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Updated: Oct 21, 2025

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Novel nanomedicines to overcome cancer multidrug resistance
Zhenwei Su1, Shaowei Dong1, Shan-Chao Zhao2
1Shenzhen People's Hospital (The Second Clinical Medical College, Jinan University; The First Affiliated Hospital, Southern University of Science and Technology), Shenzhen, 518001, Guangdong, PR China; Shenzhen Public Service Platform on Tumor Precision Medicine and Molecular Diagnosis, Shenzhen, 518001, Guangdong, PR China.
Abstract:
Chemotherapy remains a powerful tool to eliminate malignant cells. However, the efficacy of chemotherapy is compromised by the frequent emergence of intrinsic and acquired multidrug resistance (MDR). These chemoresistance modalities are based on a multiplicity of molecular mechanisms of drug resistance, including : 1) Impaired drug uptake into cancer cells; 2) Increased expression of ATP-binding cassette efflux transporters; 3) Loss of function of pro-apoptotic factors; 4) Enhanced DNA repair capacity; 5) Qualitative or quantitative alterations of specific cellular targets; 6) Alterations that allow cancer cells to tolerate adverse or stressful conditions; 7) Increased biotransformation or metabolism of anticancer drugs to less active or completely inactive metabolites; and 8) Intracellular and intercellular drug sequestration in well-defined organelles away from the cellular target. Hence, one of the major aims of cancer research is to develop novel strategies to overcome cancer drug resistance. Over the last decades, nanomedicine, which focuses on targeted delivery of therapeutic drugs into tumor tissues using nano-sized formulations, has emerged as a promising tool for cancer treatment. Therefore, nanomedicine has been introduced as a reliable approach to improve treatment efficacy and minimize detrimental adverse effects as well as overcome cancer drug resistance. With rationally designed strategies including passively targeted delivery, actively targeted delivery, delivery of multidrug combinations, as well as multimodal combination therapy, nanomedicine paves the way towards efficacious cancer treatment and hold great promise in overcoming cancer drug resistance. Herein, we review the recent progress of nanomaterials used in medicine, including liposomal nanoparticles, polymeric nanoparticles, inorganic nanoparticles and hybrid nanoparticles, to surmount cancer multidrug resistance. Finally, the future perspectives of the application of nanomedicine to reverse cancer drug resistance will be addressed.
Insights
Nanomedicine offers promising strategies to overcome multidrug resistance (MDR) in cancer treatment by improving drug delivery and efficacy. This approach utilizes various nanomaterials to combat chemoresistance mechanisms and enhance therapeutic outcomes.
Area of Science:
- Oncology
- Nanomedicine
- Drug Resistance
Background:
- Chemotherapy is vital for cancer treatment but often fails due to multidrug resistance (MDR).
- MDR arises from diverse molecular mechanisms, including impaired drug uptake, increased efflux, altered targets, and enhanced repair.
- Developing strategies to overcome MDR is a critical goal in cancer research.
Purpose of the Study:
- To review the progress of nanomedicine in overcoming cancer multidrug resistance.
- To explore various nanomaterial formulations and targeted delivery strategies.
- To discuss future perspectives for nanomedicine in reversing cancer drug resistance.
Main Methods:
- Review of recent advancements in nanomedicine for cancer therapy.
- Analysis of different nanomaterial types: liposomal, polymeric, inorganic, and hybrid nanoparticles.
- Examination of nanomedicine strategies like passive/active targeting and combination therapies.
Main Results:
- Nanomedicine, through targeted delivery, enhances therapeutic efficacy and minimizes adverse effects.
- Various nanomaterials (liposomal, polymeric, inorganic, hybrid) show potential in overcoming MDR.
- Rational design of nanomedicine strategies, including combination therapies, is key to success.
Conclusions:
- Nanomedicine presents a promising approach to combat cancer multidrug resistance.
- Targeted delivery and rationally designed nanomaterial formulations can reverse chemoresistance.
- Further research into nanomedicine holds significant potential for future cancer treatment strategies.
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