance continues to pose significant challenges in effective treatment. Combination chemotherapy has emerged as a promising approach to address these limitations, allowing multiple drugs to target malignancies via distinct mechanisms of action. Increasingly, the use of phytoconstituents alongside chemotherapeutic agents has shown promise in enhancing treatment outcomes. This combination therapy acts on key signaling pathways such as Hedgehog, Notch, Wnt/β- catenin, tyrosine kinases, and phosphatidylinositol 3-kinase (PI3K), which play critical roles in cellular proliferation, apoptosis, angiogenesis, differentiation, invasion, and metastasis. This review explores various signaling pathways involved in breast cancer progression, discusses conventional treatment methods like surgery, adjuvant radiotherapy, hormonal therapy, and chemotherapy, and highlights emerging nanocarrier-based drug delivery systems (DDS). Liposomes, dendrimers, exosomes, polymeric micelles, and nanoparticles (organic, inorganic, gold, magnetic, carbon-based, and quantum dots) are examined as innovative strategies for enhancing drug delivery efficacy. Furthermore, stimuli-responsive DDSs, including reactive oxygen species (ROS), enzyme-, and hypoxia- responsive systems, are presented as cutting-edge approaches to overcoming drug resistance. Special emphasis is placed on the co-delivery of chemotherapeutic agents and plant-based compounds, particularly in estrogen receptor-positive (ER+) breast cancer. This review aims to provide a comprehensive overview of novel combinatorial strategies and advanced nanocarriers for the effective and targeted treatment of breast cancer.
Insights
Combination chemotherapy and plant-based compounds show promise in overcoming breast cancer multidrug resistance. Novel nanocarrier drug delivery systems enhance treatment efficacy, particularly for estrogen receptor-positive breast cancer.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Breast cancer is a leading cause of cancer death in women, with multidrug resistance limiting treatment efficacy.
- Combination chemotherapy and phytoconstituents offer a promising strategy to overcome resistance by targeting multiple signaling pathways.
- Key pathways in breast cancer progression include Hedgehog, Notch, Wnt/β-catenin, tyrosine kinases, and PI3K.
Purpose of the Study:
- To review signaling pathways in breast cancer progression.
- To discuss conventional and emerging treatment modalities.
- To highlight nanocarrier-based drug delivery systems (DDS) and combinatorial strategies for enhanced breast cancer therapy.
Main Methods:
- Review of signaling pathways involved in breast cancer.
- Analysis of conventional treatments (surgery, radiotherapy, chemotherapy, hormonal therapy).
- Exploration of nanocarrier-based DDS (liposomes, dendrimers, exosomes, nanoparticles) and stimuli-responsive systems.
Main Results:
- Combination therapy targeting key signaling pathways can improve treatment outcomes.
- Advanced nanocarriers and stimuli-responsive DDS enhance drug delivery and efficacy.
- Co-delivery of chemotherapeutics and phytoconstituents shows particular promise for ER+ breast cancer.
Conclusions:
- Novel combinatorial strategies and advanced nanocarriers are crucial for effective breast cancer treatment.
- Targeting specific signaling pathways and utilizing advanced DDS can overcome multidrug resistance.
- Further research into phytoconstituent and nanocarrier combinations holds significant therapeutic potential for breast cancer.
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