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Overcoming multidrug resistance in cancer: Recent progress in nanotechnology and new horizons
Maryam Majidinia1, Mohammad Mirza-Aghazadeh-Attari2,3, Mahdi Rahimi4
1Solid Tumor Research Center, Urmia University of Medical Sciences, Urmia, Iran.
Abstract:
Multidrug resistance (MDR), defined as the ability of cancer cells to gain resistance to both conventional and novel chemotherapy agents, is an important barrier in treating malignancies. Initially, it was discovered that cellular pumps dependent on ATP were the cause of resistance to chemotherapy, and further studies have found that other mechanisms such as increased metabolism of drugs, decreased drug entry, and defective apoptotic pathways are involved in this process. MDR has been the focus of numerous initiatives and countless studies have been undertaken to better understand MDR and formulate strategies to overcome its effects. The current review highlights various nano-drug delivery systems including polymeric/solid lipid/mesoporous silica/metal nanoparticles, dendrimers, liposomes, micelles, and nanostructured lipid carriers to overcome the mechanism of MDR. Nanoparticles are novel gateways to enhance the therapeutic efficacy of anticancer agents at the target site of action due to their tumor-targeting abilities, which can limit the unwanted systemic effects of chemotherapy agents and also reduce drug resistance. Additionally, other innovative strategies including RNA interference as a biological process used to inhibit or silence specific gene expression, natural products as MDR modulators with little systemic toxic effects, which interfere with the functions of proteins involved in drug efflux, and physical approaches such as combination of conventional drug administration with thermal/ultrasound/photodynamic strategies are also highlighted.
Insights
Multidrug resistance (MDR) in cancer hinders treatment. This review explores nanoparticle delivery systems and other strategies to overcome MDR, enhancing chemotherapy efficacy and reducing resistance.
Area of Science:
- Oncology
- Nanotechnology
- Pharmacology
Background:
- Multidrug resistance (MDR) is a major obstacle in cancer therapy, reducing treatment effectiveness.
- MDR involves mechanisms like ATP-dependent pumps, altered drug metabolism, and impaired apoptosis.
- Overcoming MDR is crucial for improving patient outcomes in malignancies.
Purpose of the Study:
- To review advanced nano-drug delivery systems for overcoming multidrug resistance in cancer.
- To highlight innovative strategies including RNA interference, natural products, and physical approaches.
- To discuss the potential of these strategies in enhancing anticancer agent efficacy and reducing resistance.
Main Methods:
- Review of current literature on nano-drug delivery systems (nanoparticles, liposomes, micelles, etc.).
- Exploration of complementary strategies like RNA interference and natural product modulators.
- Analysis of physical approaches combined with conventional chemotherapy.
Main Results:
- Nano-drug delivery systems show promise in targeting tumors and enhancing drug efficacy.
- These systems can mitigate systemic side effects and overcome drug efflux mechanisms.
- Combined strategies offer multifaceted approaches to combat MDR.
Conclusions:
- Nanotechnology-based drug delivery presents a significant advancement in overcoming MDR.
- Integrating various strategies like RNAi and natural products can provide synergistic effects.
- Further research into these novel approaches is essential for clinical translation in oncology.
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